燃气轮机进气冷却技术综述

Odila C. C. E, Saturday E. G, Ebieto C. E
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摘要

燃气轮机(GT)的性能主要取决于进气温度。燃气轮机的输出功率取决于通过燃气轮机的质量流量。这就是为什么在空气密度较小的炎热天气,输出功率下降,而在空气密度较大的寒冷天气,输出功率上升的原因。进气冷却(IAC)技术是提高燃气轮机性能的主要驱动因素之一,特别是在炎热天气下。燃气轮机的性能受到进气冷却、燃料类型、燃料热值、空气温度、涡轮进气温度、湿度、场地标高、进排气损失、抽气、稀释剂喷射、性能退化等多种因素的影响。本技术综述的目的是对不同的燃气轮机进气冷却技术及其在气候条件下的应用进行比较分析。由于进气冷却引起的功率消耗引起了主要关注,因为它降低了GT的净功率输出。不同的GTIAC有其独特的优势和挑战。蒸发冷却的最大好处是在炎热、低湿度的气候条件下实现的。此外,回顾论文表明,蒸发冷却器的效率主要取决于空气中存在的水分。研究还表明,每个GTIAC应用的可行性基本上取决于位置。
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A review of gas turbine inlet cooling technologies
Gas turbine (GT) performance is primarily dependent on the inlet air temperature. The power output of gas turbine is dependent on the flow of mass through the gas turbine. This is why at hot weathers with less dense air, the power output drops, but at cold weather with high dense air, the power output rises. The inlet air cooling (IAC) technology is one of the major drivers that enhance the gas turbine performance, especially during the hot weathers. The performance of gas turbine is affected by various factors such as inlet air cooling, fuel type, fuel heating value, air temperature, turbine inlet temperature, humidity, site elevation, inlet and exhaust losses, air extraction, diluent injection, performance degradation, etc. The aim of this technical review is based on the comparative analysis of different gas turbine inlet air cooling (GTIAC) technologies and its applications based on the climate conditions. The power consumption due to inlet air cooling calls for major concern since it reduces the GT net power output. Different GTIAC has its unique benefits and challenges. The biggest gains from evaporative cooling are achieved during hot, low-humidity climates. Furthermore, the review paper showed that the efficiency of the evaporative cooler is majorly dependent on the moisture present in the air. The work also reveals that the feasibility of each GTIAC application is basically dependent on the location.
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