首页> 外文会议>ASME Turbo Expo: Turbomachinery Technical Conference and Exposition >INFLUENCE OF SUPERSONIC NOZZLE DESIGN PARAMETERS ON THE UNSTEADY STATOR-ROTOR INTERACTION IN RADIAL-INFLOW TURBINES FOR ORGANIC RANKINE CYCLES
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INFLUENCE OF SUPERSONIC NOZZLE DESIGN PARAMETERS ON THE UNSTEADY STATOR-ROTOR INTERACTION IN RADIAL-INFLOW TURBINES FOR ORGANIC RANKINE CYCLES

机译:超音速喷嘴设计参数对有机朗肯循环径向流入涡轮机不稳定定子 - 转子相互作用的影响

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Organic Rankine Cycle (ORC) technology represents an interesting option for improving the efficiency of existing power plants and industrial processes as well as exploiting renewable and renewable-equivalent energy sources. The use of Radial-Inflow Turbine (RJT) for ORC plant sizes below 100 kW is promising, although the application remains challenging. In fact, the single stage arrangement imposed by economic constraints and hence the large expansion ratio, together with the large molecular weight, which characterizes organic fluids, usually result in highly supersonic flows, so making the use of transonic stators often mandatory. Particularly, the influence of RIT stator design parameters on losses and the level of unsteadiness seen by the subsequent rotor is still scarcely addressed in published literature. Previous work by the authors investigated the effect of some stator design parameters on stator loss and downstream circumferential uniformity. The present work investigates the effect of the convergent-divergent stators design parameters and the resulting downstream flow field non-uniformity on the unsteady stator-rotor interaction and loss generation in ORC Radial-Inflow Turbines. To this end, two stator and rotor configurations which differ by the stator design parameters (i.e., discharge metal angle and number of vanes) have been tested by means of 3D unsteady CFD calculations accounting for real-gas properties. The results show that larger stator-rotor interaction is present for the case featuring higher vane count and lower outlet metal, which also features the largest fluctuations of power output and pressure force on blade, together with a substantially lower average total-to-static efficiency.
机译:有机朗肯循环(ORC)技术代表了提高现有发电厂和工业流程效率的有趣选择,以及利用可再生和可再生等量的能源。虽然应用仍然持挑战,但径向流入涡轮机(RJT)用于ORC植物尺寸的宇宙尺寸尺寸很有希望。事实上,经济限制施加的单级布置并因此具有大的膨胀比,以及具有有机流体的大分子量,通常会导致高度超声波流动,因此使用跨音定子通常是强制性的。特别是,在公开的文献中仍然几乎没有解决rit定子设计参数对损耗的影响和后续转子看到的不稳定性水平。提交人的以前的工作研究了一些定子设计参数对定子损耗和下游圆周均匀性的影响。本作者研究了会聚分发定子设计参数的效果和所得到的下游流场在兽人径向流入涡轮机中的不稳定定子 - 转子相互作用和丢失产生上的效果。在该端,通过3D不稳定的CFD计算已经通过3D不稳定的CFD计算来测试两个定子和转子配置,该定子设计参数(即,排出金属角度和叶片的数量)进行了测试,用于占真实气体特性。结果表明,具有较高叶片计数和下出口金属的情况的情况下存在较大的定子转子相互作用,其还具有在叶片上的电力输出和压力力的最大波动,以及基本上更低的平均总静态效率。

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