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首页> 外文期刊>International Journal of Heat and Mass Transfer >The modified discrete ordinates method for radiative heat transfer in two-dimensional cylindrical medium
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The modified discrete ordinates method for radiative heat transfer in two-dimensional cylindrical medium

机译:二维圆柱形介质辐射传热的改进的离散坐标方法

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Ray effect is one of the major shortcomings of discrete ordinate method (DOM). It is a consequence of angular discretization, resulting in unphysical oscillations in the solutions, and often occurs in the problems where the temperature of walls is discontinuous. In this paper, the modified DOM (MDOM) is developed for the radiative heat transfer in an axisymmetric cylindrical enclosure, which contains emitting, absorbing and scattering medium, to overcome this shortcoming. The radiative intensity is decomposed into two components, the wall-related and the medium-related ones. The former is determined analytically, whereas the latter is still solved by DOM. In MDOM, the most important step is the evaluation of wall-related incident radiation and radiative heat flux. Two methods to evaluate them are comparatively given: one is the semi-analytical method based on coordinate transformation which is more accurate, and the other is the numerical method with segments integration to treat the discontinuity which is mathematically simpler. Results show that both are effective to mitigate the ray effect, and cost computational time comparable to DOM. Exact semi-analytic solutions for the pure absorbing cases are also given in tabular form for convenience. Besides, alternative boundary conditions for the MDOM proposed by Sakami and Charette (JQSRT, 64(2000) 275-298) are investigated. This type of boundary conditions is proved to have simplified solution procedure, but results in slight unphysical oscillations in the MDOM solutions. (C) 2019 Elsevier Ltd. All rights reserved.
机译:射线效应是离散纵坐标方法(DOM)的主要缺点之一。这是角度离散化的结果,导致解决方案中的不良振荡,并且经常发生在壁的温度不连续的问题中。在本文中,改进的DOM(MDom)是为轴对称圆柱形外壳中的辐射传热而开发的,其包含发射,吸收和散射介质,以克服这种缺点。辐射强度分解成两个部件,壁壁和中等相关的组件。前者是分析确定的,而后者仍然由DOM解决。在MDom中,最重要的一步是评估壁相关的入射辐射和辐射热通量。评估它们的两种方法相对较为给出:一个是基于坐标变换的半分析方法,该方法更准确,另一个是具有段集成的数值方法,以处理数学上的不连续性。结果表明,两者都有效地减轻光线效应,以及与DOM相当的成本计算时间。为方便起见,还以表格形式给出纯吸收例的精确半分析溶液。此外,研究了Sakami和Charete(JQSRT,64(2000)275-298)提出的MDOM的替代边界条件。证明这种类型的边界条件具有简化的解决方案程序,但导致MDOM解决方案中的轻微不经密的振荡。 (c)2019 Elsevier Ltd.保留所有权利。

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