超声速ORC径向入流涡轮定子设计参数对损失及下游流场均匀性的影响

IF 1.3 Q2 ENGINEERING, AEROSPACE
A. Cappiello, R. Tuccillo
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引用次数: 1

摘要

有机朗肯循环(ORC)涡轮机的设计通常需要处理跨音速流动,因为循环效率要求和温度分布与热源和散热器的匹配,以及有机流体的性质,通常具有高分子量。因此,在已发表的文献中,使用会聚-发散涡轮定子已被广泛确立为一种解决方案,用于轴向和径向流入机器。特别是后一种布局,可用的设计指南仍然有限。目前的工作显示了对一系列ORC径向流入会聚发散喷嘴的研究结果,这些喷嘴在叶片数和设计的出口金属角方面有所不同。这些定子是通过将适合于稠密气体的特性法(MoC)设计的锋利边缘最小长度喷嘴的发散部分拟合到径向流入涡轮定子中来设计的。通过稳态RANS CFD计算分析了几何形状,并利用计算结果评估了设计参数对喷嘴损失和下游流场均匀性的影响,结果表明,最优定子效率和最优下游流场均匀性之间存在冲突趋势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design Parameter Influence on Losses and Downstream Flow Field Uniformity in Supersonic ORC Radial-Inflow Turbine Stators
The design of organic Rankine cycle (ORC) turbines often requires dealing with transonic flows due to the cycle efficiency requirements and the matching of the temperature profiles with heat sources and sinks, as well as the nature of organic fluids, often featuring high molecular weight. Consequently, the use of convergent–divergent turbine stators has been widely established as a solution in the published literature for use in both axial- and radial-inflow machines. With respect to the latter layout in particular, the available design guidelines are still limited. The present work shows the results of an investigation into a series of ORC radial-inflow convergent–divergent nozzles that differ with respect to the vane count and the designed metal angle of the outlet. These stators were designed by fitting the divergent portion of a sharp-edged minimum-length nozzle, designed by means of the method of characteristics (MoC) adapted to dense gases, into a radial-inflow turbine stator. The geometries were analysed by means of steady-state RANS CFD calculations, and the results were used to assess the influence of the design parameters on the nozzle losses and downstream flow field uniformity, showing that conflicting trends exist between optimum stator efficiency and optimum downstream flow field uniformity.
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来源期刊
CiteScore
2.30
自引率
21.40%
发文量
29
审稿时长
11 weeks
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