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Microbubble dynamics near a wall subjected to a travelling acoustic wave
Qian Wang
, Kawa Manmi
Mathematics
Research output
:
Contribution to journal
›
Article
›
peer-review
48
Citations (Scopus)
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Dive into the research topics of 'Microbubble dynamics near a wall subjected to a travelling acoustic wave'. Together they form a unique fingerprint.
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Keyphrases
Ultrasound
100%
Acoustic Waves
100%
Microbubble Dynamics
100%
High-frequency Ultrasound
50%
Jet Direction
33%
Jet Surface
33%
Computational Model
16%
Boundary Integral Method
16%
High-speed Liquid Jet
16%
Highly Concentrated
16%
Ambient Pressure
16%
Liquid Jet
16%
Bubble Collapse
16%
Bubble Surface
16%
Hybrid Method
16%
Numerical Instability
16%
Cavitation
16%
Bubble Radius
16%
Standoff Distance
16%
Ultrasonic Cleaning
16%
Axisymmetric Model
16%
Wall Effect
16%
Fine Mesh
16%
Lagrangian Method
16%
Acoustic Bubble
16%
Microbubbles
16%
Jet Forming
16%
Mesh Technique
16%
Rayleigh-Plesset Equation
16%
Ultrasonic Sonochemistry
16%
Bjerknes Force
16%
Wave Direction
16%
Elastic Mesh
16%
Biomedical Ultrasound
16%
Three-dimensional Dynamics
16%
Engineering
Liquid Jet
100%
Axisymmetric
100%
Max
100%
Integral Method
50%
Ambient Pressure
50%
Bubble Collapse
50%
Numerical Study
50%
Hybrid Approach
50%
Dimensionless
50%
Bubble Radius
50%
Sonochemistry
50%
Ultrasonic Cleaning
50%
Fine Mesh
50%
Lagrangian Method
50%
Physics
Acoustic Wave
100%
Boundary-Integral Method
50%
Ultrasonic Cleaning
50%
Ultrasonic Processing
50%
Computational Modeling
50%