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  • ...that stores all the geometry and attributes associated with model specific coverage in SMS. Examples of these coverages include (but are not limited to): * EWN Features coverage
    2 KB (371 words) - 19:10, 15 August 2022

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  • ...that stores all the geometry and attributes associated with model specific coverage in SMS. Examples of these coverages include (but are not limited to): * EWN Features coverage
    2 KB (371 words) - 19:10, 15 August 2022
  • #redirect [[SMS:Model Coverage File]]
    37 bytes (5 words) - 21:42, 12 April 2022
  • #redirect [[SMS:Model Coverage File]]
    37 bytes (5 words) - 21:42, 12 April 2022
  • ...]]. Several scenarios can exist where WMS is useful for developing a SWMM model. Here are three scenarios the WMS developers have considered: == Case 1: Exporting a hydrologic model to xpswmm ==
    3 KB (421 words) - 17:59, 17 October 2017
  • The Generic Cartesian Grid model provides a limited number of tools and options in the Cartesian Grid module {{Generic Grid Model}}
    2 KB (276 words) - 14:45, 4 June 2019
  • ...overage is used in conjunction with the cross sections and digital terrain model in order to determine the thalweg position, or lowest point in the cross se ...n cutting the cross sections, or can be assigned manually (imported from a file or entered directly) using the cross section editor.
    2 KB (251 words) - 14:52, 30 October 2018
  • [[File:Hydraulic Model.png|thumb|250 px|Example of a hydraulic model]] ...Ns and coverages) to build the basic geometry necessary for a 1D Hydraulic Model. Much of the information for developing models with these tools is describe
    4 KB (684 words) - 16:56, 13 June 2018
  • [[File:AdH Simulation.png|thumb|250 px|Example of an AdH simulation in the Project ...13.3. A simulation should contain a 2D mesh and an AdH boundary conditions coverage, and optional AdH coverages. Right-clicking on the simulation will display
    3 KB (532 words) - 19:55, 11 September 2023
  • ...Coverage Setup'' dialog depend on the model associated with the conceptual model. The conceptual model tools are included with all [http://www.aquaveo.com/software/gms-pricing pa
    2 KB (386 words) - 14:33, 15 August 2017
  • ...ls to assist with creating, editing and debugging an [[SMS:ADCIRC|ADCIRC]] model. The [[SMS:ADCIRC|ADCIRC]] interface exists in the [[SMS:Mesh Module|2D Mes === Model Control ===
    2 KB (304 words) - 16:03, 11 December 2018
  • ...sed to map Manning's roughness values to the cross sections of a hydraulic model. ...ctions when cutting from a digital terrain model. As part of the hydraulic model the material IDs are assigned unique Manning's roughness values (in the cas
    2 KB (305 words) - 16:55, 13 June 2018
  • The '''Import GIS File''' and '''Export GIS File''' commands in the ''HEC-RAS'' menu can do the following: ==Import GIS File==
    2 KB (359 words) - 15:44, 29 November 2017
  • ...item and selecting '''New Coverage''' command followed by using the ''New Coverage'' dialog.. These coverages can be used with most models and simulations. ...erline Coverage]] – Used to identify the centerline in the hydraulic model.
    3 KB (424 words) - 20:04, 15 August 2022
  • ...o assist with creating, editing, and debugging a [[SMS:CMS-Flow|CMS-Flow]] model. The [[SMS:CMS-Flow|CMS-Flow]] interface exists as a simulation. The simula ...ols for setting up a simulation and analyzing the datasets computed by the model.
    4 KB (554 words) - 22:20, 18 January 2022
  • ...The coverages are grouped into conceptual models. The type of the active coverage is displayed in the [[SMS:Object Info|information]] box displayed from the ...n't necessarily coincide with meshing zone boundaries. Alternatively, one coverage could define Cartesian grid parameters for the same zone.
    6 KB (962 words) - 19:26, 20 December 2022
  • ...n the [[WMS:HEC-HMS Defining the Meteorological Model|''HMS Meteorological Model'' dialog]]. ...irst grid in the file list. Each additional grid will be saved to the DSS file based on the time interval specified in the ''HMS Job Control'' dialog and
    2 KB (374 words) - 21:25, 12 December 2023
  • ...ls to assist with creating, editing and debugging an [[SMS:ADCIRC|ADCIRC]] model. [[File:ADCIRC Simulation.png|thumb|175 px|Example of an ADCIRC simulation in the P
    5 KB (772 words) - 18:42, 5 April 2021
  • When the MODAEM model is active, the ''MODAEM'' menu becomes available. The menu has the followin ; Solve : This command will execute the MODAEM model.
    743 bytes (100 words) - 18:18, 22 August 2016
  • [[File:SRH Simulation.png|thumb|175 px|Example of an SRH-2D simulation in the Proj ...D simulation can have its own parameters based on what is entered into the model control.
    4 KB (692 words) - 18:44, 5 April 2021
  • ...ht|A SWMM hydraulic model with arcs representing links and nodes in a SWMM model and the symbols corresponding to links and nodes in the hydraulic schematic ...As updates are made to the conceptual model, the hydrologic or hydraulic model are automatically updated.
    2 KB (262 words) - 20:32, 20 December 2019
  • ...ently, this coverage only supports links and nodes for the [[WMS:SWMM|SWMM model]]. ...c|hydraulic schematic]] from the coverage. After having done this, define model specific data on the hydraulic schematic in the [[WMS:Project Explorer Cont
    5 KB (866 words) - 16:25, 3 January 2019
  • [[File:ActvityClassification.png|thumb|250 px|''Activity Classification Coverage'' dialog]] ...the model run time in models that do automatically classify activity. The coverage can use all of the standard Map module [[SMS:Interface Components|interface
    2 KB (265 words) - 16:01, 17 November 2016
  • ...his spectral data is defined using a spectral coverage. Each node in this coverage can be assigned to one spectral grid, defining the conditions at that locat ==Coverage Properties==
    3 KB (410 words) - 14:34, 30 March 2017
  • The 1D river module makes use of the [[SMS:File Menu|''File'']], [[SMS:Edit Menu|''Edit'']], [[SMS:Display Menu|''Display'']], and othe ==Model Specific Menus==
    2 KB (243 words) - 14:06, 12 June 2019
  • ...with ADCIRC. Running ADCIRC directly from SMS also works fine, and various model checks have been implemented to help catch mistakes and avoid crossing ADCI ...e ''Models | Wind'' | '''Holland/ PBL'''. Alternately, convert an existing coverage by right-clicking it and selecting ''Type | Models | Wind ''| '''Holland/ P
    4 KB (692 words) - 14:11, 11 June 2019
  • ...basis for the development of the cross section data in the ArcHydro data model. Cross sections in the database can be used for the development of hydrau ...to open a cross section database using the '''Open''' command from the ''File'' menu.
    2 KB (344 words) - 14:38, 18 September 2017
  • ...ls to assist with creating, editing and debugging an [[SMS:STWAVE|STWAVE]] model. [[File:STWAVE simulation.png|thumb|175 px|Example of an STWAVE simulation in the P
    6 KB (887 words) - 21:47, 6 September 2022
  • [[File:SWMMAttributes.png|thumb|550 px|Attributes mapped to a SWMM model]] ...s and peak flows which can then be fed into the hydraulic component of the model. The hydraulic component lets engineers analyze the capacity of a current s
    4 KB (575 words) - 17:53, 17 October 2017
  • [[File:WMS GSSHA Model Linkage dialog.png|thumb|right|380 px|''GSSHA Model Linkage'' dialog]] ...ontrol|''GSSHA Job Control'' dialog]]. It allows linking the current GSSHA model to other GSSHA models: a child project, a parent project, or both.
