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Investigation of the Energy Shielding of Kidney Stones by Cavitation Bubble Clouds during Burst Wave Lithotripsy

机译:爆发波岩岩岩云云云岩石能源屏蔽的研究

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We conduct experiments and numerical simulations of the dynamics of bubble clouds nucleated on the surface of an epoxy cylindrical stone model during burst wave lithotripsy (BWL). In the experiment, the bubble clouds are visualized and bubble-scattered acoustics are measured. In the numerical simulation, we combine methods for modeling compressible multicomponent flows to capture complex interactions among cavitation bubbles, the stone, and the burst wave. Quantitative agreement is confirmed between results of the experiment and the simulation. We observe and quantify a significant shielding of incident wave energy by the bubble clouds. The magnitude of shielding reaches up to 80% of the total acoustic energy of the incoming burst wave, suggesting a potential loss of efficacy of stone comminution. We further discovered a strong linear correlation between the magnitude of the energy shielding and the amplitude of the bubble-scattered acoustics, independent of the initial size and the void fraction of bubble cloud within a range addressed in the simulation. This correlation could provide for real-time monitoring of cavitation activity in BWL.
机译:我们在爆发波型裂纹(BWL)期间对环氧圆柱石模型表面上核的泡沫云动态进行实验和数值模拟。在实验中,泡沫云是可视化的,并测量气泡散射声学。在数值模拟中,我们结合了模拟可压缩多组分流的方法,以捕获空化气泡,石头和突发波之间的复杂相互作用。实验结果与模拟之间的定量协议确认。我们观察并量化泡沫云对事故波能的显着屏蔽。屏蔽的幅度达到进入爆发波的总声能的80%,表明石头粉碎效果的潜在损失。我们进一步发现了能量屏蔽的大小与气泡散射声学的幅度之间的强烈线性相关性,与模拟中寻址的范围内的初始尺寸和气泡云的空隙部分无关。这种相关性可以提供BWL中的空化活动的实时监测。

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