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Analysis of flow and heat transfer in a regenerator mesh using a non-Darcy thermally non-equilibrium model

机译:使用非达西热非平衡模型分析蓄热室中的流动和传热

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摘要

An analysis has been made for the pulsating flow of gas and the accompanying heat transfer within a regenerator made from mesh screens. A flow model is developed taking the mesh as a non-Darcy, thermally non-equilibrium porous medium. A harmonic analysis technique is used for solving the fully developed but unsteady gas flow in the regenerator. Based on the flow solution thus obtained, slowly evolving axisymmetric unsteady thermal fields are solved numerically over a wide range of frequencies by making use of the finite volume method. Presentation is made of the friction factor and regenerator effectiveness. Effects of Reynolds number and frequency on the temperature profile and the transient behavior of the system are discussed. The importance of a thermal time constant of the system and length-to-radius Ratio of the regenerator demonstrated.
机译:已经对由网筛制成的蓄热器内的脉动气流和伴随的传热进行了分析。建立了以网格为非达西热不平衡多孔介质的流动模型。谐波分析技术用于解决再生器中充分发展但不稳定的气流。基于这样获得的流动解,通过使用有限体积方法,可以在很宽的频率范围内数值求解缓慢发展的轴对称非稳态热场。介绍了摩擦系数和再生器的有效性。讨论了雷诺数和频率对温度曲线和系统瞬态行为的影响。证明了系统的热时间常数和蓄热室的长径比的重要性。

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