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首页> 外文期刊>The Journal of the Acoustical Society of America >Breakup of finite thickness viscous shell microbubbles by ultrasound: A simplified zero-thickness shell model
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Breakup of finite thickness viscous shell microbubbles by ultrasound: A simplified zero-thickness shell model

机译:超声分解有限厚度的粘性壳微气泡:简化的零厚度壳模型

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A simplified three-dimensional (3-D) zero-thickness shell model was developed to recover the non-spherical response of thick-shelled encapsulated microbubbles subjected to ultrasound excitation. The model was validated by comparison with previously developed models and was then used to study the mechanism of bubble break-up during non-spherical deformations resulting from the presence of a nearby rigid boundary. The effects of the shell thickness and the bubble standoff distance from the solid wall on the bubble break-up were studied parametrically for a fixed insonification frequency and amplitude. A diagram of bubble shapes versus the normalized shell thickness and wall standoff was derived, and the potential bubble shapes at break-up from reentrant jets were categorized resulting in four distinct zones.
机译:开发了简化的三维(3-D)零厚度壳模型,以恢复经受超声波激励的厚壳封装微泡的非球形响应。通过与先前开发的模型进行比较来验证该模型,然后将其用于研究由于附近刚性边界而导致的非球形变形期间的气泡破裂机制。在固定的声波频率和振幅下,参数化地研究了壳的厚度和从固体壁到气泡的距离对气泡破裂的影响。得出了气泡形状与归一化壳厚度和壁间距的关系图,并对折返射流破裂时可能产生的气泡形状进行了分类,从而产生了四个不同的区域。

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