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Benchmark numerical solutions for radiative heat transfer in two-dimensional medium with graded index distribution

机译:梯度分布二维介质中辐射换热的基准数值解

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In graded index media, the ray goes along a curved path determined by Fermat principle. Generally, the curved ray trajectory in graded index media is a complex implicit function, and the curved ray tracing is very difficult and complex. Only for some special refractive index distributions, the curved ray trajectory can be expressed as a simple explicit function. Two important examples are the layered and the radial graded index distributions. In this paper, the radiative heat transfer problems in two-dimensional square semitransparent with layered and radial graded index distributions are analyzed. After deduction of the ray trajectory, the radiative heat transfer problems are solved by using the Monte Carlo curved ray-tracing method. Some numerical solutions of dimensionless net radiative heat flux and medium temperature are tabulated as the benchmark solutions for the future development of approximation techniques for multi-dimensional radiative heat transfer in graded index media. (C) 2006 Elsevier Ltd. All rights reserved.
机译:在渐变折射率介质中,射线沿费马原理确定的弯曲路径传播。通常,渐变索引介质中的弯曲射线轨迹是一个复杂的隐函数,并且弯曲射线跟踪非常困难且复杂。仅对于某些特殊的折射率分布,可以将弯曲射线轨迹表示为简单的显式函数。两个重要的例子是分层和径向渐变折射率分布。本文分析了具有分层和径向渐变折射率分布的二维正方形半透明辐射辐射问题。在推导了射线轨迹之后,通过使用蒙特卡洛曲线射线跟踪方法解决了辐射传热问题。表中列出了无量纲净辐射热通量和介质温度的一些数值解,作为未来梯度折射率介质中多维辐射热传递近似技术发展的基准解。 (C)2006 Elsevier Ltd.保留所有权利。

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