    3 KB (561 words) - 21:29, 15 May 2019
  • ...rcs, polygons in coverages) for use in a [[GMS:Conceptual Model|conceptual model]]. Attributes associated with the GIS data can also be mapped over to attri ...n the active coverage. Also, if mapping over attributes, make sure the GMS coverage attributes are defined before doing the conversion.
    1 KB (239 words) - 14:48, 9 April 2018
  • ...module, when [[SMS:CGWAVE|CGWAVE]] or [[SMS:ADCIRC|ADCIRC]] is the active coverage type. A domain is the region to be filled by a finite element mesh. An ocea [[File:ADCIRC DomainOptions.png|thumb|230 px|Example of the ''Domain Options'' dia
    4 KB (617 words) - 15:12, 11 October 2017
  • ...verage]] in the Map module. The [[SMS:Spatial Data Coverage|Spatial Data]] coverage is used because it allows the specification of generic time series data at # Create a new Spatial Data coverage and give it a descriptive name.
    5 KB (817 words) - 20:13, 11 September 2023
  • [[File:BOUSSsimulation.png|thumb|300 px|Example of the project explorer containing ...ing in SMS 11.2. A simulation should contain a BOUSS-2D grid, a wave maker coverage, and optional damping and porosity coverages. Right-clicking on the simulat
    5 KB (830 words) - 21:24, 16 June 2020
  • ...ny cross sections that are automatically extracted from at digital terrain model. A centerline arc provides the backbone of the hydraulic model definition. It's direction should be from upstream to downstream as this is
    2 KB (313 words) - 22:48, 15 August 2022
  • ...any cross sections that are automatically extracted from a digital terrain model. ...arc defines the stream thalweg, and provides the backbone of the hydraulic model definition. It generally follows the flow of the river, and may not actuall
    2 KB (271 words) - 18:47, 4 January 2024
  • ...itical, supercritical, and mixed flow regime profiles. HEC-RAS is able to model obstructions in the flow path. The [[SMS:HEC-RAS 11.2 and earlier|HEC-RAS]] model makes use of the 1D river module. The ''HEC-RAS'' menu has the following co
    4 KB (582 words) - 15:28, 13 June 2019
  • ...ent land use (roughness) types found in the floodplain. After building the coverage, define each polygon attribute by double-clicking on the polygon and assign #:[[File:WMS HEC RAS MP.png|150 px]]
    2 KB (266 words) - 20:30, 8 June 2023
  • ...ls to assist with creating, editing and debugging an [[SMS:ADCIRC|ADCIRC]] model. [[File:ADCIRC Simulation.png|thumb|175 px|Example of an ADCIRC simulation in the P
    7 KB (975 words) - 21:15, 9 February 2023
  • [[File:TUFLOW-2D-2DLinkSimulation.png|thumb|250 px|Example of linking 2D domains i ...ct [https://www.tuflow.com/Default.aspx TUFLOW] to add this feature to the model license.
    2 KB (274 words) - 19:06, 8 March 2018
  • ...can be generated so that regions can automatically be mapped to a drainage coverage when performing hydrologic analysis using the NSS regression equations. Ind ...image in the background, digitize the lines and build the polygons of the coverage.
    2 KB (317 words) - 15:10, 26 October 2016
  • ==Snapping Feature Objects within a Coverage== Within a coverage, the [[SMS:Feature_Object_Modification:_All#Clean|''Clean'']] tool can be u
    4 KB (714 words) - 22:56, 4 December 2020
  • ...ine and 1D Hyd Cross Section coverages. This can be done by selecting each coverage to make it active and then selecting '''Interpolate Water Surface Elevation ...en delineating the floodplain again using the ''User defined flood barrier coverage'' option (see Figure 3 below).
    2 KB (254 words) - 23:50, 12 December 2017
  • ...interface whereby any two-dimensional finite element or finite difference model can be run using SMS as a pre- and post-processor. The generic model interface can be added to a [http://www.aquaveo.com/software/sms-pricing pa
    5 KB (814 words) - 21:24, 2 May 2023
  • ...vide an easy method to import GIS data into SMS. Unfortunately the shape file format is extremely redundant, meaning that points or lines that are share Therefore, in order to convert a shape file to a SMS coverage, it may take up to several minutes (depending on size) to build the correc
    3 KB (416 words) - 19:22, 24 August 2017
  • ...ommand followed by using the [[SMS:Coverages#Creating_a_New_Coverage|''New Coverage'']] dialog. The following model specific coverages are available:
    7 KB (1,053 words) - 20:07, 10 August 2021
  • [[File:GIS to Feature Step1.png|thumb|450px|right|''GIS to Feature Objects Wizard' [[File:GIS to Feature Objects Wizard -- Step 1 of 2.jpg|thumb|500px|right|''GIS to
    4 KB (614 words) - 22:52, 21 November 2017
  • ...s the only option available to assign to a feature object, relative to the coverage type. ...p.png|thumb|350 px|''Point Properties'' dialog for the boundary conditions coverage]]
    4 KB (637 words) - 15:04, 2 May 2024
  • [[File:MapModuleExample.png|thumb|250 px|Examples of arcs drawn over DEM data in t ...d be used to define [[WMS:Land Use Coverage|land use]] and [[WMS:Soil Type Coverage|soil zones]].
    2 KB (387 words) - 22:09, 18 December 2019
  • [[File:SRH Simulation.png|thumb|175 px|Example of an SRH-2D simulation in the Proj ...D simulation can have its own parameters based on what is entered into the model control.
    6 KB (1,077 words) - 16:03, 23 June 2023
  • ...the ''River Tools'' menu uses the cross section arcs and a digital terrain model (TINs are the only source that can currently be used) to extract the elevat ...lweg, left bank, right bank) can be defined from a 1D-Hydraulic Centerline coverage, or by AutoMark. The ''AutoMark'' option will examine the elevations of the
    2 KB (292 words) - 16:57, 13 June 2018
  • ...data (coverages) to build the basic geometry necessary for a 1D hydraulic model. Much of the information for developing [[SMS:SMS Models|models]] with the Currently the only major model supported is [[SMS:HEC-RAS|HEC-RAS]].
    3 KB (483 words) - 22:16, 24 March 2022
  • ...rt of material on the shoreline and the shoreline morphology. The GenCade model allows defining multiple wave gages, providing for spatially varied driving ...Each wave event has a date and time, a H0, a period, and a direction. The model computes the wave conditions for each cell in the grid by interpolating the
    4 KB (631 words) - 14:21, 15 July 2019
  • ...lly. In such cases, and many times after extraction from a digital terrain model, there are edits that must be performed in order to prepare the cross secti ...in a [[WMS:1D-HYD Cross Section Coverage Type|1D Hydraulic Cross Section]] coverage. After assigning the cross section, it also possible to enter the editor fo
    5 KB (849 words) - 22:48, 4 May 2020
  • {{Infobox Model | ...is the case with finite difference and finite element models. Rather, the model is defined by “analytic elements” representing line sources and sinks s
    4 KB (659 words) - 15:45, 28 June 2018
  • ...y support the HEC-RAS model, but will be used to support the FHWA BriStars model as well as additional hydraulic models that will be supported in future ver ...am below illustrates how these coverages are used to establish a hydraulic model.
    5 KB (810 words) - 22:55, 4 May 2020
  • After running a 1D Hydraulic model like HEC-RAS, the result is a water surface elevation (or hydrograph for a :[[File:InterpolatingHydraulicModelResults1.png]]
    2 KB (283 words) - 20:49, 28 November 2022
  • ...e basis for the development of the cross section data in the ArcHydro data model. Cross sections in the database can be used for the development of hydrauli ...e to open a cross section database using the '''Open''' command from the ''File'' menu.
