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Transient two-phase flow and heat transfer with localized heating in porous media

机译:多孔介质中局部加热的瞬态两相流和传热

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摘要

The transient behavior of two-phase flow and heat transfer in a channel filled with porous media was numerically studied in this paper. Based on the two-phase mixture model, numerical solutions were obtained using the Finite-Volume Method (FVM). Two methods to treat the discontinuous diffusion coefficient in the energy equation, i.e. the harmonic mean method and the "modified" Kirchhoff method were compared. It was found that the "modified" Kirchhoff method was better in dealing with the rapid change in the diffusion coefficient. Three different cases, with discrete heat flux applied at (1) the upper wall, (2) lower wall and (3) both the upper and lower walls were studied. The velocity and temperature fields for these cases were discussed. The results show that the liquid and vapor flow fields, as well as the temperature and liquid saturation fields have distinctly different features with the change in heating location. An analysis of the vapor volume fraction indicates that the largest amount of vapor with the highest vapor generation rate was for the case in which the heat flux is applied from the lower wall.
机译:数值研究了多孔介质填充通道内两相流动和传热的瞬态行为。基于两相混合模型,使用有限体积法(FVM)获得了数值解。比较了两种处理能量方程中不连续扩散系数的方法,即谐波均值方法和“改进的” Kirchhoff方法。发现“改进的”基尔霍夫法在处理扩散系数的快速变化方面更好。研究了三种不同的情况,分别在(1)上壁,(2)下壁和(3)上壁和下壁施加了离散的热通量。讨论了这些情况下的速度场和温度场。结果表明,随着加热位置的变化,液体和蒸汽的流场以及温度和液体的饱和场具有明显不同的特征。蒸汽体积分数的分析表明,具有最高蒸汽产生速率的最大蒸汽量是从下壁施加热通量的情况。

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