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Least-squares collocation meshless approach for coupled radiative and conductive heat transfer

机译:最小二乘搭配无网格方法耦合辐射和传导热传递

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A least-squares collocation meshless method is employed for solving the coupled radiative and conductive heat transfer in absorbing, emitting, and scattering media. The least-squares collocation meshless method for radiative transfer is based on the discrete ordinates equation. A moving least-squares approximation is applied to construct the trial functions. In addition to the collocation points which are used to construct the trial functions, a number of auxiliary points are also adopted to form the total residuals of the problem. The least-squares technique is used to obtain the solution of the problem by minimizing the summation of residuals of all collocation and auxiliary points. Three numerical examples are studied to illustrate the performance of this new solution method. The numerical results are compared with other benchmark approximate solutions. By comparison, the results show that the least-squares collocation meshless method is efficient, accurate, and stable, and can be used for solving coupled radiative and conductive heat transfer in absorbing, emitting, and scattering media.
机译:采用最小二乘搭配无网格方法来解决吸收,发射和散射介质中的辐射与传导耦合传热问题。最小二乘搭配辐射传递的无网格方法基于离散坐标方程。应用移动最小二乘近似来构造试验函数。除了用于构造试用功能的搭配点之外,还采用了许多辅助点来形成问题的总残差。最小二乘技术用于通过最小化所有搭配点和辅助点的残差之和来获得问题的解决方案。研究了三个数值示例,以说明此新求解方法的性能。将数值结果与其他基准近似解决方案进行比较。通过比较,结果表明,最小二乘搭配无网格方法是高效,准确和稳定的,可用于解决吸收,发射和散射介质中的辐射与传导耦合传热。

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