    3 KB (415 words) - 22:38, 4 May 2020
  • ; [[SMS:Model Checker|'''Model Check''']] : Checks the active PTM simulation for common input errors. ...Opens the ''Model Control'' dialog (used to organize input files, specify model parameters, choose output options, etc.).
    3 KB (534 words) - 15:48, 13 September 2017
  • ...to modify the Z values. The purpose of each coverage is dependent upon the coverage type. Some coverages will modify z values and others will control other att ...rer links]] inside of a 2D geometry component. Only one grid or grid frame coverage may be linked in each geometry component.
    5 KB (780 words) - 16:01, 9 October 2017
  • ...d frame]] inside a [[SMS:TUFLOW 2D Geometry Components|TUFLOW Grid Extents coverage]]. ...T2D Z Lines/Polygons (Simple) Coverage|TUFLOW 2D Z Lines/Polygons (Simple) coverage]] can also be used to force elevations using arcs or polygons.
    3 KB (569 words) - 16:06, 6 October 2017
  • [[Image:TUFLOW AD.png|thumb|450 px|TUFLOW ''Model Control'' dialog showing the ''Constituents'' tab.]] The constituent data is entered in the ''TUFLOW 2D Model Control'' of the TUFLOW simulation. The ''Constituents'' tab allows enterin
    3 KB (486 words) - 16:59, 12 August 2019
  • An area property coverage is used to map properties such as Manning's roughness values to the mesh, g ...o represent the different Manning's roughness values to be included in the model (stream, floodplain, field, roadway, etc.). Polygons can then be created to
    2 KB (364 words) - 15:07, 11 September 2019
  • ...project is created in SMS, a coverage will be automatically created. This coverage is named "Area Property", and it will be set to the default area property t Right-clicking on the Map module root folder [[File:Map Folder.svg|16 px]] in the Project Explorer invokes an options menu with
    4 KB (708 words) - 19:13, 31 August 2020
  • ...d [[SMS:CGWAVE|CGWAVE]] type [[SMS:Coverages|coverages]]. When a Coastline file is read into SMS, feature arcs are created. If a coastline closes, the fina ...u [[SMS:File Menu|''File'' | '''Open''']] and saved from [[SMS:File Menu|''File ''| '''Save As...''']] from the [[SMS:Map Module|Map module]].
    2 KB (230 words) - 16:05, 26 September 2017
  • ..., and for the Map -> X commands where X is a geometric object or numerical model. ##Better handling of unsupported MODFLOW packages in the Name file
    2 KB (299 words) - 14:25, 12 September 2016
  • ===Map to Model Dialog=== The ''Map → Model'' dialog provides a few options for how feature objects in Map module will
    3 KB (463 words) - 14:53, 15 August 2017
  • ...] '''Get Module Info''' macro or using the '''Get Info''' command in the ''File'' menu. *For selected coverage:
    4 KB (524 words) - 16:47, 19 September 2019
  • ...simulation can have its own parameters based on what is entered into the ''Model Control''. Each simulation can share the same components or use different c ...MS-Flow [[SMS:CMS-Flow_Coverages#Boundary_Conditions|Boundary Conditions]] coverage
    5 KB (719 words) - 19:10, 21 September 2017
  • [[File:3dbridge.png|thumb|400 px|3D bridge example]] The 3D bridge component can be used to for multiple purposes in a model. These include:
    7 KB (1,067 words) - 19:47, 6 October 2023
  • ...p / Overtopping model can used to in the design of coastal structures. The model runs a simulation based on user-specified parameters. ...r. Select the coverages that will be created for the project and give each coverage the desired name. Click '''OK'''.
    10 KB (1,519 words) - 15:41, 16 July 2019
  • ...nking parameter values to index maps. See [[WMS:WMS Supported File Formats|File Formats]] for the different mapping parameters. The [https://gsshawiki.com/ ...s the mapping tables created using those coverages, or manually via a text file.
    2 KB (290 words) - 00:27, 21 December 2019
  • ...y. In such cases, and many times after extraction from a digital terrain model there are edits that must be performed in order to prepare the cross secti # When double-clicking on an arc in a 1D Hydraulic Cross Section coverage, it's possible to assign a cross section from a database. After assigning
    5 KB (846 words) - 20:48, 18 April 2022
  • ...p Module Icon.svg|16px]] and the other through the '''2-D Grid Module''' [[File:2D Grid Icon.svg|14px]]. {{anchor|GSSHA Coverage Menu}}
    6 KB (964 words) - 17:57, 21 May 2021
  • {{SMS Infobox Model | ...ter quality processes in oceans, coastal waters, estuaries and rivers. The model may be used for coastal and nearshore environments including beaches and co
    7 KB (1,012 words) - 17:14, 28 March 2023
  • ...Use coverage in WMS has a different purpose depending on the model and/or model parameters assigned to basins using land use as an indicator. The followin ...NRCS) Curve Numbers for hydrologic soil groups (requires the use of a soil coverage as well).
    3 KB (520 words) - 15:46, 10 January 2024
  • ...splayed to assist in model placement or simply to enhance the display of a model. ...n. To turn off the display of all CAD data, uncheck the box next to the "[[File:CAD Folder.svg|16 px]] CAD" folder.
    4 KB (642 words) - 14:24, 13 June 2022
  • ...modify project parameters, and view the solutions produced by the GenCade model. The GenCade interface exists in the [[SMS:1D Grid Module|1D Grid module]] ...is much more convenient to work with the conceptual model using a GenCade coverage.
    5 KB (785 words) - 15:13, 9 April 2019
  • ...simulation can have its own parameters based on what is entered into the ''Model Control''. Each simulation can share the same components or use different c *A observation cells coverage
    6 KB (912 words) - 21:31, 20 November 2023
  • The EFDC coverage is used to create curvilinear grids for use with the EFDC model (EFDC grid format). A curvilinear grid has I and J coordinates but the cell The coverage doesn't contain any point or arc attributes.
    5 KB (706 words) - 14:07, 4 June 2019
  • ...s similar to the land use coverage in that it can be used to map different model parameters (related to soil type) from polygonal coverages (usually importe ...ologic soil group to map SCS Curve Numbers (requires the use of a land use coverage as well).
    3 KB (500 words) - 21:56, 18 December 2019
  • [[File:Wmsras1.PNG|thumb|400 px|HEC-RAS example]] ...itical, supercritical, and mixed flow regime profiles. HEC-RAS is able to model obstructions in the flow path.
    7 KB (1,097 words) - 20:32, 8 June 2023
  • ...S:ADCIRC|ADCIRC]] project. The conceptual model defines parameters such as model extents, mesh generation options, and boundary conditions. == ADCIRC Conceptual Model Development ==
    3 KB (494 words) - 14:25, 17 June 2019
  • The 1D grid module [[File:1D Grid Icon.svg|16 px]] is used to display 1D coastal data. ...can be created from a map coverage using the '''Create 1D Grid Frame''' [[File:Create 1D Grid Frame Tool.svg|16 px]] tool. A 1D grid is oriented with the
    2 KB (400 words) - 18:15, 3 February 2022
  • [[File:SpectralEvents.jpg|thumb|450 px|''Spectral Events'' dialog]] ...rol'' dialog or through the '''Define Cases...''' button in the ''CMS-WAVE Model Control'' dialog.
