Acta Armamentarii ›› 2013, Vol. 34 ›› Issue (5): 567-573.doi: 10.3969/j.issn.1000-1093.2013.05.009
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WAN Xiao-hui, YU Kai-ping, ZHANG Guang, LI Zhen-wang
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Abstract:
A mathematical model of unsteady ventilated supercavitation is established based on the princi- ple of Logvinovich of the cavity sections expansion and mass conservation equation. The mathematical model is used to simulate the shape stability of ventilated supercavitation under the disturbances of air- supply rate, cavitator, velocity and some combination perturbation, respectively, and then the stability of ventilated supercavitation is analyzed. The results indicate that the disturbance of velocity plays a crucial role in the shape stability of ventilated supercavitation, and the oscillation of cavity is strong, the disturb- ance of cavitator can influence the shape stability of ventilated supercavitation with low-amplitude and de- termine the last length of cavity, the disturbance of air-supply rate is small compared with the others and can be ignored when they exist.
Key words: fluid mechanics, multiple disturbance, cavity stability, the principle of Logvinovich of the cavity sections expansion, ventilated supercavitation, unsteady flow
CLC Number:
130. 25
WAN Xiao-hui, YU Kai-ping, ZHANG Guang, LI Zhen-wang. Numerical Simulation of the Stability of Ventilated Supercavitation under Various Types of Disturbances[J]. Acta Armamentarii, 2013, 34(5): 567-573.
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URL: http://www.co-journal.com/EN/10.3969/j.issn.1000-1093.2013.05.009
http://www.co-journal.com/EN/Y2013/V34/I5/567