首页> 外文会议>ASME/JSME/KSME Joint Fluids Engineering Conference >DEVELOPMENT OF ROTATING STALL CELL UNDER COEXISTING PHENOMENA OF SURGE AND ROTATING STALL IN AN AXIAL-FLOW COMPRESSOR
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DEVELOPMENT OF ROTATING STALL CELL UNDER COEXISTING PHENOMENA OF SURGE AND ROTATING STALL IN AN AXIAL-FLOW COMPRESSOR

机译:轴流压气机共鸣和旋转失速现象下旋转失速腔的研制

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The relationship between the growth of the stall cell and variation in the surge behavior was experimentally investigated. The aim of this study was to reveal the effect of the stall cell on the surge behavior from the viewpoint of the inner flow structure. In the experiment, the unsteady compressor characteristics during the surge and rotating stall were obtained by using a precision pressure transducer and a one-dimensional single hotwire anemometer. Under the coexisting states of surge and rotating stall, various surge behaviors were observed by throttling the mass flow rate. When the flow rate was set such that the surge behavior switched, an irregular surge was observed. During the irregular cycle, two different cycles were selected randomly corresponding to the stall behavior. When the amplitude of the plenum pressure is relatively large among the measurement results, the absolute value of the time-change rate in the flow coefficient and the static pressure-rise coefficient tend to be high. This shows that the flow field during stable operation near the peak point of the unsteady characteristics changes rapidly. In this case, an auto-correlation function of the wall-pressure fluctuation data showed that the stall inception of the compressor was induced earlier in the large cycle compared with the case of the top cycle. When studying the growth of the stall cell during the stalling process of the large cycle, the wall-pressure fluctuation data showed that the stall cell rapidly grew by gathering more than one spike-type disturbance into one stall cell. In this case, the stall cell fully expanded along the circumferential direction and developed into a deep stall. Therefore, the key factors that determine the surge behavior are the sudden change in the flow field near the peak point of the unsteady characteristics and the rapid growth in the stall cell during the stalling process.
机译:实验研究了失速细胞的生长与电涌行为变化之间的关系。这项研究的目的是从内部流动结构的角度揭示失速单元对喘振行为的影响。在实验中,通过使用精密压力传感器和一维单热线风速计获得喘振和旋转失速期间的非稳态压缩机特性。在喘振和旋转失速并存的状态下,通过节流质量流量可以观察到各种喘振行为。当设定流量使得喘振行为改变时,观察到不规则的喘振。在不规则周期中,根据失速行为随机选择了两个不同的周期。当测量结果中的增压压力的幅度较大时,流量系数和静压上升系数的时间变化率的绝对值趋于较高。这表明,在不稳定特性的峰值附近稳定运行期间的流场迅速变化。在这种情况下,壁压力波动数据的自相关函数表明,与顶部循环的情况相比,在大循环中较早地诱发了压缩机的失速开始。在研究大周期失速过程中失速细胞的生长时,壁压波动数据表明,失速细胞通过将一个以上的尖峰型扰动聚集到一个失速细胞中而迅速生长。在这种情况下,失速单元沿周向完全膨胀并发展为深的失速。因此,决定喘振行为的关键因素是不稳定特性峰值附近流场的突然变化以及失速过程中失速单元的快速增长。

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