首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Inlet Fogging of Gas Turbine Engines: Climatic Analysis of Gas Turbine Evaporative Cooling Potential of International Locations
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Inlet Fogging of Gas Turbine Engines: Climatic Analysis of Gas Turbine Evaporative Cooling Potential of International Locations

机译:燃气轮机进气雾化:国际场所燃气轮机蒸发冷却潜能的气候分析

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Inlet fogging of gas turbine engines has attained considerable popularity due to the ease of installation and the relatively low first cost compared to other inlet cooling methods. With increasing demand for power and with shortages envisioned especially during the peak load times during the summers, there is a need to boost gas turbine power. There is a sizable evaporative cooling potential throughout the world when the climatic data is evaluated based on an analysis of coincident wet bulb and dry bulb information. These data are not readily available to plant users. In this paper, a detailed climatic analysis is made of 106 major locations over the world to provide the hours of cooling that can be obtained by direct evaporative cooling. This data will allow gas turbine operators to easily make an assessment of the economics of evaporative fogging. The paper also covers an introduction to direct evaporative cooling and the methodology and data analysis used to derive the cooling potential. Simulation runs have been made for gas turbine simple cycles showing effects of fogging for a GE Frame 7EA and a GE Frame 9FA Gas turbine for 60 and 50 Hz applications.
机译:燃气涡轮发动机的进气雾化由于易于安装和与其他进气冷却方法相比相对较低的第一成本而获得了相当大的普及。随着对电力需求的增加以及特别是在夏季的高峰负荷时间内的短缺的预见,需要增加燃气轮机的电力。根据对湿球和干球信息同时进行的分析来评估气候数据时,全世界存在着相当大的蒸发冷却潜力。这些数据不是工厂用户容易获得的。在本文中,对全球106个主要地点进行了详细的气候分析,以提供通过直接蒸发冷却可获得的冷却时间。该数据将使燃气轮机操作员可以轻松地评估蒸发雾化的经济性。本文还介绍了直接蒸发冷却的介绍以及用于得出冷却潜能的方法和数据分析。对燃气轮机简单循环进行了模拟运行,显示了适用于60 Hz和50 Hz应用的GE Frame 7EA和GE Frame 9FA燃气轮机的起雾作用。

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