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Thermal radiation heat transfer in participating media by finite volume discretization using collimated beam incidence

机译:通过准直光束入射通过有限体积离散化进行参与介质的热辐射热传递

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The main objective of this paper is to study the heat transfer rate of thermal radiation in participating media. For that, a generated collimated beam has been passed through a two dimensional slab model of flint glass with a refractive index 2. Both Polar and azimuthal angle have been varied to generate such a beam. The Temperature of the slab and Snells law has been validated by Radiation Transfer Equation (RTE) in OpenFOAM (Open Field Operation and Manipulation), a CFD software which is the major computational tool used in Industry and research applications where the source code is modified in which radiation heat transfer equation is added to the case and different radiation heat transfer models are utilized. This work concentrates on the numerical strategies involving both transparent and participating media. Since Radiation Transfer Equation (RTE) is difficult to solve, the purpose of this paper is to use existing solver buoyantSimlpeFoam to solve radiation model in the participating media by compiling the source code to obtain the heat transfer rate inside the slab by varying the Intensity of radiation. The Finite Volume Method (FVM) is applied to solve the Radiation Transfer Equation (RTE) governing the above said physical phenomena.
机译:本文的主要目的是研究参与媒体的热辐射传热速率。为此,产生的准直光束已经通过了具有折射率2的燧石玻璃的二维板坯模型。已经改变极性和方位角的角度以产生这种光束。通过OpenFoam(开放现场操作和操作)的辐射转移方程(RTE)验证了平板和斜切法的温度,CFD软件是工业和研究应用中使用的主要计算工具,其中源代码被修改将哪种辐射传热方程添加到案例中,并且利用不同的辐射传热模型。这项工作专注于涉及透明和参与媒体的数值策略。由于省略辐射转移方程(RTE)难以解决,因此本文的目的是通过编译源代码来使用现有的求解器浮标,以解决参与媒体中的辐射模型通过改变强度来获得板内的传热速率辐射。应用有限体积法(FVM)来解决控制上述物理现象的辐射传递方程(RTE)。

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