不同形状半有界固体中热振荡传播问题的一般解析解

M. Purdin, Renata Magomedova
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摘要

本文给出了热振荡在半有界物体中传播问题的一般解析解。所得结果可用于计算和研究产品、蓄热器、地面热交换器和小天体(从彗星和小行星到完全固体行星)热处理过程中的传热。研究的目的是获得热波在体内传播的热特性。给出了半有界固体中稳定振荡问题的一个表述。给出了对应于直角坐标系的两个解析解,这两个解析解都可以看作是任意坐标系的通解。所提出的解使温度振荡的振幅和相位与纵坐标的依赖关系的表达式以实数形式表示成为可能。进行了渐近分析,得到了解的特征特征和性质。为了理解热传递的本质,给出了一些机制的计算依赖关系。
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General Analytical Solution to the Problem of Propagation of Thermal Oscillations in Semi-bounded Solids of Various Shapes
This paper presents a general analytical solution to the problem of propagation of thermal oscillations in semi-bounded bodies. The obtained results are useful for calculating and studying heat transfer during heat treatment of products, heat accumulators, ground heat exchangers, and small celestial bodies, ranging from comets and asteroids to completely solid planets. The purpose of the study is to obtain the thermal characteristics of thermal waves propagating in the body. A statement of the problem of steady oscillations in semi-bounded solids is presented. Two analytical solutions corresponding to a rectangular coordinate system are shown, and both of them could be considered as a general solution for any coordinate system. The proposed solution made it possible to express in real form the formulas of dependences on the longitudinal coordinate of the amplitude and phase of temperature oscillations. An asymptotic analysis is carried out, which shows the characteristic features and properties of the obtained solution. The calculated dependencies for some regimes are presented in order to understand the nature of heat transfer.
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