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GAS TURBINE POWER AUGMENTATION - PARAMETRIC STUDY RELATING TO FOG DROPLET SIZE AND ITS INFLUENCE ON EVAPORATIVE EFFICIENCY

机译:燃气轮机功率增强-与雾滴尺寸有关的参数研究及其对蒸发效率的影响

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Several gas turbine power augmentation techniques are available to counter the detrimental drop in power and thermal efficiency that occur at high ambient temperatures. Inlet fogging and wet compression are two common and relatively simple techniques. This paper addresses the influence and importance of droplet size on evaporative cooling performance and efficiency. Common spray nozzles used for inlet fogging and wet compression are the impaction pin, swirl jet, air assisted, and swirl flash nozzles. The atomization process from these nozzles and their performance depends on the droplet size, size distribution, and spray plume shape. Droplets size varies with nozzle types, configurations, operating conditions, and nozzle manifold location in the gas turbine inlet duct as they are affected by airflow velocity, residence time coalescence effects, evaporation efficiency, and water carryover. The proper selection of nozzle type and location and nozzle distribution are of importance to avoid large droplets and under/over saturated areas which would affect compressor mechanical and aerodynamic efficiency. Analytical and numerical studies are compared to experimental results available from installed systems, and treated in the literature. This paper provides a comprehensive treatment of parameters affecting droplet size and will be of value to gas turbine fog system designers and users.
机译:有几种燃气轮机功率增强技术可用来应对在高环境温度下出现的功率和热效率的不利下降。进气雾化和湿压缩是两种常见且相对简单的技术。本文探讨了液滴尺寸对蒸发冷却性能和效率的影响和重要性。用于入口雾化和湿压缩的常见喷嘴是撞针,旋流喷嘴,空气辅助喷嘴和旋流闪光喷嘴。这些喷嘴的雾化过程及其性能取决于液滴尺寸,尺寸分布和喷雾羽状。液滴的大小会随喷嘴类型,配置,运行条件​​以及喷嘴在燃气轮机进气管道中的位置而变化,因为它们会受到气流速度,停留时间的聚结效应,蒸发效率和水残留的影响。正确选择喷嘴类型和位置以及喷嘴分布对于避免大液滴和饱和区域以下/上方至关重要,因为这会影响压缩机的机械和空气动力效率。将分析和数值研究与可从已安装系统获得的实验结果进行比较,并在文献中进行了处理。本文提供了影响液滴尺寸的参数的综合处理方法,对燃气轮机雾系统的设计者和用户具有参考价值。

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