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  • ...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
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