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Optimal Aerodynamic Design of a Transonic Centrifugal Turbine Stage for Organic Rankine Cycle Applications

机译:用于有机朗肯循环应用的跨音速离心式涡轮级的最佳空气动力学设计

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摘要

This paper presents the results of the application of a shape-optimization technique to the design of the stator and the rotor of a centrifugal turbine conceived for Organic Rankine Cycle (ORC) applications. Centrifugal turbines have the potential to compete with axial or radial-inflow turbines in a relevant range of applications, and are now receiving scientific as well as industrial recognition. However, the non-conventional character of the centrifugal turbine layout, combined with the typical effects induced by the use of organic fluids, leads to challenging design difficulties. For this reason, the design of optimal blades for centrifugal ORC turbines demands the application of high-fidelity computational tools. In this work, the optimal aerodynamic design is achieved by applying a non-intrusive, gradient-free, CFD-based method implemented in the in-house software FORMA (Fluid-dynamic Opti-mizeR for turboMachinery Aerofoils), specifically developed for the shape optimization of turbomachinery profiles. FORMA was applied to optimize the shape of the stator and the rotor of a transonic centrifugal turbine stage, which exhibits a significant radial effect, high aerodynamic loading, and severe non-ideal gas effects. The optimization of the single blade rows allows improving considerably the stage performance, with respect to a baseline geometric configuration constructed with classical aerodynamic methods. Furthermore, time-resolved simulations of the coupled stator-rotor configuration shows that the optimization allows to reduce considerably the unsteady stator-rotor interaction and, thus, the aerodynamic forcing acting on the blades.
机译:本文介绍了将形状优化技术应用于设计用于有机朗肯循环(ORC)的离心式涡轮机的定子和转子的设计结果。离心式涡轮机具有在相关应用范围内与轴向或径向流入式涡轮机竞争的潜力,并且现在正获得科学和工业认可。但是,离心式涡轮机布局的非常规特征,再加上有机流体的使用所引起的典型效果,导致了设计难题。因此,用于离心式ORC涡轮机的最佳叶片的设计要求使用高保真计算工具。在这项工作中,通过应用在内部软件FORMA(用于涡轮机翼型的流体动力学Opti-mizeR)中实现的非侵入性,无梯度,基于CFD的方法来实现最佳的空气动力学设计,该软件专门针对形状而开发优化涡轮机械轮廓。 FORMA用于优化跨音速离心式涡轮机级的定子和转子的形状,该形状具有显着的径向效应,高气动载荷和严重的非理想气体效应。单桨叶排的优化相对于用经典空气动力学方法构造的基线几何构型,可以大大提高平台性能。此外,定子-转子耦合结构的时间分辨仿真表明,该优化可以大大减少定子-转子之间的不稳定相互作用,从而减少作用在叶片上的空气动力。

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