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首页> 外文期刊>American journal of fluid dynamics >Sound Scattering Laws for Moving Microinhomogeneous Media
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Sound Scattering Laws for Moving Microinhomogeneous Media

机译:移动非均匀介质的声散射定律

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Low frequency sound scattering in microinhomogeneneous media, comprising particles moving orderly or chaotically with respect to ambient ideal or viscose fluid or streamlined by fluid is analyzed. It is shown that basic scattering laws are violated in moving media due to acoustic / electromagnetic wave scattering analogy violation related to ambient fluid entrapment by particles (inhomogeneities) playing noticeable role in media sound scattering. Moving inhomogeneous media low frequency sound scattering data observable in experiments is frequently distinguished from predicted by sound scattering theory. That is why scattering laws in moving media are to be generalized and it is main purpose of the paper. Scattering amplitudes and crossections for ideal potential and viscose flows generated by particles moving with respect to media are calculated by means of inhomogeneous wave (Lighthill’s) equation. For spherical scatterers in orderly motion Rayleigh law acquires correction in particle Mach number linear approximation even in ideal fluid. However, for chaotically moving particles in ideal fluid, it still holds on the average. Reynolds number of particles motion, angle of scattered wave incidence and flow Mach number – incident wave parameter relationship, defines more complex sound scattering law versions valid in viscous media distinguished from classical Rayleigh law. Linearity of Lighthill’s equation (low Mach number requirement) is analysis restriction. PACS numbers: 43.20.Fn, 43.28.Gq, 43.28.Py.
机译:分析了微不均匀介质中的低频声音散射,其中包括相对于理想环境或粘胶流体有序或无序移动或被流体流线化的粒子。结果表明,由于声/电磁波散射类比违反了与环境流体被类粒子(不均匀性)夹带有关的运动(在介质声散射中起着重要作用),违反了基本的散射规律。在实验中可观察到的移动非均匀介质低频声音散射数据通常与声音散射理论所预测的有所区别。这就是为什么要推广移动介质中的散射定律的原因,这是本文的主要目的。由粒子相对于介质移动而产生的理想势能和粘胶流的散射幅度和截面,是通过非均匀波(Lighthill’s)方程计算的。对于有序运动的球形散射体,即使在理想流体中,瑞利定律也能获得粒子马赫数线性近似的校正。但是,对于使粒子在理想流体中进行混沌运动,它仍然保持平均水平。雷诺粒子运动数,散射波入射角和流动马赫数-入射波参数之间的关系,定义了更复杂的声散射定律版本,适用于不同于经典瑞利定律的粘性介质。 Lighthill方程的线性(低马赫数要求)是分析限制。 PACS编号:43.20.Fn,43.28.Gq,43.28.Py。

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