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An initial and boundary value problem modeling of fish-like swimming

机译:类鱼游泳的初值和边值问题建模

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In this paper we consider an initial and boundary value problem that models the self-propelled motion of solids in a bidimensional viscous incompressible fluid. The self-propelling mechanism, consisting of appropriate deformations of the solids, is a simplified model of the propulsion mechanism of fish-like swimmers. The governing equations consist of the Navier-Stokes equations for the fluid, coupled to Newton's laws for the solids. Since we consider the case in which the fluid-solid system fills a bounded domain we have to tackle a free boundary value problem. The main theoretical result in the paper asserts the global existence and uniqueness (up to possible contacts) of strong solutions of this problem. The second novel result of this work is the provision of a numerical method for the fluid-solid system. This method provides a simulation of the simultaneous displacement of several swimmers and is tested on several examples.
机译:在本文中,我们考虑了一个初始值和边值问题,该问题为固体在二维粘性不可压缩流体中的自推进运动建模。由固体适当变形组成的自推进机制是鱼状游泳者推进机制的简化模型。控制方程由流体的Navier-Stokes方程以及固体的牛顿定律组成。因为我们考虑了流固系统填充有界域的情况,所以我们必须解决自由边界值问题。本文的主要理论结果断言了该问题的强解的整体存在性和唯一性(取决于可能的联系)。这项工作的第二个新颖的结果是为流固系统提供了一种数值方法。此方法提供了多个泳者同时位移的模拟,并在多个示例中进行了测试。

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