TY - GEN
T1 - Numerical solution on spherical vacuum bubble collapse using MPS method
AU - Tian, Wenxi
AU - Qiu, Suizheng
AU - Su, Guanghui
AU - Oka, Yoshiaki
PY - 2009
Y1 - 2009
N2 - In this study, the vacuum bubble collapse in liquid pool has been simulated using MPS code. The liquid is described using moving particles and the bubble-liquid interface was set to be vacuum pressure boundary without interfacial heat mass transfer. The motion and location of interfacial particles can be competent in configurating the topological shape of vacuum bubble. The time dependent bubble diameter, interfacial velocity and bubble collapse time were obtained under wide parametric range. The comparison with Rayleigh's prediction showed a good agreement which validates the applicability and accuracy on MPS method in solving present momentum problems. The potential void-induced water hammer pressure pulse was also evaluated which is instructive for cavitaion erosion study. The bubble collapse with noncondensable gas has also been simulated and the rebound phenomenon was successfully captured which is similar with vapor-filled cavitation phenomenon. The present study exhibits some fundamental characteristics of vacuum bubble hydrodynamics and it is also expected to be instructive for further applications of MPS method to in complicated bubble dynamics.
AB - In this study, the vacuum bubble collapse in liquid pool has been simulated using MPS code. The liquid is described using moving particles and the bubble-liquid interface was set to be vacuum pressure boundary without interfacial heat mass transfer. The motion and location of interfacial particles can be competent in configurating the topological shape of vacuum bubble. The time dependent bubble diameter, interfacial velocity and bubble collapse time were obtained under wide parametric range. The comparison with Rayleigh's prediction showed a good agreement which validates the applicability and accuracy on MPS method in solving present momentum problems. The potential void-induced water hammer pressure pulse was also evaluated which is instructive for cavitaion erosion study. The bubble collapse with noncondensable gas has also been simulated and the rebound phenomenon was successfully captured which is similar with vapor-filled cavitation phenomenon. The present study exhibits some fundamental characteristics of vacuum bubble hydrodynamics and it is also expected to be instructive for further applications of MPS method to in complicated bubble dynamics.
KW - Bubble collapse time
KW - Interfacial velocity
KW - Particle method
KW - Vacuum bubble collapse
UR - https://www.scopus.com/pages/publications/77952797876
U2 - 10.1115/ICONE17-75845
DO - 10.1115/ICONE17-75845
M3 - 会议稿件
AN - SCOPUS:77952797876
SN - 9780791843536
T3 - International Conference on Nuclear Engineering, Proceedings, ICONE
SP - 705
EP - 712
BT - Proceedings of the 17th International Conference on Nuclear Engineering 2009, ICONE17
T2 - 17th International Conference on Nuclear Engineering, ICONE17
Y2 - 12 July 2009 through 16 July 2009
ER -