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EFFECT OF WATER TEMPERATURE ON THE PERFORMANCE OF GAS TURBINE INLET AIR-FOGGING SYSTEMS

机译:水温对燃气轮机进气排风系统性能的影响

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With more than 1000 fogging systems installed worldwide on a wide range of gas turbines of different types, gas turbine inlet air fogging systems have become a well-established technology used to increase gas turbines power output. The major benefit of spraying fog droplets in the inlet airflow of the gas turbines is to increase the density of the air entering the gas turbine by evaporative cooling in the inlet air stream. Significant amount of research has been carried out to improve the efficiency of fogging systems. However, the effect of water temperature on the overall efficiency of a fogging system has yet to be addressed. In this paper, a detailed analysis of this effect will be presented, both from an experimental and a theoretical view point. Due to the small size of the droplets used in this application, the temperature of the droplet converges quickly to the wet bulb temperature, regardless of the initial water temperature. The rapidity at which this convergence occurs depends on the initial droplet size, the water temperature, the air mass flow to mass of injected water ratio, and the ambient psychrometric conditions of the surrounding air. The present study was carried out using water temperatures between 1 °C and 60 °C. Results showed that the water temperature has no significant effect on the droplet size. However, within the range of droplet sizes atomized from nozzles installed in the fogging system, using cold water provides a marginal benefit on the cooling efficiency; using hot water, on the other hand, slightly increases the evaporation efficiency.
机译:全世界在各种不同类型的燃气轮机上安装了1000多个雾化系统,因此燃气轮机进气雾化系统已成为一种成熟的技术,用于增加燃气轮机的功率输出。在燃气轮机的进气流中喷射雾滴的主要好处是通过进气流中的蒸发冷却来增加进入燃气轮机的空气的密度。为了提高雾化系统的效率,已经进行了大量研究。但是,水温对雾化系统整体效率的影响尚待解决。在本文中,将从实验和理论角度对这种效果进行详细分析。由于在此应用中使用的液滴尺寸很小,因此不管初始水温如何,液滴的温度都会迅速收敛到湿球温度。收敛的速度取决于初始液滴尺寸,水温,空气质量流量与注入水质量之比以及周围空气的环境湿度条件。本研究是使用1°C至60°C的水温进行的。结果表明,水温对液滴尺寸没有显着影响。但是,在从安装在雾化系统中的喷嘴雾化的雾滴尺寸范围内,使用冷水对冷却效率有微不足道的好处。另一方面,使用热水稍微增加了蒸发效率。

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