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Estimation of size and number density of microbubbles based on analysis of frequency-dependent attenuation

机译:基于频率依赖性衰减分析的微气泡尺寸和数量密度估计

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摘要

A method of estimating the size and number density of microbubbles in suspension is proposed, which matches the theoretically calculated frequency dependent attenuation coefficient with the experimental data. Assuming that the size distribution of bubbles is given by a log-normal function, three parameters (expected value and standard deviation of radius and the number density of bubbles) of Sonazoid (R) in the steady flow were estimated. Bubbles are exposed to ultrasound with a center frequency of 5 MHz and mechanical indices of 0.4, 0.5, 0.7, and 1.1. The expected value and standard deviation for the size distribution were estimated to be 70-85 and 45-60% of the reference values in the case of a lower mechanical index, respectively. The number density was estimated to be 20-30 times smaller than the reference values. This fundamental examination indicates that the number density of bubbles can be qualitatively evaluated by the proposed method. (C) 2016 The Japan Society of Applied Physics
机译:提出了一种估计悬浮液中微气泡的大小和数量密度的方法,该方法使理论计算的频率相关衰减系数与实验数据相匹配。假设气泡的大小分布是由对数正态函数给出的,则估算了稳定流动中Sonazoid(R)的三个参数(气泡的期望值和标准偏差以及气泡的数量密度)。气泡暴露于中心频率为5 MHz且机械指数为0.4、0.5、0.7和1.1的超声波下。在机械指数较低的情况下,尺寸分布的预期值和标准偏差估计分别为参考值的70-85%和45-60%。估计数字密度比参考值小20-30倍。该基本检查表明,通过所提出的方法可以定性地评估气泡的数量密度。 (C)2016年日本应用物理学会

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