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An automatic approach for the acoustic analysis of three-dimensional bounded and unbounded domains by scaled boundary finite element method

机译:缩放边界有限元方法对三维有界和无界畴的自动分析的自动方法

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摘要

An automatic approach for modeling acoustic responses of 3D bounded and unbounded domains is proposed based on the scaled boundary finite element method (SBFEM). The bounded acoustic near field is modeled by SBFEM. Due to the fact that SBFEM only requires boundary discretizations, the meshing process in this approach is automatically accomplished by introducing an octree-based meshing technique and boundary trimming. Therefore, models with very complex geometries can be analyzed automatically, i.e. no human input/intervention is needed/required. For modeling the unbounded acoustic far field, a spherical high-order doubly-asymptotic open boundary is developed for modeling scalar wave propagation in 3D unbounded domain. This doubly-asymptotic open boundary is able to represent the unbounded domain accurately and efficiently as it includes recursive continued-fraction expansions in both high and low frequency limits. The continued-fraction solutions are expressed in the time-domain by introducing auxiliary variables. The bounded and unbounded domains are coupled via the nodal fluxes on the near/far field interface. The final coupled ordinary differential equations can be solve using standard time-stepping methods directly for obtaining transient acoustic responses. Various numerical examples are presented in this paper for demonstrating the accuracy, efficiency and capability of this approach for analyzing acoustic problems with complex geometries.
机译:基于缩放边界有限元方法(SBFEM)提出了一种用于建模3D界和无界域的声反应的自动方法。有界声学附近的字段由SBFEM建模。由于SBFEM仅需要边界离散化,通过引入基于OCTREE的网格化技术和边界修剪来自动完成这种方法的网格化过程。因此,可以自动分析具有非常复杂的几何形状的模型,即不需要/所需的人输入/干预。对于Unbound的声学远场进行建模,开发了一种球形高阶渐近开放边界,用于在3D无界域中建模标量波传播。这种双重渐近开放边界能够准确且有效地代表无限的域,因为它包括高低频率限制的递归持续分数扩展。通过引入辅助变量在时域中在时域中表达持续的分数溶液。有界和未绑定的域通过近/远场接口上的节点通量耦合。最终耦合的常微分方程可以使用标准的时间级步骤方法直接解决以获得瞬态声反应。本文提出了各种数值示例,用于说明这种方法的准确性,效率和能力,用于分析复杂几何形状的声学问题。

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