Difference between revisions of "FEM ElementFluid1D"

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(Module to Workbench renaming.)
 
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<languages/>
 
<languages/>
 
<translate>
 
<translate>
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<!--T:10-->
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{{Docnav
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|[[FEM_ElementGeometry2D|Shell plate thickness]]
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|[[FEM_ConstraintElectrostaticPotential|Constraint electrostatic potential]]
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|[[FEM_Workbench|FEM]]
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|IconL=FEM_ElementGeometry2D.svg
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|IconR=FEM_ConstraintElectrostaticPotential.svg
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|IconC=Workbench_FEM.svg
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}}
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<!--T:1-->
{{GuiCommand|Name=FEM ElementFluid1D|MenuLocation=Model → Fluid section for 1D flow||Workbenches=[[Fem Workbench|FEM]]|Shortcut=|SeeAlso=[[FEM_tutorial|FEM tutorial]]}}
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{{GuiCommand
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|Name=FEM ElementFluid1D
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|MenuLocation=Model → Element Geometry → Fluid section for 1D flow
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|Workbenches=[[FEM_Workbench|FEM]]
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|SeeAlso=[[FEM_tutorial|FEM tutorial]]
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}}
  
 
==Description== <!--T:2-->
 
==Description== <!--T:2-->
  
 
<!--T:6-->
 
<!--T:6-->
Creates a FEM fluid section element for aerodynamic and hydraulic networks
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Creates a FEM fluid section element for pneumatic and hydraulic networks
  
==How to use== <!--T:3-->
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==Usage== <!--T:3-->
  
 
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<!--T:7-->
#Click on [[Image:FEM ElementFluid1D.png ‎|32px]] or choose {{KEY|Model}} →  {{KEY|[[Image:FEM ElementFluid1D.png ‎|32px]] Fluid section for 1D flow}} from the top menu.
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# There are several ways to invoke the command:
#Select Fluid type: Liquid, Gas or Open Channel
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#* Press the {{Button|[[Image:FEM_ElementFluid1D.svg|16px]] [[FEM_ElementFluid1D|FEM ElementFluid1D]]}} button.
#Select Section type: Pipe Manning, Pipe Inlet etc.
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#* Select the {{MenuCommand|Model → Element Geometry → [[Image:FEM_ElementFluid1D.svg|16px]] Fluid section for 1D flow}} option from the menu.
#Enter Section type parameters.
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# Select Fluid type: Liquid, Gas or Open Channel
#Select and add edge.
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# Select Section type: Pipe Manning, Pipe Inlet etc.
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# Enter Section type parameters.
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# Select and add edge.
  
 
==Limitations== <!--T:4-->
 
==Limitations== <!--T:4-->
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#An example of the set up of a hydraulic network can be found here: http://web.mit.edu/calculix_v2.7/CalculiX/ccx_2.7/doc/ccx/node13.html  
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# An example of the set up of a hydraulic network can be found here: http://web.mit.edu/calculix_v2.7/CalculiX/ccx_2.7/doc/ccx/node13.html  
 
# The *FLUID SECTION card is used to model fluid elements for 1D flow. Information on the card can be found here: http://web.mit.edu/calculix_v2.7/CalculiX/ccx_2.7/doc/ccx/node205.html
 
# The *FLUID SECTION card is used to model fluid elements for 1D flow. Information on the card can be found here: http://web.mit.edu/calculix_v2.7/CalculiX/ccx_2.7/doc/ccx/node205.html
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<!--T:11-->
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{{Docnav
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|[[FEM_ElementGeometry2D|Shell plate thickness]]
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|[[FEM_ConstraintElectrostaticPotential|Constraint electrostatic potential]]
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|[[FEM_Workbench|FEM]]
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|IconL=FEM_ElementGeometry2D.svg
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|IconR=FEM_ConstraintElectrostaticPotential.svg
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|IconC=Workbench_FEM.svg
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}}
  
 
</translate>
 
</translate>
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{{FEM Tools navi{{#translation:}}}}
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{{Userdocnavi{{#translation:}}}}
 
{{clear}}
 
{{clear}}

Latest revision as of 18:33, 21 August 2021

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FEM ElementFluid1D.svg FEM ElementFluid1D

Menu location
Model → Element Geometry → Fluid section for 1D flow
Workbenches
FEM
Default shortcut
None
Introduced in version
-
See also
FEM tutorial

Description

Creates a FEM fluid section element for pneumatic and hydraulic networks

Usage

  1. There are several ways to invoke the command:
    • Press the FEM ElementFluid1D.svg FEM ElementFluid1D button.
    • Select the Model → Element Geometry → FEM ElementFluid1D.svg Fluid section for 1D flow option from the menu.
  2. Select Fluid type: Liquid, Gas or Open Channel
  3. Select Section type: Pipe Manning, Pipe Inlet etc.
  4. Enter Section type parameters.
  5. Select and add edge.

Limitations

  1. The card only works with a 3 noded network element type. Information can be found here: http://web.mit.edu/calculix_v2.7/CalculiX/ccx_2.7/doc/ccx/node54.html

Notes

  1. An example of the set up of a hydraulic network can be found here: http://web.mit.edu/calculix_v2.7/CalculiX/ccx_2.7/doc/ccx/node13.html
  2. The *FLUID SECTION card is used to model fluid elements for 1D flow. Information on the card can be found here: http://web.mit.edu/calculix_v2.7/CalculiX/ccx_2.7/doc/ccx/node205.html