Difference between revisions of "Thermal Simulation Software"

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[[File:Thermal Simulation Software.jpg|thumb|right|Thermal Simulation Software]]
* READ THIS FIRST
'''Thermal Simulation Software''', provides solutions for linear and nonlinear, steady-state and transient heat transfer processes including conduction, radiation, and free convection. It provides simulation capabilities for engineering applications requiring transient and steady-state thermal analysis. It includes modeling of conduction, convection, radiation and phase change and it provides a range of thermal boundary conditions and solver controls.
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==Features==
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* Thermal boundary conditions including temperatures, heat loads, fluxes, initial conditions and thermostats
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* Conduction including isotropic and orthotropic properties, radial heat flow, phase change and time-, temperature-, and direction-dependent properties
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* Radiation including the calculation of view factors with shadowing effects for diffuse surfaces, variable surface properties, axisymmetric radiation modeling, and multiple radiation enclosures
* Convection by specifying boundary conditions using tabular data or formulae
* Additional solver features including axisymmetric modeling, table dependent parameters, non-geometric modeling, and solution monitor

Latest revision as of 22:22, 5 February 2013

Thermal Simulation Software

Thermal Simulation Software, provides solutions for linear and nonlinear, steady-state and transient heat transfer processes including conduction, radiation, and free convection. It provides simulation capabilities for engineering applications requiring transient and steady-state thermal analysis. It includes modeling of conduction, convection, radiation and phase change and it provides a range of thermal boundary conditions and solver controls.


Features

  • Thermal boundary conditions including temperatures, heat loads, fluxes, initial conditions and thermostats
  • Conduction including isotropic and orthotropic properties, radial heat flow, phase change and time-, temperature-, and direction-dependent properties
  • Radiation including the calculation of view factors with shadowing effects for diffuse surfaces, variable surface properties, axisymmetric radiation modeling, and multiple radiation enclosures
  • Convection by specifying boundary conditions using tabular data or formulae
  • Additional solver features including axisymmetric modeling, table dependent parameters, non-geometric modeling, and solution monitor