首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Inlet Fogging of Gas Turbine Engines—Part Ⅲ: Fog Behavior in Inlet Ducts, Computational Fluid Dynamics Analysis, and Wind Tunnel Experiments
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Inlet Fogging of Gas Turbine Engines—Part Ⅲ: Fog Behavior in Inlet Ducts, Computational Fluid Dynamics Analysis, and Wind Tunnel Experiments

机译:燃气涡轮发动机的进气雾化-第三部分:进气道内的雾气行为,计算流体动力学分析和风洞实验

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摘要

The inlet fogging of gas turbine engines for power augmentation has seen increasing application over the past decade yet not a single technical paper treating the physics and engineering of the fogging process, droplet size measurement, droplet kinetics, or the duct behavior of droplets, from a gas turbine perspective, is available. This paper along with Parts Ⅰ and Ⅱ provides the results of extensive experimental and theoretical studies conducted over several years coupled with practical aspects learned in the implementation of nearly 500 inlet fogging systems on gas turbines ranging in power from 5 to 250 MW. In Part Ⅲ of this paper, the complex behavior of fog droplets in the inlet duct is addressed and experimental results from several wind tunnel studies are covered.
机译:在过去的十年中,用于增强功率的燃气涡轮发动机的进气雾化技术得到了越来越多的应用,但还没有一项技术论文涉及雾化过程的物理和工程,液滴尺寸测量,液滴动力学或液滴的管道行为。燃气轮机的角度,可用。本文以及第Ⅰ部分和第Ⅱ部分提供了经过数年的广泛实验和理论研究的结果,并结合了在功率范围从5到250 MW的燃气轮机上实施近500个进气雾化系统所学到的实践知识。在本文的第三部分中,研究了进气道中雾滴的复杂行为,并涵盖了一些风洞研究的实验结果。

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