"$thermaldiff" 修訂間的差異

出自 DDCC TCAD TOOL Manual
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(未顯示由 2 位使用者於中間所作的 2 次修訂)
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$thermaldiff is ...
 
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$thermaldiff is to activate the thermal equation solver. The program will solve the thermal dissipation equations. The user needs to assign thermal conductivity coefficient and heat capacitance. Heat capacitance will only be used in time dependent thermal solver. However, even time dependent solver of thermal equations is not called. The heat capacitance still needs to be assigned to avoid reading errors.
   
   
 
'''<big><big>Format</big></big>'''
 
'''<big><big>Format</big></big>'''
 
$thermaldiff
 
$thermaldiff
thermal_conductivity heat capacitance
+
thermal_conductivity heat_capacitance
thermal_conductivity heat capacitance
+
thermal_conductivity heat_capacitance
 
...
 
...
thermal_conductivity heat capacitance
+
thermal_conductivity heat_capacitance
  +
...
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... total N lines for the N total regions
   
   
行 13: 行 13:
   
 
* Thermal conductivity. (<math>Joule s^{-1}cm^{-1}K^{-1}</math>)
 
* Thermal conductivity. (<math>Joule s^{-1}cm^{-1}K^{-1}</math>)
* Heat capacitance. (<math>Joule cm^{-3}K{-1}</math>)
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* Heat capacitance. (<math>Joule cm^{-3}K^{-1}</math>)
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<br><br><br>
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related commands:<br>
  +
  +
[[$heatsource]], [[$timeevolve]], [[$usechannelaveT]], [[$heatiterative]], [[$thermaldiff]]<br>
  +
[[$maxTlimit]], [[$useevversusT]], [[$heatbndistance]], [[$heatsolvebytime]]

於 2017年9月3日 (日) 20:35 的最新修訂

$thermaldiff is to activate the thermal equation solver. The program will solve the thermal dissipation equations. The user needs to assign thermal conductivity coefficient and heat capacitance. Heat capacitance will only be used in time dependent thermal solver. However, even time dependent solver of thermal equations is not called. The heat capacitance still needs to be assigned to avoid reading errors.


Format

$thermaldiff
thermal_conductivity heat_capacitance
thermal_conductivity heat_capacitance
...
thermal_conductivity heat_capacitance
...
...     total N lines for the N total regions


Parameter Explanation

  • Thermal conductivity. (Joule s^{-1}cm^{-1}K^{-1})
  • Heat capacitance. (Joule cm^{-3}K^{-1})





related commands:

$heatsource, $timeevolve, $usechannelaveT, $heatiterative, $thermaldiff
$maxTlimit, $useevversusT, $heatbndistance, $heatsolvebytime