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Perturbation Solutions for Thermal Process of Honeycomb Regenerator

机译:蜂窝蓄热体热过程的摄动解决方案

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摘要

A parameter perturbation for the unsteady-state heat-transfer characteristics of honeycomb regenerator is presented. It is limited to the cases where the storage matrix has a small wall thickness so that no temperature variation in the matrix perpendicular to the flow direction is considered. Starting from a two-phase transient thermal model for the gas and storage matrix, an approximate solution for regenerator heat transfer process is derived using the multiple-scale method for the limiting case where the longitudinal heat conduction of solid matrix is far less than the convective heat transfer between the gas and the solid. The regenerator temperature profiles are expressed as Taylor series of the coefficient of solid heat conduction item in the model. The analytical validity is shown by comparing the perturbation solution with the experiment and the numerical solution. The results show that it is possible for the perturbation to improve the effectiveness and economics of thermal research on regenerators.
机译:提出了蜂窝蓄热体非稳态传热特性的参数摄动。限于以下情况:存储矩阵的壁厚较小,因此不考虑矩阵中垂直于流动方向的温度变化。从气体和存储基体的两相瞬态热模型开始,针对固体基体纵向传热远小于对流的极限情况,使用多尺度方法得出了蓄热器传热过程的近似解。气体与固体之间的热传递。蓄热室温度分布用模型中固体导热系数的泰勒级数表示。通过将摄动解与实验和数值解进行比较,可以显示分析的有效性。结果表明,扰动可能会提高蓄热器热学研究的有效性和经济性。

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