燃烧室热斑周向位置对TCF结构影响的数值研究

R. Benauer, S. Schreck, P. Leitl, Ena Badžek, M. Patinios, Federica Farisco
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引用次数: 0

摘要

这项工作介绍了在一个项目框架内进行的数值研究的结果,该项目的重点是研究燃烧室热纹对TCF代表性几何形状的气动性能的影响。为了确定流场的变化及其对下游部件的影响,研究了高压涡轮(HPT)定子叶片前缘热斑的不同周向位置。数值研究是在Bionic Surface Technologies GmbH使用商用工具ANSYS CFX进行的。通过瞬态模拟获得了流场,并捕捉了热斑通过高温高压段进入TCF的传播过程。在德国格拉茨工业大学跨音速涡轮试验装置(TTTF)上采集的时间平均五孔探头测量值作为模拟的初始边界条件。结果表明,热条纹的周向位置影响了TCF出口处的温度分布,因为热条纹跟随流体在TCF内的迁移,因此受到流体与HPT和TCF支板相互作用产生的二次流结构的影响。结果还表明,对于热条纹模拟,压力损失的增加低于1%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Numerical Study on the Effects of Circumferential Positions of Combustor Hot Streaks on a TCF Configuration
This work presents the results of numerical investigations conducted within the framework of a project focused on studying the influence of combustor hot streaks onto the aerodynamic performance of a TCF representative geometry. Different circumferential positions of the hot streaks, in respect to the leading edges of the high pressure turbine (HPT) stator vanes, were examined in order to determine changes in the flow field and its influence on the downstream components. Numerical investigations were carried out at Bionic Surface Technologies GmbH using the commercial tool ANSYS CFX. Transient simulations were performed to obtain the flow-field and capture the propagation of the hot streaks through the HPT stage into the TCF. Time averaged five-hole-probe measurements, taken from the TU Graz transonic test turbine facility (TTTF), were used as the initial boundary conditions for the simulations. Results are showing that the circumferential position of the hot streaks influences the temperature distribution at the TCF outlet since the hot streaks follow the fluid migration in the TCF, and are therefore affected by secondary flow structures originating from the fluid interaction with the HPT and TCF struts. Results also present an increase of pressure loss below 1%, for the hot streaks simulations.
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