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Effective medium method for sound propagation in a soft medium containing air bubbles

机译:在包含气泡的软介质中传播声音的有效介质方法

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摘要

An effective medium method (EMM) is developed to investigate the nonlinear propagation of acoustic waves for soft media containing air bubbles, which accounts for the effects of weak compressibility, viscosity, surrounding pressure, surface tension, and encapsulating shells. Based on the dynamics model of an individual bubble that has included these effects, the EMM is presented by employing a simple perturbation approach to "homogenize" the bubbly soft media. The equations describing the fundamental and the second harmonic waves are derived that applies to three-dimensional cases, and then solved in a one-dimensional case to obtain the effective acoustical parameters of a longitudinal wave. The EMM is compared with the previous theories in three representative cases regarded as simple models of significant practical applications. The results show that the EMM agrees well with the previous theories and can incorporate the additional effects, which may notably affect the accuracy of the results. The limitations of the EMM are also identified and stated. (C) 2008 Acoustical Society of America.
机译:开发了一种有效的介质方法(EMM),以研究声波在包含气泡的软介质中的非线性传播,这说明了弱可压缩性,粘度,周围压力,表面张力和封装壳的影响。基于已包含这些影响的单个气泡的动力学模型,通过采用简单的摄动方法“使”气泡状软介质“均质化”来表示EMM。推导了描述基波和二次谐波的方程式,该方程式适用于三维情况,然后在一维情况下求解以获得纵向波的有效声学参数。在三个具有代表性的案例中,将EMM与先前的理论进行了比较,这些案例被视为具有重要实际应用意义的简单模型。结果表明,EMM与以前的理论非常吻合,并且可以合并其他影响,这可能会显着影响结果的准确性。 EMM的局限性也已确定并阐明。 (C)2008年美国声学学会。

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