首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >UNSTEADY FLOW FEATURES AND VIBRATION STRESSES OF AN ACTUAL SIZE STEAM TURBINE LAST STAGE IN VARIOUS LOW LOAD CONDITIONS
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UNSTEADY FLOW FEATURES AND VIBRATION STRESSES OF AN ACTUAL SIZE STEAM TURBINE LAST STAGE IN VARIOUS LOW LOAD CONDITIONS

机译:各种低负荷条件下实际大小汽轮机末级的非定常流动特征和振动应力

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Experimental investigations with a six stage real scale low pressure steam turbine operated at a very low load conditions are presented in this paper. Although the tested 35 inch last stage blades are circumferentially coupled at both tip and mld span with an intention to reduce the vibration stress, still its increase was observed at extremely low load condition. The pressure fluctuations were measured by several silicon diaphragm sensors which were mounted on both inner and outer casings of the stator inlet, exit and blade exit position. The measurement of the vibration stress was performed by strain gauges on several blades. The power spectra of unsteady pressures were precisely investigated considering both their location and steam flow condition. And the results implied that huge reverse flow and re-circulation started in the same location as a blade-to-blade CFD predicted. In terms of the correlation between vibration stress and the flow feature, the pressure fluctuation around the blade tip produces dominant effects on the vibration stress. The unsteady pressure frequency were also investigated and compared with those of the blade resonance and rotational speed. Basic trends observed in the results are similar to what other researchers reported, and on top of that, the continuous trends of pressure fluctuation and blade vibration stress were systematically investigated. Even the wall pressure, not the pressure on blade surface, showed the effective fluctuations which excited the several nodes of natural frequencies of the last stage blade. A series of FFT of fluid force by a full annulus quasi-steady CFD simulation seems to predict dominant mode of the excitation which account for the behavior of vibration stresses. The mechanism of the rapid stress increase was examined by considering CFD results and measured unsteady pressure data together. As the test facility takes a responsibility as an independent power producer, the tests were conducted in real plant operations which include multi stage effects, inlet distortions, Reynolds Number effect and so on. The obtained data and the particular indicator of vibration stress increase can be used as a part of design tool validation with neither aerodynamic nor mechanical corrections.
机译:本文介绍了在非常低的负载条件下运行的六级实际规模低压蒸汽轮机的实验研究。尽管经过测试的35英寸末级叶片在叶尖和mld跨度上周向联接,目的是减小振动应力,但在极低负载条件下仍能观察到其增大。通过安装在定子入口,出口和叶片出口位置的内壳和外壳上的几个硅膜片传感器测量压力波动。振动应力的测量是通过应变仪在几个叶片上进行的。考虑到它们的位置和蒸汽流动条件,精确地研究了非稳态压力的功率谱。结果表明,巨大的逆流和再循环始于叶片到叶片CFD所预测的相同位置。就振动应力和流动特性之间的相关性而言,叶片尖端周围的压力波动会对振动应力产生主要影响。还研究了非稳态压力频率并将其与叶片共振和转速的频率进行比较。结果中观察到的基本趋势与其他研究人员报道的相似,最重要的是,系统地研究了压力波动和叶片振动应力的连续趋势。即使是壁面压力,而不是叶片表面压力,也显示出有效的波动,从而激发了末级叶片固有频率的多个节点。通过完整的环形准稳态CFD模拟对流体力进行的一系列FFT似乎可以预测激发的主导模式,从而解释了振动应力的行为。通过考虑CFD结果并一起测量非定常压力数据来检查应力快速增加的机制。由于测试设施承担着独立发电商的责任,因此测试是在实际工厂操作中进行的,其中包括多级效应,入口畸变,雷诺数效应等。所获得的数据和振动应力增加的特定指标可以用作设计工具验证的一部分,而无需进行气动或机械校正。

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