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分数阶粘弹性半空间对表面和次表面源的表面响应。

Surface response of a fractional order viscoelastic halfspace to surface and subsurface sources.

机构信息

Mechanical and Industrial Engineering, University of Illinois at Chicago, Chicago, Illinois 60607, USA.

出版信息

J Acoust Soc Am. 2009 Dec;126(6):3278-85. doi: 10.1121/1.3242351.

Abstract

Previous studies by the second author published in this journal focused on low audible frequency (40-400 Hz) shear and surface wave motion in and on a viscoelastic material representative of biological tissue. Specific cases considered were that of surface wave motion on a halfspace caused by a finite rigid circular disk located on the surface and oscillating normal to it [Royston et al., J. Acoust. Soc. Am. 106, 3678-3686 (1999)] and compression, shear, and surface wave motion in a halfspace generated by a subsurface finite dipole [Royston et al., J. Acoust. Soc. Am. 113, 1109-1121 (2003)]. In both studies, a Voigt model of viscoelasticity was assumed in the theoretical treatment, which resulted in agreement between theoretical predictions and experimental measurements over a limited frequency range. In the present article, the linear viscoelastic assumption in these two prior works is revisited to consider a (still linear) fractional order Voigt model, where the rate-dependent damping component that is dependent on the first derivative of time is replaced with a component that is dependent on a fractional derivative of time. It is shown that in both excitation source configurations, the fractional order Voigt model assumption improves the match of theory to experiment over a wider frequency range (in some cases up to the measured range of 700 Hz).

摘要

之前由第二作者在本刊发表的研究侧重于具有粘弹性的生物组织的低频(40-400Hz)切变和表面波运动。考虑的具体情况是,位于表面并垂直于表面振动的有限刚性圆形圆盘引起的半空间表面波运动[Royston 等人,J. Acoust. Soc. Am. 106, 3678-3686(1999)]以及由亚表面有限偶极子产生的半空间中的压缩、切变和表面波运动[Royston 等人,J. Acoust. Soc. Am. 113, 1109-1121(2003)]。在这两项研究中,理论处理中假设了粘弹性的 Voigt 模型,这导致在有限的频率范围内理论预测和实验测量之间达成了一致。在本文中,重新考察了这两项先前工作中的线性粘弹性假设,以考虑(仍然是线性的)分数阶 Voigt 模型,其中依赖于时间的一阶导数的时变阻尼分量被替换为依赖于时间的分数阶导数的分量。结果表明,在这两种激励源配置中,分数阶 Voigt 模型假设在更宽的频率范围内提高了理论与实验的匹配度(在某些情况下,直至测量范围 700Hz)。

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