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$heatsolvebytime or $heatsolvebyt is the command to solve the time dependent thermal dissipation equations. The command line format is <br> | $heatsolvebytime or $heatsolvebyt is the command to solve the time dependent thermal dissipation equations. The command line format is <br> | ||
$heatsolvebytime<br> | $heatsolvebytime<br> | ||
<math>\delta t</math>, | <math>\delta t</math> N_of_dt reference_temperature N_step_to_save | ||
<math>\delta t</math> is the dt used for transient calculation. <br> | |||
N_of_dt are the steps to solve these equations<br> | |||
reference_temperature is the reference initial temperature. Usually it would be room temperature. <br> | |||
"N_step_to_save" is to output the result every "N_step_to_save"<br> | |||
Examples:<br> | |||
$heatsolvebytime | |||
1.000e-7 1000 300.00 100 | |||
related commands:<br> | |||
[[$heatsource]], [[$timeevolve]], [[$usechannelaveT]], [[$heatiterative]], [[$thermaldiff]]<br> | |||
[[$maxTlimit]], [[$useevversusT]], [[$heatbndistance]], [[$heatsolvebytime]] | |||
於 2017年8月22日 (二) 15:42 的最新修訂
$heatsolvebytime or $heatsolvebyt is the command to solve the time dependent thermal dissipation equations. The command line format is
$heatsolvebytime
N_of_dt reference_temperature N_step_to_save
is the dt used for transient calculation.
N_of_dt are the steps to solve these equations
reference_temperature is the reference initial temperature. Usually it would be room temperature.
"N_step_to_save" is to output the result every "N_step_to_save"
Examples:
$heatsolvebytime 1.000e-7 1000 300.00 100
related commands:
$heatsource, $timeevolve, $usechannelaveT, $heatiterative, $thermaldiff
$maxTlimit, $useevversusT, $heatbndistance, $heatsolvebytime