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Numerical investigation of heat transfer enhancement in a pipe partially filled with a porous material under local thermal non-equilibrium condition

机译:局部热非平衡条件下部分填充多孔材料管道传热强化的数值研究

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摘要

This paper examines numerically the heat transfer enhancement in a pipe partially filled with a porous medium under local thermal non-equilibrium (LTNE) condition. The flow inside the porous material is modelled using the Darcy–Brinkman–Forchheimer model. The effect of different parameters such as, inertia (F), Darcy number (Da), conductivity ratio, porosity and particle diameter on the validity of local thermal equilibrium (LTE) are studied. The optimum porous thickness for heat transfer enhancement under varying F and with reasonable pressure drop is determined. The pipe wall is under constant wall temperature boundary condition. Two models are considered at the interface between the porous medium and the fluid. The differences between these models in predicting the temperature of the fluid and solid phases as well as the Nusselt (Nu) number for different pertinent parameters are discussed. In general, the two interface models result in similar trends of Nu number variation versus porous thickness ratio. However, considerably different values of Nu number are obtained from the two interface models. The effects of inertia term on the Nu number and pressure drop are further studied. For a given model and for Da < 10−3, the Nu number is found independent of F. However, for Da > 10−3 as F increases the computed Nu number increases
机译:本文通过数值方法研究了局部热不平衡(LTNE)条件下部分填充有多孔介质的管道中的传热增强情况。多孔材料内部的流动使用Darcy–Brinkman–Forchheimer模型进行建模。研究了惯性(F),达西数(Da),电导率,孔隙率和粒径等不同参数对局部热平衡(LTE)有效性的影响。确定了在变化的F和合理的压降下增强传热的最佳多孔厚度。管壁处于恒定的壁温边界条件下。在多孔介质和流体之间的界面处考虑了两种模型。讨论了这些模型在预测液相和固相温度以及不同相关参数的Nusselt(Nu)数方面的差异。通常,两个界面模型导致Nu数变化与多孔厚度比的相似趋势。但是,从两个接口模型获得的Nu值有很大不同。进一步研究了惯性项对Nu数和压降的影响。对于给定的模型,对于Da <10-3,发现Nu数独立于F.但是,对于Da> 10-3,随着F的增加,计算得出的Nu数增加

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