
AutoFEM Thermal Analysis provides a calculation of the temperature behaviour of products under the action of sources of heat and radiation. Thermal analysis can be used independently to calculate the temperature and thermal field of the design, as well as in conjunction with static analysis to assess the resulting of thermal deformation.<br />
In AutoFEM Thermal Analysis the heat conduction problem has two statement:<br />
 steadystate thermal conductivity  the calculation of the steady (stationary) temperature fields of structures under the applied thermal boundary conditions;<br />
 timedependent thermal conductivity  the calculation of temperature fields of construction is dependent on the time, that is, temperature loads
AutoFEM Thermal Analysis provides a calculation of the temperature behaviour of products under the action of sources of heat and radiation. Thermal analysis can be used independently to calculate the temperature and thermal field of the design, as well as in conjunction with static analysis to assess the resulting of thermal deformation.
In AutoFEM Thermal Analysis the heat conduction problem has two statement:
 steadystate thermal conductivity  the calculation of the steady (stationary) temperature fields of structures under the applied thermal boundary conditions;
 timedependent thermal conductivity  the calculation of temperature fields of construction is dependent on the time, that is, temperature loads have been made
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