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Reaction thrust characteristics of high-pressure submerged water jet of cylinder nozzles

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【作者】 李晓晖

【Author】 LI Xiao-hui,ZHU Yu-quan,HUANG Guo-qin,NIE Song-lin School of Mechanical Science and Engineering,Huazhong University of Science and Technology,Wuhan 430074,P. R. China

【机构】 School of Mechanical Science and Engineering,Huazhong University of Science and Technology

【摘要】 The shapes and geometrical parameters of nozzles are key factors for fluidics. The relationship among the reaction thrust,flow rate pressure,diameter d0 and length L of a cylinder nozzle is analyzed theoretically. The simulation of the flow field characteristics was conducted via the FLUENT computational fluid dynamics package. Effects of the inlet conditions and the nozzle dimensions on the reaction thrust of a water jet were addressed particularly. The reaction thrust experiments were performed on a custom-designed test apparatus. The experimental results reveal that a) the nozzle diameter and the inlet conditions exert great influence on the water jet reaction thrust; and b) for L≤4d0,where the nozzle is treated as a thin plate-orifice,the reaction thrust is independent of nozzle length; for L>4d0,where the nozzle is treated as a long orifice,the reaction thrust can reach maximum under the condition of a certain flow rate. These findings lay a theoretical foundation for the design of nozzles and have significant value,especially for the future development of high-pressure water-jet propulsion technology.

【Abstract】 The shapes and geometrical parameters of nozzles are key factors for fluidics. The relationship among the reaction thrust,flow rate pressure,diameter d0 and length L of a cylinder nozzle is analyzed theoretically. The simulation of the flow field characteristics was conducted via the FLUENT computational fluid dynamics package. Effects of the inlet conditions and the nozzle dimensions on the reaction thrust of a water jet were addressed particularly. The reaction thrust experiments were performed on a custom-designed test apparatus. The experimental results reveal that a) the nozzle diameter and the inlet conditions exert great influence on the water jet reaction thrust; and b) for L≤4d0,where the nozzle is treated as a thin plate-orifice,the reaction thrust is independent of nozzle length; for L>4d0,where the nozzle is treated as a long orifice,the reaction thrust can reach maximum under the condition of a certain flow rate. These findings lay a theoretical foundation for the design of nozzles and have significant value,especially for the future development of high-pressure water-jet propulsion technology.

【基金】 Funded by the Natural Science Foundation of China (No. 50775081);the National High-tech R&D (863) Program No. 2006AA09Z238);the NCET-07-0330, State Education Ministry.
  • 【文献出处】 Journal of Chongqing University(English Edition) ,重庆大学学报(英文版) , 编辑部邮箱 ,2009年01期
  • 【分类号】TB126
  • 【被引频次】7
  • 【下载频次】90
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