Numerical Simulation of the Performance of a Twin Scroll Radial Turbine at Different Operating Conditions

IF 0.9 Q4 ENGINEERING, MECHANICAL International Journal of Rotating Machinery Pub Date : 2019-06-02 DOI:10.1155/2019/5302145
C. Cravero, D. De Domenico, A. Ottonello
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引用次数: 6

Abstract

Twin scroll radial turbines are increasingly used for turbocharging applications, to take advantage of the pulsating exhaust gases. In spite of its relevance in turbocharging techniques, scientific literature about CFD applied to twin scroll turbines is limited, especially in case of partial admission. In the present paper a CFD complete model of a twin scroll radial turbine is developed in order to give a contribution to literature in understanding the capabilities of current industrial CFD approaches applied to these difficult cases and to develop performance index that can be used for turbine design optimization purposes. The flow solution is obtained by means of ANSYS CFX ® in a wide range of operating conditions in full and partial admission cases. The total-to-static efficiency and the mass flow parameter (MFP) have been calculated and compared with the experimental database in order to validate the numerical model. The purpose of the developed procedure is also to generate a database for twin scroll turbines useful for future applications. A comparison between performances obtained in different admission conditions was performed. In particular the analysis focused on the characterization of the flow at volute outlet/rotor inlet section. A flow distortion index at rotor inlet was introduced to correlate the turbine performance and the flow nonuniformities generated by the volute. Finally the influence of the backside cavity on the performance parameters is also discussed. The introduction of these new nonuniformity indices is proposed for volute design and optimization procedures.
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双涡旋径向透平不同工况性能的数值模拟
双涡旋径向涡轮越来越多地用于涡轮增压应用,以利用脉动废气。尽管CFD与涡轮增压技术相关,但有关双涡旋涡轮的CFD应用的科学文献有限,特别是在部分进气的情况下。本文建立了双涡旋径向涡轮的CFD完整模型,以帮助理解当前工业CFD方法在这些困难情况下的应用能力,并开发可用于涡轮设计优化目的的性能指标。通过ANSYS CFX®在广泛的操作条件下,在完全和部分进入情况下获得流动解决方案。为了验证数值模型的有效性,计算了总静态效率和质量流量参数(MFP),并与实验数据库进行了比较。开发程序的目的还在于为将来的应用生成一个有用的双涡旋涡轮机数据库。比较了在不同准入条件下获得的性能。重点分析了蜗壳出口/转子进口段的流动特性。引入转子进口流动畸变指数,将涡轮性能与蜗壳产生的流动不均匀性联系起来。最后还讨论了后腔对性能参数的影响。建议在蜗壳设计和优化过程中引入这些新的非均匀性指标。
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来源期刊
CiteScore
2.40
自引率
0.00%
发文量
10
审稿时长
25 weeks
期刊介绍: This comprehensive journal provides the latest information on rotating machines and machine elements. This technology has become essential to many industrial processes, including gas-, steam-, water-, or wind-driven turbines at power generation systems, and in food processing, automobile and airplane engines, heating, refrigeration, air conditioning, and chemical or petroleum refining. In spite of the importance of rotating machinery and the huge financial resources involved in the industry, only a few publications distribute research and development information on the prime movers. This journal is the first source to combine the technology, as it applies to all of these specialties, previously scattered throughout literature.
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