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  • #REDIRECT [[GMS:Creating a 2D Mesh]]
    36 bytes (6 words) - 18:24, 9 October 2013
  • #REDIRECT [[GMS:Creating a 2D Mesh]]
    36 bytes (6 words) - 18:25, 9 October 2013
  • #REDIRECT [[GMS:Creating a 2D Mesh]]
    36 bytes (6 words) - 18:24, 9 October 2013
  • #REDIRECT [[GMS:Creating a 2D Mesh]]
    36 bytes (6 words) - 18:24, 9 October 2013
  • #REDIRECT [[GMS:Creating a 2D Mesh]]
    36 bytes (6 words) - 18:24, 9 October 2013
  • #REDIRECT [[GMS:Creating a 2D Mesh]]
    36 bytes (6 words) - 18:24, 9 October 2013
  • #REDIRECT [[GMS:Creating a 2D Mesh]]
    36 bytes (6 words) - 18:24, 9 October 2013
  • #REDIRECT [[GMS:Creating a 2D Mesh]]
    36 bytes (6 words) - 18:25, 9 October 2013
  • #REDIRECT [[GMS:Creating a 2D Mesh]]
    36 bytes (6 words) - 18:24, 9 October 2013
  • #REDIRECT [[GMS:Creating a 2D Mesh]]
    36 bytes (6 words) - 18:25, 9 October 2013
  • #REDIRECT [[GMS:Creating a 2D Mesh]]
    36 bytes (6 words) - 18:24, 9 October 2013
  • #REDIRECT [[GMS:Creating a 2D Mesh]]
    36 bytes (6 words) - 18:25, 9 October 2013
  • #REDIRECT [[GMS:Creating a 2D Mesh]]
    36 bytes (6 words) - 18:24, 9 October 2013
  • #REDIRECT [[GMS:Creating a 2D Mesh]]
    36 bytes (6 words) - 18:25, 9 October 2013
  • #REDIRECT [[GMS:Creating a 2D Mesh]]
    36 bytes (6 words) - 18:24, 9 October 2013
  • #REDIRECT [[GMS:Creating a 2D Mesh]]
    36 bytes (6 words) - 18:25, 9 October 2013
  • #REDIRECT [[GMS:Creating a 2D Mesh]]
    36 bytes (6 words) - 18:24, 9 October 2013
  • #REDIRECT [[GMS:Creating a 2D Mesh]]
    36 bytes (6 words) - 18:25, 9 October 2013
  • {{2D Mesh links}} ...cations and triangulating, or converting a different GMS data type to a 2D mesh.
    3 KB (517 words) - 15:17, 24 October 2017
  • {{2D Mesh links}} ...sh|automated mesh generation]] and [[GMS:Editing 2D Meshes|mesh editing]]. 2D meshes are used for [[GMS:SEEP2D|SEEP2D]] modeling and to aid in the constr
    2 KB (305 words) - 19:32, 28 September 2017
  • {{SMS at a glance meshing options|Heading===At a glance==}} 2D meshes are created in the following ways in SMS.
    4 KB (703 words) - 14:59, 24 September 2019
  • {{3D Mesh links}} ...ts of nodes, elements, and faces. A 3D mesh can be created from a 2D mesh, a 3D grid, 3D scatter points, or by using the automated meshing tools in GMS.
    2 KB (296 words) - 14:25, 13 September 2017
  • ...''Convert To'' and ''Advanced''. Below is a list of all commands in the ''Mesh'' menu: ; [[GMS:Creating_a_2D_Mesh|New 2D Mesh]] : Creates a new, empty 2D mesh.
    3 KB (513 words) - 19:18, 11 April 2022
  • In order to create a TIN in GMS, there must be a set of TIN vertices. Then the TIN is created by triangulating the vertices ...triangulating, converting a different GMS data type to a TIN, and copying a currently existing TIN.
    3 KB (477 words) - 17:19, 28 November 2017
  • ...may be converted to other types of data used in GMS, such as a 2D mesh or 2D scatter points. TINs can be converted by right-clicking on the TIN in the [ ...the active TIN . One scatter point is created for each vertex in the TIN. A copy is made of each of the datasets associated with the TIN and the duplic
    2 KB (306 words) - 14:53, 24 October 2017
  • {{2D Mesh links}} ...points]]. 2D meshes are converted by using the following commands in the ''Mesh'' menu:
    3 KB (555 words) - 17:14, 28 November 2017
  • The following steps illustrate how to use the Horizons method to create 3D Mesh stratigraphy. ...y exist, or using the borehole tools to manually enter the boreholes. Once a borehole has been created it can be edited in the ''Borehole Editor'' or by
    4 KB (577 words) - 15:09, 24 October 2017
  • ...of elements is to triangulate a set of nodes into a network. This provides a surface that simulates the region being modeled, but normally does not resu ...lected, then all nodes will be triangulated. If linear elements exist, or a linear element creation tool has been selected, then this command creates l
    1 KB (215 words) - 14:50, 11 May 2016
  • :[[GMS:Creating a TIN|Creating a TIN]] :[[GMS:Editing a TIN|Editing a TIN]]
    8 KB (1,108 words) - 15:15, 16 March 2018
  • {{2D Grid links}} ...s]] are provided for working with 2D grids. Currently, GMS only allows one 2D grid per project.
