首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >THE TECHNIQUE OF THE IMMERSED BOUNDARY METHOD: APPLICATIONS TO THE NUMERICAL SOLUTIONS OF IMCOMPRESSIBLE FLOWS AND WAVE SCATTERING
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THE TECHNIQUE OF THE IMMERSED BOUNDARY METHOD: APPLICATIONS TO THE NUMERICAL SOLUTIONS OF IMCOMPRESSIBLE FLOWS AND WAVE SCATTERING

机译:沉浸式边界方法的技术:在不可压缩流动和波散射数值解中的应用

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摘要

A fictitious domain method, in which the Di richlet boundary conditions are treated using boundary supported Lagrangian multipliers, is considered. The technique of the immersed boundary method is incorporated into the framework of the fictitious domain method. Contrary to conventional methods, it does not make use of the finite element discretization. It has a simpler structure and is easily programmable. The numerical simulation of two-dimensional incompressible inviscid uniform flows over a circular cylinder validates the methodology and the numerical procedure. The numerical simulation of propagation phenomena for time harmonic electromagnetic waves by methods combining controllability and fictitious domain techniques is also presented. Using distributed Lagrangian multipliers, the propagation of the wave can be simulated on an obstacle free computational region with regular finite element meshes essentially independent of the geometry of the obstacle and by a controllability formulation which leads to algorithms with good convergence properties for time-periodic solutions. The numerical results presented are in good agreement with those in the literature using obstacle fitted meshes.
机译:考虑了一种虚拟域方法,其中使用边界支持的拉格朗日乘子来处理Dirichlet边界条件。浸入边界方法的技术被结合到虚拟域方法的框架中。与常规方法相反,它不使用有限元离散化。它具有更简单的结构,并且易于编程。圆柱上二维不可压缩的无粘性均匀流的数值模拟验证了方法和数值程序。还提出了利用可控性和虚拟域技术相结合的方法对时间谐波电磁波传播现象进行数值模拟。使用分布式拉格朗日乘子,可以在无障碍计算区域上模拟波的传播,该区域具有规则的有限元网格,这些网格基本上与障碍的几何形状无关,并且通过可控性公式得出了具有良好收敛性的算法,可用于时间周期解。提出的数值结果与文献中使用障碍物拟合网格的结果吻合良好。

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