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A Source Term Approach for Generation of One-way Acoustic Waves in the Euler and Navier-Stokes equations

机译:在Euler和Navier-Stokes方程中生成单向声波的源项法

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摘要

We derive a volumetric source term for the Euler and Navier-Stokes equations that mimics the generation of unidirectional acoustic waves from an arbitrary smooth surface in three-dimensional space. The model is constructed as a linear combination of monopole and dipole sources in the mass, momentum, and energy equations. The singular source distribution on the surface is regularized on a computational grid by convolution with a smeared Dirac delta function. The source is implemented in the Euler equations using a Cartesian-grid finite-volume WENO scheme, and validated by comparing with analytical solution for unidirectional planar and spherical acoustic waves. Using the scheme, we emulate a spherical piezoelectric transducer and a multi-array transducer to simulate focused ultrasound fields in water. The simulated ultrasound fields show favorable agreement with previous experiments.
机译:我们推导了Euler和Navier-Stokes方程的体积源项,该项模拟了三维空间中任意光滑表面上单向声波的产生。该模型被构造为质量,动量和能量方程中单极子和偶极子源的线性组合。通过使用弥散狄拉克三角函数进行卷积,可以将表面上的奇异源分布在计算网格上进行正则化。该源使用笛卡尔网格有限体积WENO方案在Euler方程中实现,并通过与单向平面和球形声波的解析解进行比较进行了验证。使用该方案,我们模拟了球形压电换能器和多阵列换能器,以模拟水中的聚焦超声场。模拟的超声场显示出与先前实验的良好一致性。

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