    4 KB (655 words) - 21:49, 6 September 2022
  • ...r hydraulic model or collected from different sources are read from a text file as a scatter dataset (see [[WMS:Preparing Stage Data|preparing stage data]] ...ion of the water surface). Such points could be the results of a hydraulic model simulation, calculated in the WMS channel calculator, or retrieved from a k
    6 KB (942 words) - 15:57, 14 December 2017
  • ...lish the computational domain and parameters for surface runoff. The GSSHA model is fully coupled with hydraulic stream flow/routing models. Parameters for ...The fully coupled groundwater to surface-water interaction allows GSSHA to model basins in both arid and humid environments."<ref name="GSSHA overview"/>
    6 KB (999 words) - 23:05, 13 May 2021
  • ...feature object tools in the [[GMS:Map Module|Map module]] (the conceptual model approach). A horizons to 3D mesh approach can also be used. ==Basic Steps in Building a FEMWATER Model==
    9 KB (1,467 words) - 21:15, 5 October 2017
  • ...steady state or transient (multiple time steps). Most datasets represent model solutions but datasets also result from interpolation and operations on exi [[File:SMS Dataset Toolbox.png|600 px]]
    789 bytes (117 words) - 15:45, 1 May 2020
  • ...SMS session and creates a new blank coverage (since SMS requires an active coverage at all times). SMS will ask for confirmation of this action. ...p an ''Attributes'' dialog. The specifics of the dialog are unique to each coverage.
    6 KB (976 words) - 16:35, 17 March 2022
  • ...pes to learn about the attributes associated with objects in that specific coverage. ...overages is to define geometric objects for data extraction from numerical model results.
    7 KB (1,106 words) - 21:38, 17 March 2022
  • ...ross Sections''' command uses the cross section arcs and a digital terrain model (TINs are the only source that can currently be used) to extract the eleva ...weg, left bank, right bank) can be defined from a 1D-Hydraulic Centerline coverage, or by AutoMark. The ''AutoMark'' option will examine the elevations of the
    2 KB (245 words) - 16:45, 29 December 2015
  • ...itch Current Model]] : Model command &ndash; changes the current numerical model associated with the mesh. ...neric model has been loaded into SMS, this command will remove the generic model.
    6 KB (861 words) - 16:24, 17 March 2022
  • ...for setting up the CE-QUAL-W2 bathymetry and control files. The CE-QUAL-W2 model can be added to a [http://www.aquaveo.com/software/wms-pricing paid edition ==Creating and Running a CE-QUAL-W2 Model using WMS==
    6 KB (961 words) - 20:28, 5 June 2023
  • ....jpg|thumb|200 px|The ''Incident Wave Conditions'' section of the ''CGWAVE Model Control'' dialog.]] The ''Incident Wave Conditions'' section of the ''CGWAVE Model Control'' dialog allows specifying wave conditions to be simulated in a run
    3 KB (504 words) - 22:41, 16 May 2018
  • !style="text-align:left;"|3. Import model solution sets. :If a model solution set has not already been loaded into the project, complete the fol
    2 KB (357 words) - 14:52, 24 April 2018
  • ...ns have been created which will overlay the parameter map on the watershed model and assign the appropriate value to each sub-basin. These functions can be ...e|Soil Type Coverage]], then [[WMS:Importing Shapefiles|import the polygon file]] and ensure that the ''Soil Number'' field (often called CLASS_NO by the L
    5 KB (871 words) - 19:52, 4 January 2024
  • ...n "giras.exe" will be the file needed. The soils shapefile will be in the file ending in "core31.exe". A HUC number is needed for the watershed, whichcan # Create a new Land Use coverage and make sure it's set as the active coverage.
    5 KB (775 words) - 20:59, 22 July 2020
  • ...to digitize aspects of an image (*.tif, *.jpg, ...), simply load the image file into SMS and select the desired tool from the [[SMS:Map Module Tools|Map mo *Use the '''Create Feature Arc''' [[File:SMS Create Arc Tool.svg|16 px]] tool to make arcs. Click once to start an a
    4 KB (642 words) - 14:57, 26 June 2017
  • :***Delta bed dataset computed by a sediment transport model. :**Can be defined interactively but defining it in a map coverage is recommended.
    5 KB (705 words) - 19:48, 9 March 2023
  • [[File:TUFLOWsimulation.png|thumb|225 px|Example of the project explorer containin A simulation includes the domain, boundary conditions, model parameters, event definition, and material set used for a single TUFLOW run
    4 KB (661 words) - 14:12, 9 August 2017
  • [[File:SRH Material List Properties.png|thumb|500 px|Example of the ''Material Pro The SRH-2D model has its own materials options. These options become available when SRH-2D i
    5 KB (757 words) - 19:47, 17 March 2021
  • #** Hurricane Coverage #** PBL Wind Coverage
    5 KB (771 words) - 21:59, 27 November 2017
  • The SRH-2D model has its own materials options. These options become available when SRH-2D i ...sport. Both an SRH-2D materials coverage and an SRH-2D sediment materials coverage need to be included in an SRH-2D simulation when using sediment transport.
    6 KB (883 words) - 21:56, 5 April 2021
  • The storm track in a PBL wind coverage is fed into the PBL model, which then produces output for use in ADCIRC. To create a PBL Wind coverage, select ''PBL'' as the wind model in the coverage attributes. This will enable the '''Options button''' for PBL, and change t
    6 KB (1,057 words) - 14:12, 11 June 2019
  • The SRH-2D model has its own materials options. These options become available when SRH-2D i ...sport. Both an SRH-2D materials coverage and an SRH-2D sediment materials coverage need to be included in an SRH-2D simulation when using sediment transport.
    6 KB (884 words) - 15:58, 16 April 2020
  • ...ons) that overlay the study area and map those to feature objects in a map coverage. ...ute set of Soil Type. After making sure WMS will be mapping to the correct coverage, select the polygons which overlay the study area to be mapped. (This is do
    3 KB (528 words) - 17:28, 2 October 2017
  • ...m while the simulation is running in the Run Queue and in another form for model review of a completed simulation. ...review the plots for the simulation as quality check on the simulation and model review.
    6 KB (987 words) - 20:19, 10 January 2024
  • ...the calculations are all done inside GMS using the CCF (Cell-to-Cell Flow) file generated by MODFLOW. ...budget ID'' property is listed in the ''Areal Properties'' column of the ''Coverage Setup'' dialog. These IDs are then assigned to the appropriate grid cells w
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  • [[Image:SMS BOUSS2D MC.png|thumb|550 px|''BOUSS-2D Model Control'' dialog]] ...nterface#:BOUSS-2D Menu|BOUSS-2D simulation right-click menu]] opens the ''Model Control'' dialog.
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  • ...to documents, please click on the icon on this page to go to were the icon file is stored. Do not copy the images on this page. [[SMS:Macros|Macro]] icons used on the [[SMS:Macros#File_Toolbar|File]] toolbar, [[SMS:Macros#Display_Toolbar|Display]] toolbar, and [[SMS:Macros
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  • ...ritical, supercritical, and mixed flow regime profiles. HEC-RAS is able to model obstructions in the flow path. Two dimensional capabilities were added to H ...in the form of an SDF file (exported by HEC-Ras) and saved as a HEC-GeoRAS file for inclusion into a HEC-RAS project. The [[WMS:HEC-RAS|WMS package]] has a
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  • The SRH-2D model has its own materials options. These options become available when SRH-2D i ...sport. Both an SRH-2D materials coverage and an SRH-2D sediment materials coverage need to be included in an SRH-2D simulation when using sediment transport.
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  • [[File:Material_List_and_Properties_Dialog.PNG |thumb|500 px|Example of the ''Mate The SRH-2D model has its own materials options. These options become available when SRH-2D i
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  • [[File:3dbridge.png|thumb|400 px|3D bridge example]] The 3D structure can be used to for multiple purposes in a model. These include:
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  • ...ing MODFLOW-USG in GMS a series of PEST utilities are run to calculate the model computed values at observations. The inputs to these utilities are managed ...ages|coverages]] in the [[GMS:MODFLOW Conceptual Model Approach|conceptual model]]. The generation of MODFLOW-USG observation data may occur manually by sel
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  • ...ociated with the selected module. The first three menus ([[WMS:File Menu|''File'']], [[WMS:Edit Menu|''Edit'']], [[WMS:Display Menu|''Display'']]) are the ...dynamic menus. The dynamic menus change depending on the active module or model.
