Transport of Swirling Entropy Waves through an Axial Turbine Stator

IF 1.3 Q2 ENGINEERING, AEROSPACE International Journal of Turbomachinery, Propulsion and Power Pub Date : 2021-11-26 DOI:10.3390/ijtpp6040045
A. Notaristefano, P. Gaetani
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引用次数: 1

Abstract

The transport of entropy waves and their impact on the stage aerodynamics are still open questions. This paper shows the results of an experimental campaign that focuses on the swirling entropy waves advection through an axial turbine stator. The research aims at quantifying the aerodynamic impact of the swirling entropy waves on the first nozzle and characterizing their transport. The disturbance is generated by a novel entropy wave generator that ensures a wide set of different injection parameters. The device injects the disturbance axially, four different clocking positions are investigated. Measurements show a severe temperature attenuation of the swirling entropy wave at stator outlet. The high temperature location changes with the injection position as a result of the different interaction with the stator secondary flows. Depending on the injection position, the aerodynamic flow field is strongly perturbed by the injected swirl profile, instead the entropy wave effect is negligible.
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涡流熵波通过轴向涡轮定子的传输
熵波的传输及其对舞台空气动力学的影响仍然是悬而未决的问题。本文展示了一项实验活动的结果,该活动侧重于涡旋熵波通过轴向涡轮机定子的平流。该研究旨在量化涡流熵波对第一个喷嘴的空气动力学影响,并表征其传输特性。扰动由一种新型的熵波发生器产生,该发生器确保了一组广泛的不同注入参数。该装置轴向注入扰动,研究了四种不同的计时位置。测量结果表明,定子出口处的涡流熵波具有严重的温度衰减。由于与定子二次流的不同相互作用,高温位置随喷射位置而变化。根据喷射位置的不同,空气动力学流场受到喷射涡流轮廓的强烈扰动,而熵波效应可以忽略不计。
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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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