水下航行体上的空泡在攻角、重力及航行体的外形影响下,空泡的迎水面外形与背水面外形并不对称,这种不对称空泡外形对空泡水动力或航行体弹道有极大影响。本文结合动量原理和空泡独立膨胀原理,在小攻角条件下建立了定常三维空泡外形的方法。
Under the influence of angle of attack, gravity and the geometry of underwater-vehicle, the shapes of underwater-vehicle cavity's upstream face and downstream face are asymmetrical. The asymmetrical shape has great influence on cavity hydrodynamic and the trajectory of vehicle. Using the momentum theorem and principle of independence of the cavity section expansion, the paper provides a method to calculate the asymmetrical shape of cavity on a vehicle when the angle of attack is small. This method can apply to computer simulations.
2017,(): 90-93 收稿日期:2017-09-12
DOI:10.3404/j.issn.1672-7649.2017.11.017
分类号:O352
作者简介:张晓东(1971-),男,高级工程师,研究方向为导弹总体技术
参考文献:
[1] SAVCHENKO, YU N, SEMENENKO V N, et al. Unsteady supercavitated motion of bodies[J]. Int. J. of Fluid Mechanics Research, 2000, 27(1): 109-137.
[2] LOGVINOVICH G V. Hydrodynamics of flows with free boundaries[M]. Halsted Press, 1973.
[3] VLADIMIR N S. Artificial supercavitation[M]. Physics and calculation. RTO EN-010, 2001.
[4] 顾九渊. 运动体空泡外形的近似计算[R]. 中国船舶科学研究中心科技报告, 1999.
[5] 程少华, 权晓波, 于海涛, 等. 小攻角下航行体三维非定常空泡形态理论预示方法[J]. 船舶力学, 2015, 19(8): 889-895.
CHENG Shao-hua, QUAN Xiao-bo,YU Hai-tao, et al. Three-dimensional cavitation shape of the underwater vehicles at a small attack angle in unsteady flow[J]. Journal of Ship Mechanics, 2015, 19(8): 889-895.
[6] VASIN A D. The principle of independence of the cavity sections expansion (logvinovich's princeple) as the basis for investigation on cavitation flows. RTO EN-010, 2001.