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  • ...id tools are available in the 1D grid module when working with the GenCade model. These tools allow editing the features on a 1D grid. These festures incl ...e project through a conceptual model in a GenCade coverage. The conceptual model allows more flexibility when specifying the structures because it works in
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  • ...ew/abrdeck.html "ATCF best track"] similar file. It is called a "similar" file, because the ADCIRC development group have modified the format slightly for ...ion in formats compatible with either NWS = 8 or NWS = 19, or as a ".trop" file for use by PBL.
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  • .../or eddy viscosities. The plot will show trends in the solution to see if model parameter changes are causing better calibration with measured field data. ...ending on the numerical model that is used). If there is not more than one model solution, then the ''Error vs. Simulation'' plot will not have the desired
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  • ...tools in the Cartesian Grid module tool palette. Depending on the current model, and the type of grids it supports, some of these tools may not be availabl | align = "center" | [[File:SMS Select Cell Cell Tool.svg|16 px]]
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  • The CMS-Flow model makes use of the simulation based modeling approach. This requires definin [[File:CMS ArcBoundaryCondition.png|thumb|400 px|The CMS-Flow ''Arc Boundary Condi
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  • When using the model, the project will need a BOUSS-2D Cartesian grid. If a grid has already bee ...click on the Map Data [[File:Map Folder.svg|16 px]] item and select '''New Coverage'''.
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  • [[File:MF6-OBS-PEST package.png|thumb|400px|right|The ''MDOFLOW 6 PEST Observation ...les needed by the PEST utilities to determine the computed values from the model solution.
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  • ...ary condition can be assigned to a feature object on a boundary conditions coverage. For hydrograph coverages, "Hydrograph" is the only option available to ass ...rop.png|thumb|450 px|''Arc Properties'' dialog for the boundary conditions coverage]]
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  • The WAM interface supports the wave model [[SMS:WAM|WAM]]. ...pecific to each grid in a simulation as well as the simulation as a whole (model control).
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  • ...data (coverages) to build the basic geometry necessary for a 1D Hydraulic Model. Much of the information for developing [[SMS:SMS Models|models]] with the ...orks must be associated with a specific 1D model (currently the only major model supported is [[SMS:HEC-RAS 11.2 and earlier|HEC-RAS]]. The module includes
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  • ...W package is available in the [[GMS:MNW2 Package|MNW2 package]]. A MODFLOW model can not use both the MNW1 and MNW2 packages, it must use one or the other. ...so be defined using the [[GMS:MODFLOW Conceptual Model Approach|conceptual model approach]] in the [[GMS:Map Module|map module]].
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  • The CMS-Flow model makes use of the simulation based modeling approach. This requires definin [[File:CMS ArcBC.png|thumb|400 px|The CMS-Flow ''Arc Boundary Conditions'' dialog]
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  • ...e. The options on the right of the dialog depend on the coverage type. The coverage type can be adjusted using the drop-down menu on the top right of the dialo ...aphical attributes of the points (symbol, color, size, etc.) depend on the coverage type and the BC type of the individual point. They are edited using the fie
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  • ...a point(s)]] and then selecting the '''Attribute Table''' command in the coverage right-click option menu. Each point's properties are displayed in the spre ...oint. These options are available depending on what was selected in the ''Coverage Setup Dialog''. The type for each point is defaulted to "NONE" in the ''T
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  • The '''Simplified Dam-Break (SMPDBK)''' model was developed in 1988 by the National Weather Service (NWS) for predicting The SMPDBK model can be added to a [http://www.aquaveo.com/software/wms-pricing paid edition
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  • :[[File:ColorPalettes.png|thumb|none|500 px|New color palette dialog]] ...slope. These parameters are not required when building an old-style TR-20 model but are included in the TR-20 dialogs to allow you to develop WinTR-20 mode
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  • ...traborehole flow that can significantly alter groundwater flow. A MODFLOW model can not use both the MNW1 and MNW2 packages, it must use one or the other. ...''MODFLOW'' menu. For a [[GMS:MODFLOW Conceptual Model Approach|conceptual model]] MNW2 points can be defined in the [[GMS:Map Module|map module]].
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  • ...to documents, please click on the icon on this page to go to were the icon file is stored. Do not copy the images on this page. Macro icons used on the [[GMS:Toolbars#Basic_Macros|File toolbar, Display toolbar, Other Macros toolbar]], and [[GMS:Toolbars#Contex
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  • ...<!-- - we will have an article describing this in detail (One article for model developers wishing to use scripting as part of a DMI and another for the sc ** Select by coverage option. [[SMS:Edit Menu|''Coverage'']]
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  • {{SMS Infobox Model | |screenshot= File:CMSFlow.png
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  • ...HA simulations. The dialog is accessed by switching to the '''2D Grid''' [[File:2D Grid Icon.svg|16px]] module and selecting ''GSSHA'' | '''Maps...''' to b [[File:WMS GSSHA Maps dialog Index Grid tab.png|thumb|300 px|''GSSHA Maps'' dialog
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  • ...e tool that guides through all the steps involved in creating a hydrologic model. It can be accessed by selecting the '''Hydrologic Modeling Wizard''' tool ...ad data into WMS. Obtain data using the WMS web service client, a catalog file, or by simply opening files.
    11 KB (1,687 words) - 18:07, 15 January 2024
  • ...rage|converted to a conceptual model]]. This is useful if there is a solid model of an embankment to analyze using [[GMS:UTEXAS|UTEXAS]]. ...also be accessed from the ''Display'' menu or the '''Display Options''' [[File:Display Options Macro.svg|16 px]] macro. The following describes the displa
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  • {{SMS Infobox Model | |screenshot = File:PTM example.png
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  • [[File:SRH-FloodwaySimulationGeneration.png|thumb|380 px|The ''SRH-2D Floodway Sim ...on. This modified BC coverage has all the same geometry as the original BC coverage. All water levels (such as Exit-H with specified values) are increased by t
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  • [[File:GenCadeRefinePoint.png|thumb|450 px|The GenCade ''Refine Point'' dialog]] ...de model coverage. The dialog is reached by selecting a point in a GenCade coverage and selecting the ''Feature Objects'' | '''Attributes''' command.
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  • ...overlaid with drainage basin boundaries to compute area-weighted composite model parameters for each sub-basin. In summary the following data are used for computing composite model parameters:
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  • ...rge and hydraulic conductivity are altered in a systematic fashion and the model is repeatedly run until the computed solution matches field-observed values ...ly adjust a set of [[GMS:Parameters|parameters]] and repeatedly launch the model until the computed output matches field-observed values. Parameter estimati
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  • [[File:NSS example.png|thumb|275 px|NSS example]] ...t models to set up and is the only statistical (rather than deterministic) model in WMS. It is a graphical interface to all the current statewide and metrop
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  • [[File:SRH-2D Summary Report.png|thumb|300 px|Example of the ''SRH-2D Project Summ ...'' &ndash; Enter the name of the person or organization that developed the model.
