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Stall Evolution Mechanism of a Centrifugal Compressor with a Wide-Long Vaneless Diffuser
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作者 ZHANG Lei KANG Jiacheng +4 位作者 lang jinhua AN Guangyao ZHANG Qian WANG Longyao WANG Qifang 《Journal of Thermal Science》 SCIE EI CAS CSCD 2024年第3期899-913,共15页
The rotating stall mechanism is of high importance for the stability of centrifugal compressors and thermal power cycles.The majority of research concerning this topic has concentrated on the initial stall phase.Howev... The rotating stall mechanism is of high importance for the stability of centrifugal compressors and thermal power cycles.The majority of research concerning this topic has concentrated on the initial stall phase.However,the evolution of stall cells in wide-long diffusers has not been comprehensively studied.In this paper,the causes of rotating stall in the wide-long diffuser and the three-dimensional evolution mechanism of stall cells during the stall process were thoroughly analyzed.During the stall induction phase,an annulus vortex structure was found in the reverse-flow zone near the hub side of the diffuser outlet,which was the initial form of stall cells.The whole evolution process of stall cells was divided into three phases as the flow rate decreased.During the initial stall phase,the dynamic equilibrium was built under effects of the impeller wake and the adverse pressure gradient.As a result,the number of stall cells was kept at seven and the size of stall cells remained constant.During the transition phase,the flow in the diffuser became unstable.Stall cells extended to the impeller outlet,and the effect of the wake flow was strengthened significantly.Stall cells started integrating and separating regularly.As a result,the number and propagation speed of stall cells varied periodically at a constant mass flow rate.During the deep stall phase,the size of stall cells remained unchanged,and the number of stall cells kept at one.This study has important practical guidance and engineering value for the high-efficiency design and safe operation of centrifugal compressors. 展开更多
关键词 centrifugal compressor wide-long vaneless diffuser stall evolution mechanism wake flow
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跨声速轴流压气机的失速发展机理 被引量:8
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作者 郎进花 楚武利 +1 位作者 安光耀 张皓光 《航空动力学报》 EI CAS CSCD 北大核心 2018年第8期1964-1973,共10页
为了研究跨声速轴流压气机由近失速工况发展为失速工况的动态演化机理,对跨声速轴流压气机转子NASA Rotor 37进行了多通道全三维数值模拟,着重分析了激波及前缘溢流对失速发展的影响。结果显示:在峰值效率工况下,叶片通道内存在一道斜激... 为了研究跨声速轴流压气机由近失速工况发展为失速工况的动态演化机理,对跨声速轴流压气机转子NASA Rotor 37进行了多通道全三维数值模拟,着重分析了激波及前缘溢流对失速发展的影响。结果显示:在峰值效率工况下,叶片通道内存在一道斜激波;在失速工况下,斜激波演化为脱体激波。泄漏涡通过脱体激波后发生破碎,破碎的泄漏涡在向通道下游发展的过程中,受逆压梯度的影响,在通道中部形成一个明显的涡结构。在失速工况初期,由于泄漏涡的自维持现象,前缘溢流现象随着叶顶阻塞区的周期性发展而间歇性出现;随着流量的降低,通道阻塞程度逐渐增加,会出现前缘溢流一直存在的现象,这一特性可以作为流场开始急剧恶化的标志。 展开更多
关键词 跨声速轴流压气机 非定常性 失速 激波 前缘溢流
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