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An improved theory for the prediction of microcavitation thresholds

机译:预测微空化阈值的改进理论

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摘要

An approximate analytical formulation is presented that allows for the calculation of acoustic pressure thresholds for transient cavitation over a variety of frequencies and host fluid parameters. Specifically, R.E. Apfel's (1986) theory is extended to include an estimate of the time delay associated with the Laplace pressure, 2 sigma /R/sub 0/, where sigma is the surface tension and R/sub 0/ is the initial radius. Also presented is a correction factor for the time-averaged pressure difference, across the bubble wall during growth. An optimum size distribution of nuclei for the predisposition of a sample to microcavitation is exhibited. The role of transient cavitation in medical ultrasound is discussed.
机译:提出了一种近似的分析公式,该公式可以计算声压阈值,以在各种频率和宿主流体参数上进行瞬时空化。具体来说,R.E。 Apfel(1986)的理论扩展到包括与拉普拉斯压力有关的时间延迟的估计值,即2 sigma / R / sub 0 /,其中sigma是表面张力,R / sub 0 /是初始半径。还提出了在生长过程中跨气泡壁的时间平均压力差的校正因子。显示了使样品易于发生微空化的最佳核尺寸分布。讨论了瞬时空化在医学超声中的作用。

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