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THE EFFECT OF THE OPERATING CONDITIONS OF THE LAST TURBINE STAGE ON THE PERFORMANCE OF AN AXIAL EXHAUST DIFFUSER

机译:最后涡轮阶段的工作条件对轴向排气扩散器性能的影响

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The exhaust diffusers studied in this paper are installed behind the last turbine stage of gas turbines, including those used in combined cycle power plants. For the design of efficient diffusers, the effects caused by the last turbine stage need to be taken into account. In the present paper, results are presented to estimate the performance of a diffuser operating under a variation of multiple modelling parameters: tip leakage flow, the swirl, and the rotating blade wakes. To provide a better understanding of the flow parameters, a test facility with a turbine stage simulator is used to model these flow effects and an optical endoscopic planar measurement technique based upon Particle Image Velocimetry (PIV) is applied. The pressure recovery is estimated for various turbine conditions using a variety of relevant parameters. Within a range of conditions, a PIV study is performed to try to understand the typical flow phenomena which influence the performance of axial diffusers. The rise of turbulent energy in the inlet flow positively affects the diffuser performance. A small positive swirl angle in the inlet flow (behind the rotating bladed wheel in experiments) has a stabilizing effect on the diffuser. The tip leakage flow from the last turbine stage can also positively affect the pressure recovery in the diffuser.
机译:本文研究的排气扩散器安装在燃气轮机的最后一个涡轮级之后,包括在联合循环发电厂中使用的那些。为了设计高效的扩压器,需要考虑涡轮最后一级所引起的影响。在本文中,提出的结果可估算在多种建模参数(尖端泄漏流量,旋流和旋转叶片尾流)变化的情况下运行的扩压器的性能。为了更好地了解流动参数,使用带有涡轮级模拟器的测试设备对这些流动效果进行建模,并应用了基于粒子图像测速(PIV)的光学内窥镜平面测量技术。使用各种相关参数来估算各种涡轮机工况的压力恢复率。在一定条件下,进行PIV研究以试图了解影响轴向扩散器性能的典型流动现象。进气流中湍流能量的上升对扩压器的性能产生积极影响。进气流中的小正旋涡角(在实验中位于旋转的叶轮后面)对扩散器具有稳定作用。来自最后一个涡轮级的叶尖泄漏流也会对扩压器中的压力恢复产生积极影响。

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