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Simulation of Fluid-Structure and Fluid-Mediated Structure-Structure Interactions in Stokes Regime Using Immersed Boundary Method

机译:浸入边界法模拟斯托克斯地区的流固耦合和结构-结构相互作用

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摘要

The Stokes flow induced by the motion of an elastic massless filament immersed in a two-dimensional fluid is studied. Initially, the filament is deviated from its equilibrium state and the fluid is at rest. The filament will induce fluid motion while returning to its equilibrium state. Two different test cases are examined. In both cases, the motion of a fixed-end massless filament induces the fluid motion inside a square domain. However, in the second test case, a deformable circular string is placed in the square domain and its interaction with the Stokes flow induced by the filament motion is studied. The interaction between the fluid and deformable body/bodies can become very complicated from the computational point of view. An immersed boundary method is used in the present study. In order to substantiate the accuracy of the numerical method employed, the simulated results associated with the Stokes flow induced by the motion of an extending star string are compared well with those obtained by the immersed interface method. The results show the ability and accuracy of the IBM method in solving the complicated fluid-structure and fluid-mediated structure-structure interaction problems happening in a wide variety of engineering and biological systems.
机译:研究了由浸没在二维流体中的无质量弹性细丝的运动引起的斯托克斯流。最初,细丝偏离其平衡状态,流体处于静止状态。细丝将在返回其平衡状态时引起流体运动。检查了两个不同的测试用例。在这两种情况下,固定端无质量丝的运动都会在正方形区域内引起流体运动。但是,在第二个测试案例中,将一个可变形的圆形线放在正方形区域中,并研究了它与由细丝运动引起的斯托克斯流的相互作用。从计算的角度来看,流体与可变形体/体之间的相互作用可能变得非常复杂。本研究采用沉浸边界方法。为了证实所采用数值方法的准确性,将与由延伸星弦运动引起的斯托克斯流相关的模拟结果与通过沉浸界面方法获得的模拟结果进行了比较。结果表明,IBM方法解决了各种工程和生物系统中复杂的流体-结构和流体介导的结构-结构相互作用问题的能力和准确性。

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