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  • ...le:1D Grid GenCade.png|thumb|400 px|Example of a 1D grid using the GenCade model]] ...evious long-term planform evolution of a beach models GENESIS (GENEralized Model for SImulating Shoreline Change[https://apps.dtic.mil/sti/pdfs/ADA217305.pd
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  • ** [[Coverages Tools|Coverage tools]] (Geometry generation/modification) *** Trim Coverage
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  • :[[SMS:Model Checker|Model Checker]] ;4.1. Generic Model
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  • ...elow. All of the plots listed below are associated with [[SMS:Observation Coverage|observation coverages]]. # [[SMS:PTM Gage Coverage|PTM Gages]]
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  • *Convert GIS data to Generic model coverage ...now bring in GIS data (shape file or mif/mid) and convert this to generic model node or arc attributes.
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  • ...selecting ''GSSHA'' | '''Precipitation...''' while in the '''2D Grid''' [[File:2D Grid Icon.svg|14px]] module. All rainfall types in GSSHA must be tied to {{anchor|Uniform Rainfall}}[[File:Dialog GSSHA Precipitation.png|thumb|250 px|''GSSHA Precipitation'' dialog
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  • ===Dynamic Model Interface === ...namic_Model_Interface_Schema|Dynamic Model Interface Schema]]. The dynamic model interface includes:
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  • ...umerical_Model|'''Switch Current Model''']] &ndash; Changes current active model. ...#Grid to Map|'''Grid &rarr; Map''']] &ndash; Converts grid data into a map coverage.
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  • The title is placed at the top of the input file to identify the model run. ...this option on to see a printout of the hydraulic grade line in the output file.
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  • ...created by importing borehole data by using the [[GMS:File Import Wizard|''File Import Wizard'']], importing sample data after boreholes already exist, or ...the [[GMS:2D Mesh Polygon Attributes|meshing options]] assigned to primary coverage controls the elements of the 3D mesh that is created. (See [[GMS:2D Mesh Mo
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  • [[File:SMS Materials Data.jpg|thumb|400 px|Example of the ''Materials Data'' dialo ...d pattern to a material. This general information is saved in the material file. The materials defined within the ''Materials Data'' dialog are available f
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  • [[File:STWAVE MC Parameters.png|thumb|400 px|STWAVE ''Model Control'' dialog showing the ''Parameters'' tab.]] ...mmand in the [[SMS:STWAVE Menu|STWAVE simulation menu]] opens the STWAVE ''Model Control'' dialog. This dialog is divided into multiple tabs with different
    8 KB (1,115 words) - 21:15, 20 November 2018
  • To model groundwater interaction in a GSSHA model: ...dary conditions conceptually to feature points/nodes and arcs on the GSSHA coverage.
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  • ...method allows creating a [[WMS:Travel Times from Map Data|time computation coverage]] in the map module and then define the "representative" flow paths within ...nt of customization and the ability to generate a summary report in a text file or by copying to the clipboard so that these critical input data can be wel
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  • Includes the ''File, Edit, Display,'' and other standard menus. See [[SMS:SMS Menus|SMS Menus]] ...umerical_Model|'''Switch Current Model''']] &ndash; Changes current active model.
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  • [[File:SRH MCgeneral.jpg|thumb|370 px|The SRH-2D ''Model Control'' dialog showing the ''General'' tab.]] ...by using the '''Model Control''' command in the ''SRH-2D'' menu. From the model control, enter data that will be written to the files used by SRH-2D for co
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  • ...tely defined, the conceptual model is ready to be converted to a numerical model. The first step in this conversion process is to create a grid using the '' ...itialized so that the grid just surrounds the currently defined conceptual model. Once again, in most cases, no changes will need to be made and the user ca
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  • ...verage is used in conjunction with the cross sections and digital terrain model in order to determine the thalweg position (from the centerline arc) and t [[File:1Dhydcrosssection.jpg|right|450 px]]
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  • ...le are grouped into coverages. Coverages are grouped into [[GMS:Conceptual Model|conceptual models]]. ...objects could not be included in a single coverage since polygons within a coverage are not allowed to overlap and recharge zones will typically overlap hydrau
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  • [[File:MODFLOW Layers to Scatter Points.png|thumb|500 px|Example of the ''MODFLOW .... It is only available if the true layer mode is being used with a MODFLOW model. When this command is selected, a new 2D scatter point set is created and a
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  • :[[GMS:Building a FEMWATER Model|Building a FEMWATER Model]] :[[GMS:FEMWATER Model Input|FEMWATER Model Input]]
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  • :[[SMS:File Menu|File Menu]] :[[SMS:Time Series Data File|Time Series Data File]]
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  • {{TOC right}}[[File:GsshaPipeNodeParameters.png|thumb|right|550px|GSSHA ''Pipe and Node Paramet ...hen a [[WMS:GSSHA Storm Drain#GSSHA Storm Drain Coverage|GSSHA storm drain coverage]] is active. This dialog is used for building and editing the pipes and nod
    7 KB (1,189 words) - 23:12, 17 May 2019
  • ...and nodes. Scroll to the right to see the full dialog.|700|none|alt=The ''Coverage Properties'' dialog is where the attributes are associated with feature poi :Clicking [[File:Dot dot dot button.png|16px]] brings up the [[WMS:GSSHA Hydraulic Structure
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  • * Major improvements to the SRH-2D hydrodynamics model (first full release of the custom interface). * An option was added to restore factory defaults in the ''File'' | '''Save Settings''' command.
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  • The Quadtree module [[File:Quadtree Mod Icon.svg|16 px]] contains tools used to construct and edit Qua ...del can utilize them and they are referred to as telescoping grids by that model and its developers. Beginning with SMS 12.1, a quadtree grid system was imp
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  • == Model Enhancements == ...water runoff. SWMM is primarily used for urban areas, and can be used to model single event or long-term (continuous) simulation of runoff quantity and qu
    10 KB (1,638 words) - 14:52, 6 June 2018
  • ...lish the computational domain and parameters for surface runoff. The GSSHA model is fully coupled with hydraulic stream flow/routing models. [[File:WMS GSSHA Channel Routing Parameters Dialog.png|thumb|right|280px|The ''GSS
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  • [[Image:TUFLOW MC 1D Auto.png|thumb|300 px|TUFLOW Model ''Control 1D'' showing the ''Automatic Manhole'' tab]] ...manhole attributes can be set up for a TUFLOW simulation in the TUFLOW 1D model control. TUFLOW will then automatically create manholes when the following
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  • ...ed, the final step in converting a conceptual model to a MODFLOW numerical model is to select the '''Map &rarr; MODFLOW''' command. However, before this com ...selected, only a subset of the coverages are used to update the numerical model.
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  • ...ch as [[SMS:shapefiles|ESRI Shapefiles (Arc/Info or ArcView)]] and MIF/MID file pairs (Map Info). ...and little or not tedious cell-by-cell editing is required. The conceptual model approach can be used to build models for any of the numeric models supporte
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  • The SRH-2D model makes use of the simulation based modeling approach. This requires definin ==Boundary Conditions Coverage==
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  • | align = "center" | [[File:Select Object Tool.svg|8 px]] | align = "center" | [[File:SMS Select Node Tool.svg|15 px]] || '''Select Feature Point or Node''' {{An
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  • :[[File:GMS Macro toolbars.png]] ===File Menu Macros===
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  • {{SMS Infobox Model | |screenshot= File:FESWMS.png
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  • The SRH-2D model makes use of the simulation based modeling approach. This requires definin ==Boundary Conditions Coverage==
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  • ...mputed when the '''Compute Basin Data''' command is chosen. When a terrain model is not present the gage weights for each basin must be entered manually fro ...nput parameters of the model are adjusted until the output computed by the model is reasonably close to the measured data.
