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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >An Analytical Solution for Transient Heat Conduction in a Composite Slab with Time-Dependent Heat Transfer Coefficient
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An Analytical Solution for Transient Heat Conduction in a Composite Slab with Time-Dependent Heat Transfer Coefficient

机译:时变传热系数的复合板瞬态热传导的解析解

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An analytical solution is derived for one-dimensional transient heat conduction in a composite slab consisting of layers, whose heat transfer coefficient on an external boundary is an arbitrary function of time. The composite slab, which has thermal contact resistance at interfaces, as well as an arbitrary initial temperature distribution and internal heat generation, convectively exchanges heat at the external boundaries with two different time-varying surroundings. To obtain the analytical solution, the shifting function method is first used, which yields new partial differential equations under conventional types of external boundary conditions. The solution for the derived differential equations is then obtained by means of an orthogonal expansion technique. Numerical calculations are performed for two composite slabs, whose heat transfer coefficient on the heated surface is either an exponential or a trigonometric function of time. The numerical results demonstrate the effects of temporal variations in the heat transfer coefficient on the transient temperature field of composite slabs.
机译:推导了由层组成的复合板中一维瞬态热传导的解析解,其在外边界的传热系数是时间的任意函数。复合板在界面处具有热接触电阻,并且具有任意的初始温度分布和内部热量产生,该复合板在外部边界处与两个不同的随时间变化的环境对流地进行热交换。为了获得解析解,首先使用了位移函数法,它在常规类型的外部边界条件下产生了新的偏微分方程。然后借助正交展开技术获得导出的微分方程的解。对两个复合板进行了数值计算,其在受热面上的传热系数是时间的指数函数或三角函数。数值结果证明了传热系数的时间变化对复合板瞬态温度场的影响。

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