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首页> 外文期刊>The Journal of the Acoustical Society of America >Dynamics of gas bubbles in viscoelastic fluids. I. Linear viscoelasticity
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Dynamics of gas bubbles in viscoelastic fluids. I. Linear viscoelasticity

机译:粘弹性流体中的气泡动力学。 I.线性粘弹性

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The nonlinear oscillations of spherical gas bubbles in linear viscoelastic fluids are studied. A novel approach is implemented to derive a governing system of nonlinear ordinary differential equations. The linear Maxwell and Jeffreys models are chosen as the fluid constitutive equations. An advantage of this new formulation is that, when compared with previous approaches, it facilitates perturbation methods and numerical investigations. Analytical solutions are obtained using a multiple scale perturbation method and compared with the Newtonian results for various Deborah numbers. Numerical analysis of the full equations supports the perturbation analysis, and further reveals significant differences between the viscoelastic and Newtonian cases. Differences in the oscillation phase and harmonic structure characterize some of the viscoelastic effects. Subharmonic excitations at particular fluid parameters lead to a discrete group modulation of the radial excursions; this appears to be a unique, previously undiscovered phenomenon. Implications for medical ultrasound applications are discussed in light of these current findings.
机译:研究了线性粘弹性流体中球形气泡的非线性振荡。实现了一种新颖的方法来导出非线性常微分方程的控制系统。选择线性麦克斯韦和杰弗里斯模型作为流体本构方程。这种新公式的优点是,与以前的方法相比,它便于摄动方法和数值研究。使用多尺度摄动法获得解析解,并将其与牛顿结果对于各种Deborah数进行比较。完整方程的数值分析支持微扰分析,并进一步揭示了粘弹性和牛顿情况之间的显着差异。振荡相位和谐波结构的差异是某些粘弹性效应的特征。在特定流体参数下的次谐波激励导致径向偏移的离散组调制;这似乎是一种独特的,以前未被发现的现象。鉴于这些当前发现,对医学超声应用的含义进行了讨论。

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