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  • ...ce includes tools to assist with creating, editing, and debugging a CGWAVE model. The CGWAVE interface exists in the [[SMS:Mesh Module|2D Mesh Module]]. == Model Construction Steps ==
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  • [[File:STWAVEModelControl.jpg|thumb|400 px|''STWAVE Model Control'' dialog]] ...into sections for different types of parameters which are used during the model run. These include:
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  • :[[File:SelectDatasetValue.png|thumb|none|210 px|''Select by Dataset Value'' dialog [[File:SelectByArea.png|thumb|210 px|''Select by Area'' dialog.]]
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  • ...nd polygons. Unlike some models used in SMS, TUFLOW uses coverage data as model inputs. ...e use of links allows multiple simulations or geometry components to share coverage data. Sharing data between simulations reduces required disk space for the
    21 KB (3,419 words) - 16:59, 23 September 2019
  • [[File:SRH2D MC General.png|thumb|370 px|The SRH-2D ''Model Control'' dialog showing the ''General'' tab.]] ...by using the '''Model Control''' command in the ''SRH-2D'' menu. From the model control, enter data that will be written to the files used by SRH-2D for co
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  • [[File:AdH MaterialListandProperties.png|thumb|500 px|Example of the AdH Material ...t Explorer, define the material attributes by right-clicking the materials coverage and selecting '''Material List and Properties''' to open the ''Material Lis
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  • ...grid along observation arcs in the [[SMS:Observation Coverage|Observation coverage]]. Profile plots are created in the ''Plot Wizard'' dialog by selecting ''O [[File:Plot Data Options.png|thumb|400 px|Example of the ''Plot Data'' dialog]]
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  • ...created manually so that the same definitions can be remapped in a future model. ...required data. The format of the table is shown in Figure 1, and a sample file in Figure 2.
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  • ...tered data dataset, and the rainfall dataset and export all three to a KMZ file. In the film loop dialog, you can specify the display elevation associated WMS 8.3 allows you to import any index map file, such as Land Use, Soil Type, Combined Index Map, etc. from one GSSHA proje
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  • [[File:SRH ScenarioParameters.png|thumb|550 px|Example of the ''Advanced Simulatio ...either create alternate scenarios or it can be used to help calibrate the model.
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  • ...se versions, the user accesses the toolbox by selecting the toolbox icon [[File:Toolbox macro.png|16px]] in the macro toolbar. This brings up the SMS tool * a new data file.
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  • ...to assit with creating, editing, and debugging a [[SMS:BOUSS-2D|BOUSS-2D]] model. [[File:BOUSS GenerateArcs.png|thumb|250 px|Example of the BOUSS-2D ''Generate Arcs
    14 KB (2,143 words) - 20:46, 19 July 2019
  • CMS-Flow creates a number of files during the model run. These are summarized in the tables below |Hot_Start.H5||Hot Start File
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  • ...n and, when saved again, will include the unsupported packages in the name file and copy the associated files to the new location. Thus, although you may n #Model menus stay when changing modules
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  • ...|BOUSS-2D]] &ndash; Phase resolving Boussinesq wave energy and circulation model *[[SMS:CMS-Wave|CMS-Wave]] &ndash; Wave energy model
    14 KB (2,257 words) - 16:14, 16 February 2022
  • ...ided into sections for different types of parameters which are used by the model as it runs. These include: ...ave MC Paramters.png|thumb|400 px|The ''Parameters'' tab of the ''CMS-Wave Model Control'' dialog]]
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  • ...SRH-2D_Coverages#Boundary_Conditions_Coverage|SRH-2D boundary conditions]] coverage by selecting an arc or by selecting a nodestring in the mesh. Once the arc ...MS:SRH-2D_Coverages#Boundary_Conditions_Coverage|SRH-2D boundary condition coverage]].
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  • The ''ADCIRC Model Control'' dialog is where important project parameters are chosen and defin * ''General'' &ndash; Contains such options as model type, cold/hot start, terms, maximum number of iterations, bottom stress/fr
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  • ...RH-2D]] is the recommended 2D hydraulics model. However, the Bridge Scour coverage only requires a 2D mesh with elevation, water surface elevation, water dept ...cs. The user may supply pier arcs if applicable. When creating arcs, the coverage will automatically cycle through the arc types. See [[SMS:Bridge_Scour#Brid
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  • {{SMS Infobox Model | |screenshot= File:TUFLOW.PNG
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  • The Spatial Data coverage is designed to store, visualize, and analyze various types of data at node [[File:TimeSeriesEditor.jpg|thumb|420px|right|''Time Series Editor'']]
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  • {{Infobox Model | The UTEXAS model can be added to a [http://www.aquaveo.com/software/gms-pricing paid edition
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  • ...and cross sections. This can be accomplished by either right-clicking on a coverage in the [[SMS:Project Explorer|project explorer]] and selecting a convert co ...ross Sections''' command uses the cross section arcs and a digital terrain model (TINs are the only source that can currently be used) to extract the eleva
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  • ...SRH-2D_Coverages#Boundary_Conditions_Coverage|SRH-2D boundary conditions]] coverage by selecting an arc or by selecting a nodestring in the mesh. Once the arc ...MS:SRH-2D_Coverages#Boundary_Conditions_Coverage|SRH-2D boundary condition coverage]]. The supported run types include "Flow" for hydrodynamic simulations and
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  • ===MIKE 21 (*.mesh) File Support=== ====Convert GIS data to Generic model coverage====
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  • ...mensional connected features that are much smaller than a groundwater flow model's cells.<ref name="tm6-A45">{{citation ==Conceptual Model==
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  • ...derive a "probabilistic" floodplain where a region flooded by 100% of the model simulation combinations can be distinguished from an area that is flooded b :[[File:WMS StochasticModeling.jpg|thumb|none|left|300 px|]]
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  • The '''Map &rarr; TIN''' command creates a TIN using each polygon in the coverage. Vertices and nodes in the polygons are triangulated using the triangulatio ...nd creates a 2D mesh on the interior of all of the polygons in the current coverage. The figure below shows a cross section of a dam built using the [[GMS:Feat
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  • ...e by dragging and dropping the file into the graphics window or by using ''File'' | '''Open.''' Multiple simulations can be opened together, and SMS will ==TCF File==
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  • *'''Generic Model''' **8296 - Global parameters problems in .2dm file
    10 KB (1,383 words) - 23:46, 9 January 2023
  • [[File:GSSHA_flow_vectors.png|thumb|right|Digital dams visible with flow vectors t [[File:GSSHA_Cell_Fill_Block_Style_Digital_Dams.jpg|thumb|right|Digital dams visib
    4 KB (596 words) - 21:27, 10 May 2019
  • ...and polygons. Feature objects can be grouped together into coverages, each coverage defining a particular set of information. Since feature objects are pattern ...Thus, the user can focus on a simplified, high level representation of the model and little or no tedious cell-by-cell editing is required. The feature obje
    10 KB (1,739 words) - 17:44, 15 June 2022
  • [[File:ADCIRCweirElevations.jpg|thumb|225 px|Example of the ''Extract Weir Elevati ...ions into a Cartesian grid that will be used in a different model and/or a coverage. These tools are accessed by selecting the '''Extract Weir Elevations...'''
    7 KB (1,095 words) - 14:42, 5 May 2020
  • ...rs. Enter the value manually if not having delineated from a DEM, drainage coverage, or TIN. #Variable values derived from a DEM or Drainage coverage will automatically be placed in the appropriate edit fields. Other variabl
    7 KB (1,073 words) - 16:52, 18 December 2017
  • ...ows for multiple MODFLOW 6 simulations to be contained in the same project file. [[File:MODFLOW6 Sim.png|thumb|250 px|Example of a MODFLOW 6 simulation in the Proj
    15 KB (2,309 words) - 23:00, 6 May 2024
  • ==Coverage Properties== ...rage can be can be changed. Information about feature objects built in the coverage can also be viewed in this dialog.
