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Water ingestion effects on gas turbine engine performance

机译:水摄入对燃气涡轮发动机性能的影响

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摘要

Although gas turbine engines are designed to use dry air as the working fluid, the great demand over the last decades for air travel at several altitudes and speeds has increased aircraft’s exposure to inclement weather conditions. Although, they are required to perform safely under the effect of various meteorological phenomena, in which air entering the engine contains water, several incidents have been reported to the aviation authorities about power loss during flight at inclement weather. It was understood that the rain ingestion into a gas turbine engine influences the performance of the engine and particular the compressor and the combustor. The effects of water ingestion on gas turbine engines are aerodynamic, thermodynamic and mechanical. These effects occur simultaneously and affect each other. Considering the above effects and the fact that they are timedependent, there are few gas turbine performance simulation tools, which take into account the water ingestion phenomenon. This study is a new research of investigating theoretically the water ingestion effects on a gas turbine performance. It focuses on the aerodynamic and mechanical effects of the phenomenon on the compressor and the combustor. The application of Computational Fluid Dynamics (CFD) is the basic methodology to examine the details of the flow in an axial compressor and how it is affected by the presence of water. The calculations of water film thickness, which is formed on the rotor blade, its motion (direction and speed) and the extra torque demand, are provided by a code created by the author using FORTRAN programming language. Considering the change in blade’s profile and the wavy characteristics of the liquid film, the compressor’s performance deterioration is calculated. The compressor and combustor’s deterioration data are imported to a gas turbine simulation code, which is upgraded to calculate overall engine’s performance deterioration. The results show a considerable alteration in engine’s performance parameters and arrive at the same conclusions with the relevant experimental observations.
机译:尽管燃气涡轮发动机被设计为使用干燥的空气作为工作流体,但是在过去的几十年中,在几种高度和速度下进行空中旅行的巨大需求增加了飞机在恶劣天气条件下的承受能力。尽管要求它们在各种气象现象的影响下安全运行,其中进入发动机的空气中含有水,但已向航空当局报告了几起有关恶劣天气下飞行过程中动力损失的事件。可以理解,雨水摄入到燃气涡轮发动机中会影响发动机的性能,特别是压缩机和燃烧室的性能。进气对燃气涡轮发动机的影响是空气动力学,热力学和机械方面的。这些影响同时发生并相互影响。考虑到上述影响以及它们与时间有关的事实,很少有燃气轮机性能模拟工具考虑到水的摄入现象。这项研究是一项新的研究,从理论上研究了水摄入对燃气轮机性能的影响。它着重研究了该现象对压缩机和燃烧室的空气动力学和机械影响。计算流体动力学(CFD)的应用是检查轴流式压缩机中流的细节以及水的存在如何影响流的基本方法。作者使用FORTRAN编程语言创建的代码提供了对形成在转子叶片上的水膜厚度,其运动(方向和速度)以及额外扭矩需求的计算。考虑到叶片轮廓的变化和液膜的波动特性,可以计算出压缩机的性能下降。压缩机和燃烧室的退化数据被导入到燃气轮机模拟代码中,该代码进行了升级以计算整个发动机的性能退化。结果表明,发动机的性能参数发生了相当大的变化,并且与相关的实验观察得出了相同的结论。

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