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Hydrodynamic Efficiency Improvement of the High Skew Propeller for the Underwater Vehicle Under Surface and Submerged Conditions 被引量:1
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作者 Hassan Ghassemi Parviz Ghadimi 《Journal of Ocean University of China》 SCIE CAS 2011年第4期314-324,共11页
An algorithm based on the Boundary Element Method(BEM)is presented for designing the High Skew Propeller(HSP)used in an Underwater Vehicle(UV).Since UVs operate under two different kinds of working conditions(i.e.surf... An algorithm based on the Boundary Element Method(BEM)is presented for designing the High Skew Propeller(HSP)used in an Underwater Vehicle(UV).Since UVs operate under two different kinds of working conditions(i.e.surface and submerged conditions),the design of such a propeller is an unwieldy task.This is mainly due to the fact that the resistance forces as well as the vessel efficiency under these conditions are significantly different.Therefore,some factors are necessary for the design of the opti-mum propeller to utilize the power under the mentioned conditions.The design objectives of the optimum propeller are to obtain the highest possible thrust and efficiency with the minimum torque.For the current UV,the main dimensions of the propeller are pre-dicted based on the given required thrust and the defined operating conditions.These dimensions(number of blades,pitch,diameter,expanded area ratio,thickness and camber)are determined through iterative procedure.Because the propeller operates at the stern of the UV where the inflow velocity to the propeller is non-uniform,a 5-blade HSP is preferred for running the UV.Finally,the propel-ler is designed based on the numerical calculations to acquire the improved hydrodynamic efficiency. 展开更多
关键词 在水下车辆 推进器设计因素 高斜的推进器 表面和沉没条件 水动力学推进器效率
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离子液体微推进技术研究进展 被引量:2
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作者 范益朋 夏广庆 +3 位作者 韩亚杰 鹿畅 孙斌 丁亮 《航空动力学报》 EI CAS CSCD 北大核心 2020年第6期1275-1285,共11页
介绍了离子液体推进器的基本结构和工作原理,阐述了粒子发射的限制条件及通常采用的工作模式,总结了该推进器的常见分类形式。介绍了当前广泛应用的一些实验方法和仿真手段,以及针对发射阈值场强、束流散射、多粒子分散效率、推进器长... 介绍了离子液体推进器的基本结构和工作原理,阐述了粒子发射的限制条件及通常采用的工作模式,总结了该推进器的常见分类形式。介绍了当前广泛应用的一些实验方法和仿真手段,以及针对发射阈值场强、束流散射、多粒子分散效率、推进器长时间工作稳定性等问题开展相关研究取得的进展,对比分析了适合粒子发射的工作环境及相对精确的仿真方法,为推进器的后续设计、工作模式设定及性能评估等工作提供了参考。结果表明:增大推进剂流阻、提高发射极阵列密度是提高离子液体推进器效率和推力的合适手段;利用闭环控制的方法改变发射电压极性、逐渐提高发射电压大小是维持推进器推力大小、提高工作稳定性的有效方法。 展开更多
关键词 推进 推进 离子液体 发射条件 推进器效率
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