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Generalized thermal resistance and its application to thermal radiation based on entransy theory

机译:基于换能理论的广义热阻及其在热辐射中的应用

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摘要

Entransy is a novel concept developed in recent years to measure the transport ability of heat in heat transfer processes. In order to analyze and optimize thermal radiation process more conveniently and intuitively, we develop the entransy-theory-based method to the field of thermal radiation problems to define the generalized thermal resistance for multi-dimensional steady state thermal radiation systems, with a consistent dimension of those for heat conduction and convection systems proposed in previous studies. Based on it, the minimum generalized thermal resistance principle for thermal radiation is developed and its equivalence with the entransy dissipation extremum principle can be concluded by defining the concept of heat flux weighted average temperature difference for thermal radiation systems. We point out that these two principles emphasize particularly on the optimization of the mean performance for heat transfer processes. A steady state thermal radiation process in an enclosure with three opaque surfaces is taken as an example to illustrate the applicability and reliability of generalized thermal radiation resistance when it is used to optimize thermal radiation problems. Finally, a comparison between the principles of minimum generalized thermal resistance and minimum entropy generation is discussed to show that the latter might not be appropriate to optimize some thermal radiation problems.
机译:Entransy是近年来发展起来的一种新概念,用于测量传热过程中热量的传输能力。为了更方便,直观地分析和优化热辐射过程,我们针对热辐射问题领域开发了基于变换理论的方法,以定义尺寸一致的多维稳态热辐射系统的广义热阻。在先前的研究中提出的那些用于热传导和对流系统的方法。在此基础上,提出了热辐射的最小广义热阻原理,通过定义热辐射系统的热通量加权平均温差的概念,可以得出与热耗散极值原理等效的原理。我们指出,这两个原则特别强调了传热过程的平均性能优化。以具有三个不透明表面的外壳中的稳态热辐射过程为例,以说明当广义热辐射电阻用于优化热辐射问题时的适用性和可靠性。最后,讨论了最小广义热阻和最小熵产生原理之间的比较,以表明后者可能不适用于优化某些热辐射问题。

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