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Analytical Solution of Heat Conduction for Hollow Cylinders with Time-Dependent Boundary Condition and Time-Dependent Heat Transfer Coefficient

机译:具有时变边界条件和时变传热系数的空心圆柱体的导热解析解

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An analytical solution for the heat transfer in hollow cylinders with time-dependent boundary condition and time-dependent heat transfer coefficient at different surfaces is developed for the first time. The methodology is an extension of the shifting function method. By dividing the Biot function into a constant plus a function and introducing two specially chosen shifting functions, the system is transformed into a partial differential equation with homogenous boundary conditions only. The transformed system is thus solved by series expansion theorem. Limiting cases of the solution are studied and numerical results are compared with those in the literature. The convergence rate of the present solution is fast and the analytical solution is simple and accurate. Also, the influence of physical parameters on the temperature distribution of a hollow cylinder along the radial direction is investigated.
机译:首次开发了时空边界条件和时空传热系数在不同表面的空心圆柱体传热的解析解。该方法是移位函数方法的扩展。通过将比奥函数除以一个常数加一个函数并引入两个特别选择的移位函数,该系统被转换为仅具有均匀边界条件的偏微分方程。因此,变换后的系统通过级数展开定理来求解。研究了极限解的情况,并将数值结果与文献中的结果进行了比较。本解决方案的收敛速度快,分析解决方案简单准确。此外,研究了物理参数对空心圆柱体沿径向温度分布的影响。

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