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Natural frequency of a gas bubble in a tube: Experimental and simulation results

机译:管中气泡的固有频率:实验和仿真结果

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摘要

Use of ultrasonically excited microbubbles within blood vessels has been proposed for a variety of clinical applications. In this paper, an axisymmetric coupled boundary element and finite element code and experiments have been used to investigate the effects of a surrounding tube on a bubble’s response to acoustic excitation. A balloon model allowed measurement of spherical gas bubble response. Resonance frequencies match one-dimensional cylindrical model predictions for a bubble well within a rigid tube but deviate for a bubble near the tube end. Simulations also predict bubble translation along the tube axis and aspherical oscillations at higher amplitudes.
机译:已经提出了在血管内使用超声激发的微气泡用于多种临床应用。在本文中,轴对称耦合边界元和有限元代码以及实验已用于研究周围管道对气泡对声激发的响应的影响。气球模型可以测量球形气泡的响应。共振频率与刚性管内的气泡井的一维圆柱模型预测相符,但与管端附近的气泡相偏离。模拟还预测气泡沿管轴的平移以及更高振幅的非球面振荡。

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