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Interfacial conditions between a pure fluid and a porous medium: implications for binary alloy solidification

机译:纯流体和多孔介质之间的界面条件:对二元合金凝固的影响

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摘要

The single-domain, Darcy-Brinkman model is applied to some analytically tractable flows through adjacent porous and pure-fluid domains and is compared systematically with the multiple-domain, Stokes-Darcy model. In particular, we focus on the interaction between flow and solidification within the mushy layer during binary alloy solidification in a corner flow and on the effects of the chosen mathematical description on the resulting macrosegregation patterns. Large-scale results provided by the multiple-domain formulation depend strongly on the microscopic interfacial conditions. No satisfactory agreement between the single- and multiple-domain approaches is obtained when using previously suggested conditions written directly at the interface between the liquid and the porous medium. Rather, we define a viscous transition zone inside the porous domain, where Stokes equation still applies, and we impose continuity of pressure and velocities across it. This new condition provides good agreement between the two formulations of solidification problems when there is a continuous variation of porosity across the interface between a partially solidified region (mushy zone) and the melt.
机译:将单域Darcy-Brinkman模型应用于通过相邻多孔域和纯流体域的某些可分析处理的流,并将其与多域Stokes-Darcy模型进行系统比较。特别地,我们关注于角流中二元合金凝固过程中糊状层中流动与凝固之间的相互作用,以及所选数学描述对所得宏观偏析模式的影响。多域配方提供的大规模结果在很大程度上取决于微观界面条件。当使用先前建议的直接写在液体和多孔介质之间的界面上的条件时,在单域方法和多域方法之间无法获得令人满意的协议。相反,我们在多孔区域内定义了一个粘性过渡区域,斯托克斯方程仍然适用于该区域,并且我们在其上施加了压力和速度的连续性。当部分凝固区域(糊状区)和熔体之间的界面上的孔隙率连续变化时,这种新条件在两种凝固问题配方之间提供了良好的一致性。

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