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MULTI-PHASE FLOW MODELS AND METHODS FOR LAVA LAMPS AND LIFE SCIENCES

机译:熔岩灯和生命科学的多相流模型和方法

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摘要

Multi-phase flows, that involve immiscible fluids, arise in many natural and industrial processes and their accurate and efficient simulation will play an increasingly vital role in the life sciences. Surface tension, characteristic of these flows, creates a discontinuous pressure drop across each surface separating two liquid phases that is proportional to the surface's mean curvature. The primary computational challenge is to solve for the pressure whose laplacian has a singular term consisting of a distribution supported on the separating surfaces. In this paper we discuss models and methods for multiphase flows that include simplifying assumptions, boundary integral representations, and wavelet-based discretization and multilevel preconditioning. We also discuss the validation of these models and methods through the simulation of lava lamps, whose simple two-phase flows and convenient availability provide an ideal laboratory testbed.
机译:涉及不可混溶流体的多相流出现在许多自然和工业过程中,其精确有效的模拟将在生命科学中发挥越来越重要的作用。这些流动所特有的表面张力会在每个表面上产生不连续的压降,使两个液相分开,这两个压强与表面的平均曲率成正比。计算上的主要挑战是要解决拉普拉斯具有奇异项的压力,该奇异项由支撑在分离面上的分布组成。在本文中,我们讨论了用于多相流的模型和方法,包括简化假设,边界积分表示以及基于小波的离散化和多级预处理。我们还讨论了通过熔岩灯的仿真来验证这些模型和方法的有效性,熔岩灯的简单两相流和便捷的可用性提供了理想的实验室测试平台。

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