ZANGENEH M, DANESHKHAH K, DACOSTA B. A multi-objective automatic optimization strategy for design of waterjet pumps[C]// International Conference of Waterjet Propulsion 5. London, UK, 2008.
[2]
TAYLOR T E, KERWIN J E, SCHERER J O. Waterjet pump design and analysis using a coupled lifting-surface and RANS procedure[C]// International Conference on Waterjet Propulsion 2. Amsterdam, Holand,1998.
[3]
蔡佑林, 焦松, 王立祥, 等. 应用可控速度矩法设计的喷水推进混流泵试验研究[J]. 流体机械, 2010, 38(9): 1-4. CAI Youlin, JIAO Song, WANG Lixiang, et al. Test research on waterjet mixed-flow pump designed by controllable velocity moment method[J]. Fluid Machinery, 2010, 38(9): 1-4.
[4]
MENTER F R. Two-equation eddy-viscosity turbulence models for engineering applications[J]. AIAA Journal, 1994(32): 1598-1605.
NORBERT B, VERBEEK R. CFD simulations of the flow through a waterjet installation[C]// International Conference on Waterjet Propulsion 4. London, UK, 2004.
[7]
刘承江, 王永生, 张志宏. 喷水推进器数值模拟所需流场控制体的研究[J]. 水动力学研究与进展, 2008, 23(5): 592-595. LIU Chengjiang, WANG Yongsheng, ZHANG Zhihong. Study on flow control volume in numerical simulation of waterjet propulsor[J]. Chinese Journal of Hydrodynamics, 2008, 23(5): 592-595.
[8]
NORBERT B. Numerical analysis of a waterjet propulsion system[D]. Netherlands: Library Eindhoven University of Technology, 2006:161-164 .
[9]
刘承江, 王永生, 张志宏, 等. 喷水推进器推力的CFD计算方法研究[J]. 计算力学学报, 2008, 25(6): 927-931. LIU Chengjiang, WANG Yongsheng, ZHANG Zhihong, et al. Research on computational methods of waterjet thrust using CFD[J]. Chinese Journal of Computational Mechanics, 2008, 25(6): 927-931.
[10]
DONNELLY M, GOWING S. Overview of recent developments in testing of waterjet at NSWCCD[C] // International Conference of Waterjet Propulsion 5. London, UK, 2008.
[11]
PURNELL J. Waterjet self-propulsion model test for application to a high-speed sealift ship[R]. Togo: CDI Marine Company, 2007.