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Development of a Coupling Model for Fluid-Structure Interaction using the Mesh-free Finite Element Method and the Lattice Boltzmann Method

机译:用无网格有限元法和格子Boltzmann方法开发流固耦合耦合模型

摘要

In the presented thesis work, the meshfree method with distance fields was coupled with the lattice Boltzmann method to obtain solutions of fluid-structure interaction problems. The thesis work involved development and implementation of numerical algorithms, data structure, and software. Numerical and computational properties of the coupling algorithm combining the meshfree method with distance fields and the lattice Boltzmann method were investigated. Convergence and accuracy of the methodology was validated by analytical solutions.The research was focused on fluid-structure interaction solutions in complex, mesh-resistant domains as both the lattice Boltzmann method and the meshfree method with distance fields are particularly adept in these situations. Furthermore, the fluid solution provided by the lattice Boltzmann method is massively scalable, allowing extensive use of cutting edge parallel computing resources to accelerate this phase of the solution process. The meshfree method with distance fields allows for exact satisfaction of boundary conditions making it possible to exactly capture the effects of the fluid field on the solid structure.
机译:在本文工作中,将具有距离场的无网格方法与格子玻尔兹曼方法相结合,以获得流固耦合问题的解决方案。论文工作涉及数值算法,数据结构和软件的开发和实现。研究了将无网格法与距离场相结合以及格子玻尔兹曼法的耦合算法的数值和计算特性。分析方法验证了该方法的收敛性和准确性。研究重点是在复杂的,抗网格作用域中的流体-结构相互作用解决方案,因为格博尔兹曼方法和具有距离场的无网格方法在这些情况下尤其擅长。此外,晶格玻尔兹曼方法提供的流体解决方案具有很大的可扩展性,可以广泛使用尖端的并行计算资源来加速解决方案的这一阶段。具有距离场的无网格方法可以精确满足边界条件,从而可以精确捕获流场对实体结构的影响。

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    Mudrich Jaime;

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  • 年度 2013
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