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国外新型对螺旋桨系统的研制 被引量:1
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作者 壬茗 《中外船舶科技》 1997年第4期31-36,30,共7页
对转螺旋桨系统再次受到造船界的青睐,新型系统在节能、减振、减泡等方面取得了成效。,本文就该先进推进系统的设计原理、优化设计计算程序、系统的结构、性能、模型试验及实用化等作了阐述、并简单介绍了360°全螺旋式对转螺... 对转螺旋桨系统再次受到造船界的青睐,新型系统在节能、减振、减泡等方面取得了成效。,本文就该先进推进系统的设计原理、优化设计计算程序、系统的结构、性能、模型试验及实用化等作了阐述、并简单介绍了360°全螺旋式对转螺旋桨。 展开更多
关键词 螺旋桨 对螺旋桨 船舶
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Prediction of Aerodynamic Noise in a Ring Fan Based on Wake Characteristics 被引量:1
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作者 Soichi Sasaki Masaharu Fukuda +1 位作者 Masao Tsujino Haruhiro Tsubota 《Journal of Thermal Science》 SCIE EI CAS CSCD 2011年第2期144-149,共6页
A ring fan is a propeller fan that applies an axial-flow impeller with a ring-shaped shroud on the blade tip side. In this study, the entire flow field of the ring fan is simulated using computational fluid dynamics (... A ring fan is a propeller fan that applies an axial-flow impeller with a ring-shaped shroud on the blade tip side. In this study, the entire flow field of the ring fan is simulated using computational fluid dynamics (CFD); the accuracy of the CFD is verified through a comparison with the aerodynamic characteristics of a propeller fan of current model. Moreover, the aerodynamic noise generated by the fan is predicted on the basis of the wake characteristics. The aerodynamic characteristic of the ring fan based on CFD can represent qualitatively the variation in the measured value. The main flow domain of the ring fan is formed at the tip side of the blade because blade tip vortex is not formed at that location. Therefore, the relative velocity of the ring fan is increased by the circumferential velocity. The sound pressure levels of the ring fan within the frequency band of less than 200 Hz are larger than that of the propeller fan. In the analysis of the wake characteristics, it revealed that Karman vortex shedding occurred in the main flow domain in the frequency domain lower than 200 Hz ; the aerodynamic noise of the ring fan in the vortex shedding frequency enlarges due to increase in the relative velocity and the velocity fluctuation. 展开更多
关键词 FAN VORTEX Aerodynamic Noise WAKE Internal Flow
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