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作 者:李晨 陈帅 谢涛涛 LI Chen;CHEN Shuai;XIE Taotao(Military Representative Bureau of the Naval Armaments Department in Yichang,Yichang 443003,China;No.710 R&D Institute,CSSC,Yichang 443003,China;College of WeaponryEngineering,Naval University of Engineering,Wuhan 430033,China)
机构地区:[1]海军装备部驻宜昌地区军事代表室,湖北宜昌443003 [2]中国船舶重工集团有限公司第七一〇研究所,湖北宜昌443003 [3]海军工程大学兵器工程学院,湖北武汉430033
出 处:《数字海洋与水下攻防》2024年第2期195-199,共5页Digital Ocean & Underwater Warfare
摘 要:采用标准k-ε模型,结合Fluent软件,对采用泵喷补偿技术的拖体水下被拖行运动所产生的压力场变化进行了数值模拟实验。结果表明:采用泵喷补偿技术对拖体水压场的“马鞍形”分布特性影响较小,但随着喷水速度的增加,拖体首端压力负值略有增加,而中段的负峰幅值显著增加,当喷水速度达到一定值后,拖体的压力特性曲线已经较为接近期望值,证明泵喷补偿技术具有一定的可行性。In this paper,by using standard k-εmodel and Fluent software,numerical simulation experiments are carried out to simulate the changes of pressure field generated by the underwater towing motion of a towed body using pump spray compensation technology.The results show that the use of pump spray compensation technology has little influence on the saddle-shaped distribution characteristics of the water pressure field of the towed body,but with the increase of the water spraying speed,the negative pressure at the head of the towed body increases slightly,while the negative peak amplitude in the middle section increases significantly.When water spraying speed reaches a certain value,the pressure characteristic curve of the towed body is close to the expected value,which proves that the pump spray compensation technology is feasible.
分 类 号:TP274[自动化与计算机技术—检测技术与自动化装置]
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