    2 KB (343 words) - 15:27, 24 October 2017
  • {{2D Scatter Point links}} ...ts is called a scatter point set. Each of the scatter points is defined by a set of xy coordinates.
    4 KB (594 words) - 17:20, 28 November 2017
  • When the 2D Grid module is active, the ''Grid'' menu becomes active. The ''Grid'' menu ; [[GMS:2D Grid Creation and Editing#Creating 2D Grids|Create Grid...]] : Brings up the ''Create Finite Difference Grid'' di
    2 KB (354 words) - 17:58, 2 October 2017
  • {{2D Grid links}} GMS provides two methods for creating 2D grids and multiple ways to edit a 2D grid.
    3 KB (599 words) - 15:29, 24 October 2017
  • ...A4|RMA4]] model. The TABS (RMA4) interface exists in the [[SMS:Mesh Module|Mesh module]]. SMS can visualize and create RMA4 projects, easily modify project ...tion consists of a geometric definition of the model domain (the mesh) and a set of numerical parameters. The parameters define the boundary conditions
    3 KB (385 words) - 15:50, 13 September 2017
  • {{3D Mesh links}} ...cates''' command from the ''Mesh'' menu. If a node is found that is within a user specified tolerance of another node, the node is either selected or de
    7 KB (1,185 words) - 19:14, 14 August 2017
  • 3D grid data can be converted to other types of data in GMS such as 2D grids, 2D scatter points, 3D meshes, or 3D scatter points. 3D grid data is converted ...d to create a new scatter point set using the nodes or cells of a 3D grid. A copy is made of each of the datasets associated with the grid and the datas
    5 KB (933 words) - 14:47, 19 October 2017
  • ...w. This workflow includes all of the specific workflows needed in creating a general FEMWATER flow model project using the conceptual model approach. Ne To build a [[GMS:FEMWATER|FEMWATER]] flow model in GMS, use the following steps:
    4 KB (438 words) - 16:08, 17 February 2017
  • ...e available for AdH starting in SMS 13.3. A simulation should contain a 2D mesh and an AdH boundary conditions coverage, and optional AdH coverages. Right- To create a new simulation:
    3 KB (532 words) - 19:55, 11 September 2023
  • ...Version|SMS Community Version]] is an unlicensed version that allows using a basic interface to: * Generate a mesh (limited to one mesh).
    1 KB (198 words) - 17:51, 25 June 2018
  • ...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
  • ...ensional 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 paid edition] of SMS.
    5 KB (814 words) - 21:24, 2 May 2023
  • The [[SMS:ADCIRC|ADCIRC]] graphical interface includes tools to assist with creating, editing and debugging an [[SMS:ADCIRC|ADCIRC]] model. ...vailable for ADCIRC starting in SMS 13.0. A simulation should contain a 2D mesh and an ADCIRC boundary conditions coverage, and optional ADCIRC coverages.
    5 KB (772 words) - 18:42, 5 April 2021
  • [[File:Patch River.png|thumb|300 px|Patch used to define a river channel]] [[File:Patch at Culvert.png|thumb|300 px|Patch used where a culvert will be modeled]]
    3 KB (519 words) - 19:17, 8 April 2020
  • ...ibute}} Redistribute Vertices... : Redistributes the amount of vertices on a selected arc using an input value for spacing. ; Reverse Arc Direction : Arcs have a direction that follows the path that they were made. Direction is important
    4 KB (673 words) - 19:25, 5 January 2024
  • ...]] project. The conceptual model defines parameters such as model extents, mesh generation options, and boundary conditions. The following steps are generally followed when creating an ADCIRC conceptual model:
    3 KB (494 words) - 14:25, 17 June 2019
  • ...ludes all of the specific workflows needed in creating an [[SMS:SRH-2D|SRH-2D]] project. Newer and infrequent SMS users should start here. More experienc To build an SRH-2D model in SMS, use the following steps:
    3 KB (401 words) - 17:40, 12 November 2019
  • [[File:Mesh Elements Options.png|thumb|400 px|Example of the Mesh ''Elements Options'' dialog]] ...rom the [[SMS:2D_Mesh_Elements_Menu|''Elements'' menu]] available when the Mesh Module is selected. This dialog is divided into four sections.
    5 KB (722 words) - 14:46, 24 September 2019
  • [[SMS:SMS|SMS]] is organized into modules. Each module is associated with a particular object type. Only one module is active at any given time. When [[File:2D Mesh Icon.svg|16 px]] '''Mesh'''. Contains tools for editing unstructured networks. Includes tools for wo
    3 KB (381 words) - 16:26, 1 September 2017
  • ...store, interrogate, and manipulate 2D unstructured grids (referred to as a mesh inside of SMS). The Mesh module is included with all [http://www.aquaveo.com/software/sms-pricing pa
    7 KB (1,055 words) - 19:53, 14 February 2023
  • |name= HYDRO AS-2D |model_type= 2D current, pollutant, and sediment transport simulation.
    3 KB (500 words) - 15:00, 9 August 2019
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