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液封液桥内热毛细对流的数值模拟

Numerical analysis of Marangoni convection in liquid bridge with liquid encapsulation

  • 摘要: 建立了液封液桥(不相溶混的双层同轴液柱)内热毛细对流的物理数学模型,采用涡量-流函数法、利用有限差分格式对微重力条件下液封液桥内热毛细对流进行了数值模拟,得到了双层液柱主流区的温度场和流场,证实了液封技术能削弱液桥主流区的热毛细对流,从而提高浮区晶体生长质量,找出了液封厚度以及内、外层流体物性参数比对液桥内热毛细对流的影响规律.

     

    Abstract: The physical and mathematical models of the Marangoni convection in an encapsulated liquid column (or two immiscible coaxial liquid columns) are established. A numerical simulation of the Marangoni convection in the encapsulated liquid column is performed by employing vorticity-streamfunction method and alternative direction implicit scheme based on finite difference. The distributions of temperature and flow field in two immiscible coaxial liquid columns are obtained. It is verified that the liquid encapsulation can reduce the Marangoni convection in the encapsulated liquid bridge. Effects of a series of non-dimensional parameters on Marangoni convection are analyzed.Keywords: liquid bridge with liquid encapsulation, Marangoni convection, numerical analysis, microgravity

     

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