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Analysis of the cavitating flow induced by an ultrasonic horn – Experimental investigation on the influence of actuation phase, amplitude and geometrical boundary conditions

机译:超声喇叭 - 实验研究对致动阶段,幅度和几何边界条件影响的实验研究诱导的分析

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摘要

Till today, factors influencing the formation and collapse of densely distributed, interacting cavitation bubbles are only qualitatively understood. The aim of the present study is to investigate experimentally the influence of selected boundary conditions on the number and size distribution of cavitation bubbles created by an ultrasonic horn (sonotrode). Cavitation bubble clouds below the sonotrode were recorded by means of phase-locked shadowgraphy imaging. The time integrated number of cavitation bubbles was found to decrease exponentially with growing bubble radius. The number of bubbles was increased with growing actuation amplitude and gap width between the sonotrode tip and an opposing solid wall. Furthermore, it could be shown that the number of cavitation bubbles depends on the actuation phase. Future investigations will focus on establishing a statistical relation between the number and size distribution of cavitation bubbles in the near wall region and the resulting cavitation erosion on solid surfaces.
机译:直到今天,影响浓密分布的形成和崩溃的因素才定性地理解。本研究的目的是通过实验研究所选边界条件对由超声波喇叭(超声波)产生的空化气泡的数量和尺寸分布的影响。通过锁相影像图像记录超声波图的空化泡沫云。发现空化泡沫的时间集成数量与生长的气泡半径呈指数级呈指数级。随着致动幅度和超声波尖端和相对的固体壁之间的致动幅度和间隙宽度增加,气泡的数量增加。此外,可以示出空化气泡的数量取决于致动阶段。未来的调查将侧重于建立近壁区域附近空化泡沫的数量和规模分布与固体表面上所产生的空化腐蚀之间的统计关系。

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