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Model comparison, thermal nonequilibrium characteristic and boundary conditions discussion of two-phase flow with phase change in porous media

机译:模型比较,热非预测特征和边界条件与多孔介质相变的两相流

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This article comprehensively compares three models of two-phase flow with phase change in porous media: the widely used separated phase model (SPM) and two-phase mixture model (TPMM), and the new developed semi-mixed model (SMM), with the identification of the reasonability of different boundary conditions (BCs) at cold and hot sides. Differences and common features from the physical, as well as from the numerical point of view, are shown in detail. Independent numerical algorithms are, respectively, developed and implemented to solve the three models. The study indicates that the numerical results obtained by SPM and SMM are always similar, but TPMM shows significant difference in temperature and phase distributions of fluid due to the inveracious increase of the effective diffusion coefficient in numerical simulation. The effect of different BCs at cold side emerges and is delivered to the hot side only when the porous matrix is thin, while one type of BC at hot side is infeasible at small porosity. At last, in view of the huge latent heat of phase change, the thermal nonequilibrium characteristic between solid and fluid for two-phase flow is quantitatively evaluated.
机译:本文全面比较了多孔介质中相变的三种两相流量:广泛使用的分离相模型(SPM)和两相混合模型(TPMM),以及新的开发半混合模型(SMM),有鉴定冷热侧不同边界条件(BCS)的合理性。详细展示了物理的差异和常见特征,以及从数值观点显示。分别开发和实施的独立数值算法以解决三种型号。该研究表明,通过SPM和SMM获得的数值结果始终相似,但由于数值模拟中有效扩散系数的耐用增加,TPMM显示出流体的温度和相位分布显着差异。不同BCS在冷侧的效果出现并仅当多孔基质薄时才能递送到热侧,而热侧的一种类型的BC在小孔隙率时是不可行的。最后,鉴于相变的巨大潜热,定量评价固体和流体之间的热非预测性。

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