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首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >Numerical analysis of natural convective and radiative heat transfer in an arbitrarily shaped enclosure
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Numerical analysis of natural convective and radiative heat transfer in an arbitrarily shaped enclosure

机译:任意形状壳体中自然对流和辐射换热的数值分析

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摘要

The flow and thermal characteristics of the interactions of natural convection and radiation in an enclosure containing circular ducts are analyzed numerically. For calculation of flow fields, the SIMPLE algorithm originally developed in Cartesian coordinates is extended and modified to apply to the curvilinear coordinates system. The radiation part of the problem for an arbitrarily shaped domain is solved by using the finite volume method (FVM). Cartesian velocity components are used as the dependent variables in momentum equations, and a nonstaggered grid system is employed. The flow and thermal fields for an irregular geometry are investigated for the variation of such parameters as scattering albedo, optical thickness, and Planck number. The test problem is compared with both the exact solutions and the discrete ordinates method solution. The results show that the FVM is an effective method to predict radiative heat transfer processes in irregular geometries and that Be change of optical thickness has more effect than that of scattering albedo on flow and thermal fields. [References: 20]
机译:数值分析了包含圆形管道的围护结构中自然对流和辐射相互作用的流动和热特性。为了计算流场,对最初在笛卡尔坐标系中开发的SIMPLE算法进行了扩展和修改,以应用于曲线坐标系。通过使用有限体积方法(FVM)解决了任意形状的区域问题的辐射部分。笛卡尔速度分量用作动量方程式的因变量,并采用了非交错网格系统。对于不规则几何形状的流场和热场,研究了散射反照率,光学厚度和普朗克数等参数的变化。将测试问题与精确解和离散纵坐标法解进行比较。结果表明,FVM是预测不规则几何形状中辐射传热过程的有效方法,光学厚度的Be变化对流场和热场的影响大于散射反照率的影响。 [参考:20]

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