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Enhancement of heat transfer: Combined convection and radiation in the entrance region of circular ducts with porous inserts

机译:增强传热:圆形管道入口区域的对流和辐射相结合,带有多孔插件

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Using porous ceramic inserts in high temperature equipment has been proven to be an effective means to enhance combined convective-radiative heat transfer. The porous ceramic insert was referred to as a convection-to-radiation converter (CRC) by previous investigators. We consider a novel application of CRC cores in a partial by pass flow system for heat transfer enhancement. Both hydrodynamically and thermally developing laminar flow is considered in the entrance region of a circular pipe with a porous insert located at the center. The momentum and Darcy-Brink-man equations are applied to the flow field in the annular gas layer and central porous layer respectively. The energy equation is coupled with the radiative transfer equation by the radiation source term. The radiative transfer is simulated by the newly developed integral equations [X.L. Chen, W. Sutton, Radiative transfer in finite cylindrical media using transformed integral equations, J. Quant. Spectrosc. Radiat. Transfer 77 (3) (2003) 233-271; W. Sutton, X.L. Chen, A general integration method for radiative transfer in 3-D non-homogeneous cylindrical media with aniso-tropic scattering, J. Quant. Spectrosc. Radiat. Transfer 84 (2004) 65-103] to avoid singularity problem and give high accuracy. The working fluid and porous medium are both considered as participating media. Finally, this highly nonlinear system of equations is solved by a mixed iteration method. The results are compared between the cases with and without the porous insert. The porous insert enhances both convective and radiative transfer by about 35% and 105% respectively at the most. The effects of important parameters on this enhancement are discussed in detail.
机译:事实证明,在高温设备中使用多孔陶瓷嵌件是增强对流-辐射联合传热的有效手段。先前的研究人员将多孔陶瓷插入物称为对流辐射转换器(CRC)。我们考虑将CRC磁芯在分流系统中用于传热增强的新型应用。在圆形管的入口区域考虑了流体动力学和热发展的层流,其中在中心处有多孔插入物。动量方程和达西-布林克曼方程分别应用于环形气体层和中心多孔层中的流场。能量方程通过辐射源项与辐射传递方程耦合。通过新开发的积分方程[X.L. Chen,W. Sutton,使用变换积分方程的有限圆柱介质中的辐射传递,J。Quant。光谱。辐射。转让77(3)(2003)233-271;萨顿(W. Sutton),X.L。 Chen,一种利用各向异性散射在3D非均匀圆柱介质中进行辐射传递的一般积分方法,J。Quant。光谱。辐射。 Transfer 84(2004)65-103]以避免奇异性问题并提供高精度。工作流体和多孔介质均被视为参与介质。最后,通过混合迭代方法解决了这个高度非线性的方程组。在有和没有多孔插入物的情况下比较结果。多孔插入物最多分别将对流和辐射传递分别提高了约35%和105%。详细讨论了重要参数对此增强效果的影响。

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