temperatureCoupledBase, turbulentHeatFluxTemperatureFvPatchScalarField: updated docs
Provided by Bruno Santos Resolves bug-report http://www.openfoam.org/mantisbt/view.php?id=1875
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@ -25,17 +25,41 @@ Class
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Foam::temperatureCoupledBase
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Description
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Common functions for use in temperature coupled boundaries. For now only
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Common functions for use in temperature coupled boundaries.
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kappa() : heat conduction at patch. Gets supplied how to lookup/calculate
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kappa:
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For now only provides the following methods:
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- 'lookup' : lookup volScalarField (or volSymmTensorField) with name
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- 'fluidThermo' : use fluidThermo and default compressible::turbulenceModel
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to calculate kappa
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- 'solidThermo' : use solidThermo kappa()
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- 'directionalSolidThermo': uses look up for volSymmTensorField for
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transformed kappa vector. Named 'Anialpha' in solid solver
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- kappa() : heat conduction at patch. Gets supplied how to lookup/calculate
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'kappa':
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- 'lookup' : lookup volScalarField (or volSymmTensorField) with name
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defined in 'kappaName'
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- 'fluidThermo' : use fluidThermo and default
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compressible::turbulenceModel to calculate kappa
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- 'solidThermo' : use solidThermo kappa()
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- 'directionalSolidThermo': uses look up for volSymmTensorField for
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transformed kappa vector. Field name definable in 'alphaAniName',
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named 'Anialpha' in solid solver by default
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\heading Keywords provided by this class
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\table
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Property | Description | Required | Default value
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kappa | heat conduction type at patch, as listed above | yes |
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kappaName | Name of thermal conductivity field | yes |
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alphaAniName | name of the non-isotropic alpha | no | 'Anialpha'
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\endtable
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Usage examples:
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\verbatim
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nonIsotropicWall
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{
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...
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kappa directionalSolidThermo;
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kappaName none;
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alphaAniName Anialpha;
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...
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}
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\endverbatim
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SourceFiles
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temperatureCoupledBase.C
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@ -35,12 +35,15 @@ Description
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Property | Description | Required | Default value
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heatSource | 'power' [W] or 'flux' [W/m^2] | yes |
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q | heat power or flux field | yes |
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kappa | inherited from Foam::temperatureCoupledBase | yes |
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kappa | inherited from temperatureCoupledBase | yes |
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kappaName | inherited from temperatureCoupledBase | yes |
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Qr | name of the radiative flux field | yes |
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value | initial temperature value | no | calculated
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gradient | initial gradient value | no | 0.0
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value | initial temperature value | no | calculated
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gradient | initial gradient value | no | 0.0
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\endtable
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Note: If needed, both 'value' and 'gradient' must be defined to be used.
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Example usage:
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\verbatim
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hotWall
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@ -49,9 +52,8 @@ Description
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heatSource flux;
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q uniform 10;
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kappa fluidThermo;
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kappaName none;
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Qr none;
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gradient uniform 0;
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value uniform 300;
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}
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\endverbatim
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