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Particle Image Velocimetry (PIV) Investigation of Blade and Purge Flow Impacts on Inter-Stage Flow Field in a Research Turbine

机译:粒子图像速度(PIV)叶片的研究和吹扫流动影响研究涡轮机中的阶段流动场

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摘要

Flow field in the inter-stage is of great importance to jet engine turbine performance and efficiency. Investigation of flow fields is limited by the complex geometrical structure. Traditional measurement techniques, such as hot wire, pressure probe and laser Doppler velocimetry (LDV) can hardly obtain a planar information of the flow field simultaneously. To overcome this difficulty, an instantaneous planar velocimetry technique, the particle image velocimetry (PIV) technique is widely employed. However, there is no publication that studied the detailed flow field by PIV in a turbine inter-stage with the consideration of the influence of rotor blade and purge flow. This paper presents a quasi-three dimensional perspective of flow field between inlet guide vane (IGV) and rotor blade in a research turbine inter-stage by using a 2D PIV system. Coherent structures in the flow field are extracted by the proper orthogonal decomposition (POD) method. Time-averaged results show the ellipsoid structures caused by secondary flow in the inter-stage. Rotor blade influence to axial and radial flow is evaluated by time-averaged data and the first order POD mode. Egress of purge flow (9.4% of main annulus flow rate) leads to a domain with 60% axial velocity loss near hub and a growth over three times in radial velocity. POD analysis of purge flow shows detailed flow migration in the whole measurement plane.
机译:流动场在阶段的流场非常重视喷射发动机涡轮机性能和效率。流场的调查受复杂的几何结构的限制。传统的测量技术,例如热线,压力探针和激光多普勒速度(LDV)可以同时获得流场的平面信息。为了克服这种困难,广泛采用瞬时平面速度技术,粒子图像速度(PIV)技术。然而,没有考虑转子叶片和吹扫流动的影响,没有出版物通过PIV在涡轮机间阶段进行了详细的流场。本文通过使用2D PIV系统介绍了在研究涡轮机中的入口导向叶片(IGV)和转子叶片之间的流场的准三维透视。通过适当的正交分解(POD)方法提取流场中的相干结构。时间平均结果显示由阶段中的二次流动引起的椭球结构。转子叶片对轴向和径向流动的影响通过时间平均数据和第一阶POD模式进行评估。吹扫流量(9.4%的主要环形流量)导致毂沿枢轴附近具有60%轴向速度损失的域,并且径向速度的增长率为三倍。 POD吹扫流程分析显示了整个测量平面中的详细流动迁移。

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  • 作者

    Zhenyang Zhang; Hongwei Ma;

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  • 年度 2019
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  • 原文格式 PDF
  • 正文语种 eng
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