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Effect of Aggressive Inlet Swirl on Heat Transfer and Aerodynamics in an Unshrouded Transonic HP Turbine

机译:激进的进气旋流对无遮盖跨音速HP涡轮机传热和空气动力学的影响

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摘要

Swirling flows are now widely being used in modern gas turbine combustors to improve the combustion characteristics, flame stability, and reduce emissions. Residual swirl at the combustor exit will affect the performance of the downstream high-pressure (HP) turbine. In order to perform a detailed investigation of the effect of swirl on a full-scale HP turbine stage, a combustor swirl simulator has been designed and commissioned in the Oxford Turbine Research Facility (OTRF), previously located at QinetiQ, Farnborough UK, as the Turbine Test Facility (TTF). The swirl simulator is capable of generating engine-representative combustor exit swirl distributions at the turbine inlet, with yaw and pitch angles of up to ± 40 deg. The turbine test facility is an engine scale, short duration, rotating transonic turbine facility, which simulates the engine representative M, Re, Tu, nondimensional speed, and gas-to-wall temperature ratio at the turbine inlet. The test turbine is a highly loaded unshrouded design (the MT1 turbine). This paper presents time-averaged experimental heat transfer measurements performed on the rotor casing surface, and on the rotor blade surface at 10%, 50%, and 90% span. Time-averaged rotor casing static pressure measurements are also presented. Experimental measurements with and without inlet swirl are compared. The measurements are discussed with the aid of three-dimensional steady and unsteady CFD simulations of the turbine stage. Numerical simulations were conducted using the Rolls-Royce in-house code HYDRA, with and without inlet swirl.
机译:旋流现在被广泛用于现代燃气轮机燃烧器中,以改善燃烧特性,火焰稳定性并减少排放。燃烧室出口处的残留涡流将影响下游高压(HP)涡轮的性能。为了对旋流在全尺寸HP涡轮级上的影响进行详细的研究,燃烧室旋流模拟器已在牛津涡轮研究设施(OTRF)中设计和调试,该设施以前位于英国范堡罗的QinetiQ。涡轮测试设施(TTF)。涡流模拟器能够在涡轮进口处产生代表发动机的燃烧室出口涡流分布,偏航角和俯仰角最大为±40度。涡轮机测试设备是发动机规模的,短时旋转的跨音速涡轮机设备,可模拟发动机代表的M,Re,Tu,无量纲速度以及涡轮机入口处的燃气壁温比。测试涡轮为高负荷无罩设计(MT1涡轮)。本文介绍了在转子壳体表面和转子叶片表面上以10%,50%和90%的跨度执行的时间平均实验传热测量。还介绍了时间平均转子壳体静压力的测量结果。比较了有和没有进气涡流的实验测量结果。借助涡轮级的三维稳态和非稳态CFD模拟讨论了测量结果。使用内部Rolls-Royce代码HYDRA进行了有或没有进气涡流的数值模拟。

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