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使用精确半空间解的相控波束追踪中的干涉效应。

Interference effects in phased beam tracing using exact half-space solutions.

作者信息

Boucher Matthew A, Pluymers Bert, Desmet Wim

机构信息

Division PMA, Department of Mechanical Engineering, KU Leuven, BE-3001 Heverlee, Belgium.

出版信息

J Acoust Soc Am. 2016 Dec;140(6):4204. doi: 10.1121/1.4971283.

Abstract

Geometrical acoustics provides a correct solution to the wave equation for rectangular rooms with rigid boundaries and is an accurate approximation at high frequencies with nearly hard walls. When interference effects are important, phased geometrical acoustics is employed in order to account for phase shifts due to propagation and reflection. Error increases, however, with more absorption, complex impedance values, grazing incidence, smaller volumes and lower frequencies. Replacing the plane wave reflection coefficient with a spherical one reduces the error but results in slower convergence. Frequency-dependent stopping criteria are then applied to avoid calculating higher order reflections for frequencies that have already converged. Exact half-space solutions are used to derive two additional spherical wave reflection coefficients: (i) the Sommerfeld integral, consisting of a plane wave decomposition of a point source and (ii) a line of image sources located at complex coordinates. Phased beam tracing using exact half-space solutions agrees well with the finite element method for rectangular rooms with absorbing boundaries, at low frequencies and for rooms with different aspect ratios. Results are accurate even for long source-to-receiver distances. Finally, the crossover frequency between the plane and spherical wave reflection coefficients is discussed.

摘要

几何声学为具有刚性边界的矩形房间的波动方程提供了正确的解,并且在高频且墙壁近乎坚硬的情况下是一种精确的近似。当干涉效应很重要时,采用相控几何声学来考虑由于传播和反射引起的相移。然而,随着吸收增加、复阻抗值增大、掠入射、体积减小和频率降低,误差会增大。用球面反射系数代替平面波反射系数会减小误差,但会导致收敛变慢。然后应用频率相关的停止准则,以避免对已经收敛的频率计算高阶反射。使用精确的半空间解来推导另外两个球面波反射系数:(i) 索末菲积分,由点源的平面波分解组成;(ii) 位于复坐标处的镜像源线。对于具有吸收边界的矩形房间、低频以及具有不同纵横比的房间,使用精确半空间解的相控波束追踪与有限元方法吻合良好。即使对于源到接收器的长距离,结果也很准确。最后,讨论了平面波和球面波反射系数之间的交叉频率。

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