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A SURVEY ON FREQUENCY-DEPENDENT DISSIPATION OF SOFT MATTER VIBRATION AND ACOUSTICS

机译:柔软物质振动与声学频率依赖耗散调查

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The classical damping models of vibration and acoustic wave propagation in lossy medium are only applicable to the two particular cases of the frequencyindependent and frequency-squared dependent energy dissipation. However, many experimental and field measurements show that the energy dissipation in viscoelastic soft matters, also known as complex fluids, obeys the arbitrary power law frequency dependence. In recent decades, lots of efforts are made on developing appropriate models to describe such “anomalous” attenuation, for instance, frequency domain methods, adaptive proportional damping model, multiple relaxation models, time fractional derivative model, Szabo’s time convolutional integral model, modified Szabo’s model, and fractional Laplacian wave model. All these models are phenomenological in nature and do not necessarily reflect the physics mechanism underlying arbitrary power law attenuation. In this survey paper, we will review the above-mentioned power law frequency-dependent attenuation models and compared their merits and demerits and consequently present the perspective in this area of research and engineering applications.
机译:有损介质中的振动和声波传播的经典阻尼模型仅适用于频率相互相识的两个特定情况和频率平方的依赖能量耗散。然而,许多实验和现场测量表明,粘弹性软质的能量耗散,也称为复杂的流体,遵守任意功率法律频率依赖性。近几十年来,制定适当的模型来描述这种“异常”衰减的努力,例如频域方法,自适应比例阻尼模型,多重放松模型,时间分数衍生模型,Szabo的时间卷积积分模型,修改了Szabo模型,分数拉普拉斯波模型。所有这些模型都是现象学的本质上,并且不一定反映出潜在权力法衰减的物理机制。在本调查论文中,我们将审查上述电力法依赖衰减模型,并比较其优点和缺点,并因此在该研究和工程应用领域展示了这一领域的观点。

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