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首页> 外文期刊>SIAM Journal on Scientific Computing >The equivalence of standard and mixed finite element methods in applications to elasto-acoustic interaction
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The equivalence of standard and mixed finite element methods in applications to elasto-acoustic interaction

机译:标准和混合有限元方法在弹-声相互作用中的等效性

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摘要

Two commonly used problem formulations for the description of acoustic wave propagation are investigated; one is based on fluid displacement, and the other one is based on the velocity potential as the primary variable. Their equivalence under general Neumann boundary conditions is shown on both the continuous and the discrete level. To obtain the equivalence in the discrete setting, a nonstandard mixed finite element formulation is introduced. Thus, the transfer of an already available analysis for coupled elasto-acoustic problems in the displacement formulation to the potential formulation can be achieved. For the applications, the potential formulation is of special interest because it allows the use of standard Lagrangian elements in both the stucture and the fluid subdomain. Moreover, the approach does not require any conformity of the subdomain meshes at the interface, which considerably simplifies the physics-adapted mesh generation. Several engineering examples demonstrate the applicability and efficiency of the resulting numerical scheme.
机译:研究了两种用于描述声波传播的常用问题公式:一个基于流体排量,另一个基于速​​度势作为主要变量。它们在一般Neumann边界条件下的等价性在连续和离散水平上均显示。为了获得离散设置的等效性,引入了非标准的混合有限元公式。因此,可以实现将位移配方中耦合的弹性声学问题的已有分析转移到潜在配方中。对于应用而言,潜在的配方特别受关注,因为它允许在结构域和流体子域中使用标准的拉格朗日元素。而且,该方法不需要在接口处的子域网格的任何一致性,这大大简化了物理适应网格的生成。几个工程实例证明了所得数值方案的适用性和效率。

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