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首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >ENHANCEMENT OF HEAT TRANSFER WITH POROUS/SOLID INSERT FOR LAMINAR FLOW OF A PARTICIPATING GAS IN A 3-D SQUARE DUCT
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ENHANCEMENT OF HEAT TRANSFER WITH POROUS/SOLID INSERT FOR LAMINAR FLOW OF A PARTICIPATING GAS IN A 3-D SQUARE DUCT

机译:用多孔/固体插入物增强3D方形管道中参与气体层流的传热

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摘要

In recent years, porous or solid insert has been used in a duct for enhancing heat transfer in high temperature thermal equipment, where both convective and radiative heat transfer play a major role. In the present work, the study of heat transfer enhancement is carried out for flow through a square duct with a porous or a solid insert. Most of the analyses are carried out for a porous insert. The hydrodynamically developing flow field is solved using the Navier–Stokes equation and the Darcy–Brinkman model is considered for solving the flow in the porous region. The radiative heat transfer is included in the analysis by coupling the radiative transfer equation to the energy equation. The fluid considered is CO2 with temperature dependent thermophysical properties. Both the fluid and the porous medium are considered as gray participating medium. The increase in heat transfer is analyzed by comparing the bulk mean temperature, Nusselt number, and radiative heat flux for different porous size and orientation, Reyonlds number, and Darcy number.
机译:近年来,多孔或固体插入物已被用于导管中以增强高温热设备中的热传递,其中对流和辐射热传递均起主要作用。在当前的工作中,对流经带有多孔或固体插入物的方管的流动进行传热增强的研究。大多数分析是针对多孔插入物进行的。使用Navier–Stokes方程求解流体动力学发展的流场,并考虑使用Darcy–Brinkman模型求解多孔区域中的流体。通过将辐射传递方程与能量方程耦合,将辐射热传递包括在分析中。所考虑的流体是具有随温度变化的热物理特性的CO2。流体和多孔介质都被认为是灰色参与介质。通过比较体均温度,努塞尔数和不同孔尺寸和方向,里昂兹数和达西数的辐射热通量,分析了传热的增加。

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