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Finite-difference time-domain simulation of acoustic propagation in dispersive medium: An application to bubble clouds in the ocean

机译:弥散介质中声传播的时域有限差分模拟:在海洋气泡云中的应用

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摘要

Accurate modeling of pulse propagation and scattering is a problem in many disciplines (i.e. electromagnetics and acoustics). For the case of an acoustic wave propagating in a two-dimensional non-dispersive medium, a routine 2nd order in time and space Finite-Difference Time-Domain (FDTD) scheme representation of the linear wave equation can be used to solve for the acoustic pressure. However when the medium is dispersive, one is required to take into account the frequency dependent attenuation and phase speed. Until recently to include the dispersive effects one typically solved the problem in the frequency domain and not in the time domain. The frequency domain solutions were Fourier transformed into the time domain. However by using a theory first proposed by Blackstock [D.T. Blackstock, J. Acoust. Soc. Am. 77 (1985) 2050. [1]], the linear wave equation has been modified by adding an additional term (the derivative of the convolution between the causal time-domain propagation factor and the acoustic pressure) that takes into account the dispersive nature of the medium. In the case of acoustic propagation through water, the water environment becomes strongly dispersive due to the presence of air bubbles that are present below the air-water interface. (c) 2006 Elsevier B.V. All rights reserved.
机译:在许多学科(即电磁学和声学)中,对脉冲传播和散射的精确建模是一个问题。对于声波在二维非色散介质中传播的情况,可以使用线性时差方程的时空常规二阶有限差分时域(FDTD)方案表示来求解声波。压力。但是,当介质是分散介质时,需要考虑与频率有关的衰减和相速度。直到最近,为了包括色散效应,人们通常在频域而不是时域解决问题。频域解被傅里叶变换到时域。但是,通过使用Blackstock首先提出的理论[D.T. Blackstock,J。Acoust。 Soc。上午。 77(1985)2050. [1],线性波方程已通过添加一个附加项(因果时域传播因子与声压之间的卷积的导数)进行了修改,该项考虑了噪声的色散特性。媒介。在通过水的声传播的情况下,由于存在于空气-水界面下方的气泡的存在,水环境变得很分散。 (c)2006 Elsevier B.V.保留所有权利。

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