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PHASE-FIELD SIMULATION OF SOLIDIFICATION WITH DENSITY CHANGE

机译:密度变化凝固的相场模拟

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Phase-field models of solidification with convection often assume the existence of a single (mixture) velocity at any location inside the diffuse interface, and the phase-field, φ, is advected by this mixture velocity. In this paper, the advection of the phase-field is examined for a one-dimensional normal flow to a solidification front induced by a density difference between the solid and liquid. It is found that the results from a phase-field model that assumes a single velocity inside the diffuse interface are generally not in agreement with the sharp interface condition for the kinetic undercooling of the front in the presence of unequal densities, regardless of the interface width. By introducing a two-phase approach, where the solid and liquid are assumed to coexist inside the diffuse interface with different velocities, good agreement with the sharp interface condition is obtained irrespective of the density ratio between the two phases.
机译:对流凝固的相场模型通常假设在扩散界面内部的任何位置都存在单一(混合)速度,并且该混合速度会平移相场φ。在本文中,检查了由固和液之间的密度差引起的到凝固前沿的一维法向流动的相场对流。发现相场模型的结果假定扩散界面内的单个速度通常与在密度不相等的情况下前部的动力学过冷的锋利界面条件不一致,无论界面宽度如何。通过引入两相方法,假定固相和液相以不同的速度共存于扩散界面内,则无论两相之间的密度比如何,都可以与尖锐的界面条件很好地吻合。

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