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首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Three-dimensional effects in directional solidification in Hele-Shaw cells: Nonlinear evolution and pattern selection
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Three-dimensional effects in directional solidification in Hele-Shaw cells: Nonlinear evolution and pattern selection

机译:Hele-Shaw细胞定向凝固中的三维效应:非线性演化和模式选择

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摘要

Directional solidification of a dilute binary alloy in a Hele-Shaw cell is modeled by a long-wave nonlinear evolution equation with zero flux and contact-angle conditions at the walls. The basic steady-state solution and its linear stability criteria are found analytically, and the nonlinear system is solved numerically. Concave down (toward the solid) interfaces under physically realistic conditions are found to be more unstable than the planar front. Weakly nonlinear analysis indicates that subcritical bifurcation is promoted, the domain of modulational instability is expanded and transition to three-dimensional patterns is delayed due to the contact-angle condition. In the strongly nonlinear regime fully three-dimensional steady-state solutions are found whose characteristic amplitude is larger than that for the two-dimensional problem. In the subcritical regime secondary bifurcation to stable solutions is promoted. [References: 12]
机译:通过在壁上具有零通量和接触角条件的长波非线性演化方程对Hele-Shaw池中稀二元合金的定向凝固进行建模。通过分析找到基本的稳态解及其线性稳定性准则,并用数值方法求解非线性系统。发现在物理现实条件下向下凹的(朝向实心的)界面比平坦的正面更不稳定。弱非线性分析表明,由于接触角条件的存在,促进了亚临界分叉,扩展了调制不稳定性的域,并延迟了向三维图形的过渡。在强非线性状态下,发现了全三维稳态解,其特征幅度大于二维问题的幅度。在亚临界状态下,促进了分叉至稳定溶液。 [参考:12]

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