    10 KB (1,698 words) - 21:18, 17 December 2019
  • * [[SMS:Preferences|Model Priority]] &ndash; There is a new preference that allows the user to specif ...lots]] &ndash; Vectors can now be displayed on specified points from a map coverage at points or along vertices on an arc. This can be useful for comparing dat
    10 KB (1,600 words) - 21:21, 9 January 2023
  • ...SCE-based calibration, observation points can be defined anywhere in your model. ...ining the observed discharges at junction nodes in the "GSSHA Storm Drain" coverage.
    5 KB (750 words) - 00:50, 17 May 2019
  • ...course of the simulation. These cells are flagged by MODFLOW in the output file by writing special values for the cells. The value assigned to inactive cel ===Cell Summary Text File===
    9 KB (1,502 words) - 21:54, 17 October 2017
  • ...mand is used to construct a 2D grid using the feature objects in a 2D grid coverage. When the '''Map &rarr; 2D Grid''' command is selected, the ''Create Grid'' ...le when ''Refinement'' is selected in the [[GMS:Coverages#Coverage_Setup|''Coverage Setup'']] dialog), the number of rows and columns in the grid will be autom
    3 KB (599 words) - 15:29, 24 October 2017
  • ...overage is used in conjunction with the cross sections and digital terrain model in order to determine the thalweg position, or lowest point in the cross se ...rsects), the ''Station'' (inherited from the centerline), and any specific model attributes.
    27 KB (4,269 words) - 18:56, 4 January 2024
  • ...o assist with creating, editing, and debugging a [[SMS:CMS-Flow|CMS-Flow]] model. The [[SMS:CMS-Flow|CMS-Flow]] interface exists in the [[SMS:Cartesian Grid ...ols for setting up a simulation and analyzing the datasets computed by the model. The menu includes the following commands:
    10 KB (1,677 words) - 14:25, 17 June 2019
  • :[[SMS:File Menu|File Menu]] :[[SMS:Time Series Data File|Time Series Data File]]
    27 KB (3,714 words) - 17:11, 28 March 2023
  • :[[SMS:File Menu|File Menu]] :[[SMS:Time Series Data File|Time Series Data File]]
    26 KB (3,579 words) - 20:26, 9 January 2023
  • :[[SMS:File Menu|File Menu]] :[[SMS:Time Series Data File|Time Series Data File]]
    28 KB (3,788 words) - 20:24, 16 November 2023
  • :[[SMS:File Menu|File Menu]] :[[SMS:Time Series Data File|Time Series Data File]]
    26 KB (3,568 words) - 19:29, 9 January 2023
  • ...RH-2D]] is the recommended 2D hydraulics model. However, the Bridge Scour coverage only requires a 2D mesh with elevation, water surface elevation, water dept ...cs. The user may supply pier arcs if applicable. When creating arcs, the coverage will automatically cycle through the arc types. See Bridge Scour Arc Attrib
    23 KB (3,766 words) - 16:45, 14 October 2022
  • :[[SMS:File Menu|File Menu]] :[[SMS:Time Series Data File|Time Series Data File]]
    26 KB (3,598 words) - 20:20, 9 January 2023
  • :[[SMS:File Menu|File Menu]] :[[SMS:Time Series Data File|Time Series Data File]]
    27 KB (3,677 words) - 19:26, 9 January 2023
  • ***UGrid from Coverage ...w displayed. When the selection information is being echoed to a window or file, the selection list includes attributes for each selected item. This can be
    2 KB (319 words) - 18:22, 3 October 2023
  • ...act Features tool allows using a raster to generate features arcs on a map coverage. Currently, the extract feature feature arcs can be centerlines of channels ...flow directions and accumulations for the DEM as it is defined. The second file contains information for an inverted version of the digital elevation data.
    14 KB (2,152 words) - 19:57, 1 November 2021
  • ...defined using polygons in a MODFLOW / MT3D / MODPATH Layer Attributes type coverage. The values are assigned to the cells when the '''Map &rarr; MODPATH''' co ...he ''MODPATH General Options'' dialog. If the option is on and the MODFLOW model is steady state.
    6 KB (898 words) - 22:19, 21 November 2022
  • ...act Features tool allows using a raster to generate features arcs on a map coverage. Currently, the extract feature feature arcs can be centerlines of channels ...flow directions and accumulations for the DEM as it is defined. The second file contains information for an inverted version of the digital elevation data.
    14 KB (2,139 words) - 19:26, 27 May 2021
  • [[File:TR20basindata.png|thumb|400 px|Example of the ''TR-20 Basin Data'' dialog.] ...sed to identify the basin in the file so that resulting hydrographs from a model run can be read back into WMS and associated with the basin. The name can n
    5 KB (784 words) - 17:18, 9 June 2023
  • ...ng the '''Select Feature Point''' tool and double-clicking anywhere in the coverage. This opens the ''Storm Track Node Attributes'' dialog. Whenever opening th ...e fields available, even those not used by ADCIRC or for the selected wind model. These are useful for book keeping and completeness, even though they typic
    4 KB (621 words) - 14:11, 11 June 2019
  • * ''File IO'' **''Use local help'' &ndash; Option to access the CHM file include with SMS when the '''Help''' button in a dialog is pressed.
    17 KB (2,741 words) - 16:37, 7 April 2023
  • :[[SMS:File Menu|File Menu]] :[[SMS:Time Series Data File|Time Series Data File]]
    27 KB (3,630 words) - 20:30, 9 January 2023
  • ...sented by a [[SMS:Feature Objects Types|feature point]] in a 2D Mesh model coverage. Attributes that can be specified for each feature point / refine point inc [[File:TABS Arc Attributes.png|thumb|200 px|'' TABS Feature Arc Attributes'' dialo
    2 KB (248 words) - 16:36, 11 May 2020
  • ...ogic losses are generally only necessary when using direct rainfall on the model domain. ...for each material in SMS and is referred to as a material set or material coverage. A material set can represent roughness for different conditions such as wi
    3 KB (389 words) - 22:43, 19 August 2019
  • ...rehensive list of all possible errors. These errors will appear during the model run. ...m the pre-processor. Clicking the SRH-2D button will show results from the model run.
    25 KB (4,119 words) - 23:15, 22 February 2024
  • ...both STR and SFR in the same project, they should not be used in the same coverage. *STR and SFR stream arcs cannot both exist in the same coverage because of the stream numbering issues.
    9 KB (1,544 words) - 19:34, 23 May 2022
  • ## Download the land use file(s) from http://www.webgis.com/ ## Turning on the ''Create TC Coverage'' is optional
    7 KB (1,000 words) - 22:45, 22 July 2020
  • DEM File won't read in: 2084 Changes to GSSHA .cmt file requested by Chuck: 277
    6 KB (892 words) - 14:28, 12 September 2016
  • '''GENE'''ralized Model for '''SI'''mulating '''S'''horeline Change (GENESIS) simulates the long-te * Coverage of wide spatial extent
    6 KB (867 words) - 14:44, 4 June 2019
  • === GSSHA Interface and Model Updates === ==== Model Calibration Updates ====
    8 KB (1,190 words) - 23:36, 9 January 2023
  • ...s Window. Mine Water Balance Modeling (MWBM) can be used to update a GSSHA model within WMS by using this dialog. ...f various parameters and data to be used in updating and running the GSSHA model. The name of the dialog changes as each page is selected from the list on t
    23 KB (3,644 words) - 20:28, 22 March 2019
  • ...ary condition can be assigned to a feature object on a boundary conditions coverage. ....png|thumb|450px|''Polygon Properties'' dialog for the boundary conditions coverage]]
    4 KB (649 words) - 15:26, 2 May 2024
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