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Unsteady flow structures in the tip region for a centrifugal compressor impeller before rotating stall 被引量:11
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作者 ZHAO HuiJing WANG ZhiHeng XI Guang 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2017年第6期924-934,共11页
To get an insight into the occurrence and the mechanism of flow unsteadiness in the tip region of centrifugal compressor impellers, the flow in Krain’s impeller is investigated by using both steady and unsteady RAN... To get an insight into the occurrence and the mechanism of flow unsteadiness in the tip region of centrifugal compressor impellers, the flow in Krain’s impeller is investigated by using both steady and unsteady RANS solver techniques. It is found that the flow unsteadiness on the pressure side is much stronger than that on the suction side. The periodical frequency of the unsteady flow is around half of the blade passing frequency. The originating mechanism of the flow unsteadiness is illustrated with the time-dependent tip leakage flow and blade loading at the tip region. Due to the blockage caused by the joint effects of broken-downed tip leakage vortex, separated fluids and tip leakage flow at downstream, a low pressure region is formed on the pressure side, consequently the blade loadings is altered. In turn, the changed blade loadings will alter the intensity of tip leakage flow. Such alternative behavior finally results in the periodic process. By comparing the calculated flow field in the cases of single-passage and four-passage models, it is confirmed that the investigated flow unsteadiness is confined in each single passage, as no phase differences are found in the model of four passages. This is different from the situation in axial compressor when the rotating instability is encountered. The flow unsteadiness only occurs at the working conditions with small mass flow rates, and the oscillation intensity will be enhanced with the decrease of mass flow rate. When the mass flow rate is too small, the flow unsteadiness in a single passage may trigger rotating stall, as the disturbance propagates in the circumferential direction. 展开更多
关键词 centrifugal compressor impeller flow unsteadiness tip leakage flow blade loading
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轴流泵前置导轮的结构形式及水力特性研究 被引量:1
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作者 陈坚 刘德祥 +2 位作者 宋元胜 袁瑞红 冯贤华 《武汉水利电力大学学报》 CSCD 1998年第3期21-24,共4页
为消除大中型轴流泵站因进口流态不良引起的汽蚀、振动和噪音,同时探讨将前置导轮用于轴流泵吸入性能调节的可能性,分析研究了前置导轮的结构和特性,包括导轮三种水力设计方案的叶片形式及其水力特性、导轮对主叶轮性能的影响以及导... 为消除大中型轴流泵站因进口流态不良引起的汽蚀、振动和噪音,同时探讨将前置导轮用于轴流泵吸入性能调节的可能性,分析研究了前置导轮的结构和特性,包括导轮三种水力设计方案的叶片形式及其水力特性、导轮对主叶轮性能的影响以及导轮的主要结构参数等. 展开更多
关键词 轴流泵 前置导轮 结构形式 水力特性
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