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Boundary regularized integral equation formulation of the Helmholtz equation in acoustics

机译:声学中亥姆霍兹方程的边界正则积分方程公式

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摘要

A boundary integral formulation for the solution of the Helmholtz equation is developed in which all traditional singular behaviour in the boundary integrals is removed analytically. The numerical precision of this approach is illustrated with calculation of the pressure field owing to radiating bodies in acoustic wave problems. This method facilitates the use of higher order surface elements to represent boundaries, resulting in a significant reduction in the problem size with improved precision. Problems with extreme geometric aspect ratios can also be handled without diminished precision. When combined with the CHIEF method, uniqueness of the solution of the exterior acoustic problem is assured without the need to solve hypersingular integrals.
机译:开发了Helmholtz方程解的边界积分公式,其中解析去除了边界积分中所有传统奇异行为。通过计算声波问题中辐射体引起的压力场,说明了该方法的数值精度。此方法有助于使用更高阶的表面元素来表示边界,从而显着减小了问题的大小,并提高了精度。极高的几何长宽比问题也可以在不降低精度的情况下进行处理。当与CHIEF方法结合使用时,无需解决超奇异积分就可确保解决外部声学问题的唯一性。

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