首页> 外文会议>ASME/JSME/KSME Joint Fluids Engineering Conference;AJK2011 >CHARACTERISTICS OF SURGE AND ROTATING STALL IN A THREE-STAGE AXIAL FLOW COMPRESSOR USING SHOCK TUBE
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CHARACTERISTICS OF SURGE AND ROTATING STALL IN A THREE-STAGE AXIAL FLOW COMPRESSOR USING SHOCK TUBE

机译:冲击管在三阶段轴流压气机中喘振和旋转失速特性

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Transient characteristics as well as unsteady cascade flow fields of a three-stage axial flow compressor with compression plane wave injection from the compressor downstream were experimentally investigated by detail measurements of casing wall pressure fluctuations and unsteady velocity. The main feature of tested compressor is a shock tube facility connected in series to the compressor outlet duct in order to supply a compression plane wave which simulates the sudden rise of the compressor back pressure in a gas turbine system. Research attention is mainly focused on the unsteady behavior of surge and rotating stall coexistence phenomenon, and influence of the compression plane wave injection on the compressor operating conditions. When the compressor is connected to the capacity tank, surge and rotating stall occur simultaneously according to the capacitance increment of the whole compression system. The surge cycle changes irregularly with a throttling of the valve installed just behind the compressor and several different types of surge behaviors are observed. Furthermore, even though the compressor is operating under the stable condition, it goes into surge by injecting the compression plane wave.
机译:通过详细测量套管壁压力波动和非定常速度,实验研究了三级轴流压缩机从压缩机下游注入压缩平面波后的瞬态特性和非定常叶栅流场。经过测试的压缩机的主要特征是与压缩机出口管道串联的减震管,以便提供压缩平面波,该波形模拟燃气轮机系统中压缩机背压的突然升高。研究重点主要集中在喘振和旋转失速并存现象的非稳态行为,以及压缩平面波喷射对压缩机运行条件的影响上。当压缩机连接到容量罐时,喘振和旋转失速根据整个压缩系统的电容增量同时发生。喘振周期随压缩机后方安装的阀门的节流而无规律地变化,并且观察到几种不同类型的喘振行为。此外,即使压缩机在稳定条件下运行,它也会通过注入压缩平面波而进入喘振状态。

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