Numerical investigation of two-microbubble collapse and cell deformation in an ultrasonic field

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초록

Two-microbubble collapse near a spherical cell in an ultrasonic field is numerically analyzed by extending a level-set method for compressible multiphase flows with bubble and cell multiple interfaces. Computations performed with different bubble-bubble distances and size ratios demonstrate various bubble-bubble in-teractions, such as bubble coalescence, bubble repulsion and attraction, jet penetration into the bubble, and jet collision. The interactions between collapsing bubbles are found to produce strong liquid jet formation and result in significant cell deformation compared to single-bubble collapse. The optimal bubble-bubble distance and size ratio for cell deformation are presented via contour maps based on extensive computations. The influences of the ultrasonic amplitude and frequency on cell deformation are further investigated.

키워드

UltrasoundBubble collapseBubble-bubble interactionLiquid jetCell deformationBUBBLE DYNAMICSINERTIAL CAVITATIONSONOPORATIONSIMULATIONDRIVENFLUIDSOFT
제목
Numerical investigation of two-microbubble collapse and cell deformation in an ultrasonic field
저자
Hong, SeongjinSon, Gihun
DOI
10.1016/j.ultsonch.2022.106252
발행일
2023-01
유형
Article
저널명
Ultrasonics Sonochemistry
92