首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >AERODYNAMIC INTERACTION EFFECTS FROM UPSTREAM AND DOWNSTREAM ON THE DOWN-FLOW TYPE EXHAUST DIFFUSER PERFORMANCE IN A LOW PRESSURE STEAM TURBINE
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AERODYNAMIC INTERACTION EFFECTS FROM UPSTREAM AND DOWNSTREAM ON THE DOWN-FLOW TYPE EXHAUST DIFFUSER PERFORMANCE IN A LOW PRESSURE STEAM TURBINE

机译:低压蒸汽轮机中上游和下游流的气动相互作用对下游型排气扩散器性能的影响

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The purpose of this paper is to explain aerodynamic interaction effects from upstream and downstream on the down-flow type exhaust diffuser performance in a low pressure steam turbine. To increase exhaust diffuser performance, design data related to the aerodynamic interaction effects from upstream turbine stages and downstream exhaust hood geometry on the exhaust diffuser performance would be very useful. This paper presents numerical investigation of three dimensional wet steam flows in a down-flow type exhaust diffuser with non-uniform inlet flow from a typical last stage with long transonic blades designed with recent aerodynamic and mechanical design technology. Previous studies show that small scale model tests and CFD analyses of exhaust diffusers with uniform inlet flow conditions are not enough to investigate diffuser efficiency and detail diffuser flow mechanism because inlet flow structures including tip leakage flows and blade wakes superimposed from a last stage and several other upstream turbine stages in low pressure turbines affect flow separations that reduce the exhaust diffuser performance. Recent studies by the authors show that the introduction of radial distributions of velocities and flow angles at the inlet section of exhaust diffuser measured in a full scale development steam turbine increased the accuracy of numerical analysis of diffuser flow. In the present study, the computational domain was enhanced and the method of boundary condition definition was improved to increase the accuracy of boundary layer separation and separation vortex generation in wet steam flows. Using the improved method, the calculation results explained the aerodynamic interaction effects from upstream and downstream on the down-flow type exhaust diffuser performance.
机译:本文的目的是解释来自上游和下游的空气动力相互作用对低压蒸汽轮机中下流式排气扩压器性能的影响。为了提高排气扩压器的性能,与上游涡轮级和下游排气罩几何形状对排气扩压器性能的气动相互作用影响有关的设计数据将非常有用。本文介绍了三维流湿气在向下流动型排气扩散器中的三维流动数值研究,该流扩散器具有典型的末级长进气口叶片,进气口流量不均匀,采用最新的气动和机械设计技术进行了设计。先前的研究表明,在进气流量均匀的情况下,对排气扩散器进行小规模模型测试和CFD分析不足以研究扩散器效率和详细的扩散器流动机理,因为进气流结构(包括末梢泄漏流和叶片尾流与上一阶段和其他几个阶段叠加在一起)低压涡轮的上游涡轮级会影响气流分离,从而降低排气扩压器的性能。作者最近的研究表明,在全尺寸开发的汽轮机中测量的排气扩压器进口处的速度和流角的径向分布的引入提高了扩压器流量数值分析的准确性。在本研究中,增加了计算域,改进了边界条件定义方法,以提高湿蒸汽流中边界层分离和分离涡旋产生的准确性。使用改进的方法,计算结果解释了上游和下游的气动相互作用对下流式排气扩压器性能的影响。

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