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Discrete ordinates interpolation method incorporated into a flow and energy solver for solution of combined heat transfer problems

机译:流能求解器中结合了离散纵坐标插值方法,用于求解组合传热问题

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摘要

Combined conduction-radiation and natural convection-radiation in two-dimensional enclosures containing gray absorbing/emitting medium are numerically investigated. The discrete ordinates interpolation method (DOIM) is used to solve the radiative transfer equation (RTE). It is incorporated into a commercial software (FLUENT~?) by using user-defined function (UDF) to be used in a finite volume-based code for fluid flow computation. Two issues are critically examined: accuracy and versatility. Cases of combined conduction-radiation are considered first and the results are compared with other benchmark solutions to validate the accuracy. Additional problems are also tested to verify the capability of handling unstructured grid system and irregular geometry. Combined natural convection-radiation problem is then examined varying the optical thickness. The radiation effect is investigated through the profiles of velocity, temperature distributions and streamlines. The results are compared with discrete ordinates (DO) solutions, Rosseland solutions and P1 solutions which are offered by FLUENT~? package. The accuracy and other numerical characteristics of DOIM are scrutinized. The DOIM shows very successful results from the viewpoint of accuracy and grid compatibility. It is proved to be a reliable future numerical tool for combined heat transfer problems in engineering applications.
机译:数值研究了含有灰色吸收/发射介质的二维外壳中的传导辐射和自然对流辐射组合。离散纵坐标插值法(DOIM)用于求解辐射传递方程(RTE)。它通过使用用户定义的函数 (UDF) 合并到商业软件 (FLUENT~?) 中,用于基于有限体积的代码中用于流体流动计算。批判性地研究了两个问题:准确性和多功能性。首先考虑联合传导辐射的情况,并将结果与其他基准解决方案进行比较,以验证准确性。还测试了其他问题,以验证处理非结构化网格系统和不规则几何形状的能力。然后研究了自然对流-辐射组合问题,并改变了光学厚度。通过速度、温度分布和流线的剖面来研究辐射效应。将结果与FLUENT提供的离散纵坐标(DO)解、Rosseland解和P1解进行了比较~?包。对DOIM的准确性和其他数值特征进行了仔细检查。从准确性和网格兼容性的角度来看,DOIM 显示了非常成功的结果。它被证明是解决工程应用中组合传热问题的可靠未来数值工具。

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