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Modeling of Gray Gas Radiation With Different Shapes of Heat Source in Three-Dimensional Enclosures

机译:三维外壳中不同热源形状的灰气体辐射建模

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This article deals with performance evaluation of the discrete ordinates method in terms of its capacity to provide accurate results in solving radiation mode problems with different complexities. The problem formulation is done keeping in view the heat transfer process in an evaporator used in a coal-based thermal power station. The hot gas mass in the evaporator is assumed to be a heat source with two different shapes, spherical and conical. The evaporator walls that are covered with a water cooling jacket are modeled with a convective boundary condition. The gas is assumed to be gray and absorbing-emitting. The solution of the radiative transport equation is carried out using the discrete ordinates method. Parametric studies are performed for a wide range of aspect ratio, extinction coefficient, and convective heat transfer coefficient. The code is validated by comparing the result of discrete ordinates method with the exact and the discrete transfer method for nonradiative as well as radiative equilibrium conditions.
机译:本文就其在解决具有不同复杂性的辐射模式问题方面提供准确结果的能力方面,对离散纵坐标方法的性能进行了评估。考虑到在煤基热电站中使用的蒸发器中的传热过程,完成了问题表述。假设蒸发器中的热气是具有两种不同形状的热源,分别是球形和圆锥形。用对流边界条件对覆盖有水冷套的蒸发器壁进行建模。假定该气体为灰色并吸收发射。辐射传输方程的求解是使用离散坐标法进行的。对宽高比,消光系数和对流传热系数进行了参数研究。通过比较离散坐标法的结果与非辐射以及辐射平衡条件下的精确和离散传递方法的结果来验证代码。

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