首页> 外文会议>2003 ASME(American Society of Mechanical Engineers) Turbo Expo; Jun 16-19, 2003; Atlanta, Georgia >THE EFFECTS OF WET COMPRESSION ON GAS TURBINE ENGINE OPERATING PERFORMANCE
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THE EFFECTS OF WET COMPRESSION ON GAS TURBINE ENGINE OPERATING PERFORMANCE

机译:湿压缩对燃气轮机发动机运行性能的影响

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Water, in the liquid or vapor phase, injected at various locations into the gas turbine cycle has frequently been employed to improve engine performance. One such way to improve engine performance is by steam injection, of varied quantity, into the combustor section of the engine. Combustor steam injection increases turbine mass flow rate without increasing airflow rate and consequently increasing the specific power (power/lb_m of air). Another approach, receiving widespread acceptance in recent years, is to inject water droplets into the inlet duct upstream of the engine compressor inlet. As the droplets evaporate, prior to entering the compressor, the inlet air is cooled subsequently decreasing compressor power and thus increasing engine power output. The present paper examines the concept of injecting water droplets, termed fogging, in excess of the amount that can be evaporated before entering the engine compressor. This excess water, termed over-spray, is carried directly into the engine compressor. The computer simulated performance of a simple cycle gas turbine engine using evaporative cooling upstream of the compressor with over-spray is reported. The paper describes an improved simulation model developed to predict compressor performance as water is evaporated while passing through the stages of an axial flow compressor. The effects are similar to those of an intercooled compressor without the compEcations of additional piping, heat exchangers, and the requirement for a dual spool compressor. The results of a parametric study of the effects of evaporative cooling on engine operating characteristics are presented. These results include compressor performance characteristics modified for various inlet conditions (temperature, pressure, and humidity) and fogging conditions (flow rate, over-spray, and water temperature) as well as estimates of the reduced compression work and lowered compressor discharge temperatures. These modified compressor performance characteristics are used in the engine simulation to predict how an over-sprayed engine would perform under various operating conditions. Estimates of increased output power and increased specific power are presented.
机译:在不同位置注入燃气轮机循环的液态或气相的水经常被用来改善发动机性能。一种改善发动机性能的方法是通过将不同量的蒸汽喷射到发动机的燃烧室部分中。燃烧器的蒸汽喷射增加了涡轮机的质量流量,而不增加空气流量,因此也增加了比功率(功率/空气的lb_m)。近年来,被广泛接受的另一种方法是将水滴注入发动机压缩机进气口上游的进气管中。随着液滴的蒸发,在进入压缩机之前,进气被冷却,从而降低了压缩机的功率,从而增加了发动机的功率输出。本文探讨了注入雾气的概念,该雾气的雾化量超过了进入发动机压缩机之前可以蒸发的量。多余的水(称为过喷)直接带入发动机压缩机。报告了计算机模拟的简单循环燃气轮机发动机的性能,该发动机使用过喷技术在压缩机上游进行蒸发冷却。本文介绍了一种改进的仿真模型,该模型可以预测水在流经轴流式压缩机各级时的蒸发情况,从而预测压缩机的性能。效果类似于中冷压缩机,没有附加管道,热交换器和双滑阀压缩机的要求。给出了蒸发冷却对发动机运行特性影响的参数研究结果。这些结果包括针对各种进口条件(温度,压力和湿度)和雾化条件(流速,过喷和水温)修改的压缩机性能特征,以及压缩工作量减少和压缩机排气温度降低的估计值。这些修改的压缩机性能特征在发动机仿真中用于预测在各种工况下过喷发动机的性能。给出了增加的输出功率和增加的比功率的估计。

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