首页> 外文会议>American Society of Mechanical Engineers(ASME) Summer Heat Transfer Conference(HT2005); 20050717-22; San Francisco,CA(UA) >USE OF CONTACT RESISTANCE ALGORITHM TO IMPLEMENT JUMP BOUNDARY CONDITIONS FOR THE RADIATION DIFFUSION APPROXIMATION
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USE OF CONTACT RESISTANCE ALGORITHM TO IMPLEMENT JUMP BOUNDARY CONDITIONS FOR THE RADIATION DIFFUSION APPROXIMATION

机译:使用接触电阻算法实现辐射扩散近似的跳跃边界条件

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摘要

Thermal conduction codes can be used as solvers for the diffusion approximation for radiation heat transfer. Energy fluxes and temperature distributions that result from thermal radiation in an optically-thick participating medium can be estimated. Allowing dependence on temperatures from either side of the interface, a contact resistance algorithm can be used to implement "jump" (or slip) boundary conditions appropriate for the diffusion approximation in solving the radiation transfer equation. For steady, pure radiation (no conduction) systems analytical expressions exist to specify the temperature in the radiating medium at the wall as a function of the wall temperature, wall emissivity, and extinction coefficient. Radiation and conduction solutions for gray, absorbing/emitting and conducting media bound by diffuse surfaces for the simple case of the steady planar layer are considered. Reference solutions are developed by detailed zone-methods solving the coupled differential forms of both the radiation and conduction heat transfer equations. From the reference solutions, empirical relations are developed for surface resistance as functions of the local wall and adjacent media temperatures, the wall emissivity, the absorptivity, and the thermal conductivity of the medium. Performance of the approximate solution is compared to the reference solutions.
机译:导热代码可以用作辐射热传递扩散近似的求解器。可以估算由光学厚度的参与介质中的热辐射产生的能量通量和温度分布。允许依赖于界面两侧的温度,可以使用接触电阻算法来实现“跳”(或滑移)边界条件,该条件适用于求解辐射传输方程时的扩散近似。对于稳定的纯辐射(无传导)系统,存在解析表达式,可以根据壁温度,壁发射率和消光系数来指定壁处辐射介质中的温度。对于稳定平面层的简单情况,考虑了由扩散表面约束的灰色,吸收/发射和传导介质的辐射和传导解决方案。参考解决方案通过详细的区域方法开发,解决了辐射和传导传热方程的耦合差分形式。从参考解决方案中,建立了表面电阻与局部壁和相邻介质温度,壁发射率,吸收率和介质导热率之间关系的经验关系。将近似解决方案的性能与参考解决方案进行比较。

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