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Water spray spatial distribution by novel optical measurement for cooling suction air of gas turbine and its influence on cooling performance

机译:喷水空间分布通过新型光学测量冷却燃气轮机吸入空气及其对冷却性能的影响

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摘要

Air cooling performance and water spray characteristics are experimentally evaluated to obtain the basic knowledge for the suction air cooling of power plant. Novel optical measurement technique is proposed for measuring spatial number density of water droplet and water quantity in the air flow. The technique is based on Lambert-Beer law. An attenuation rate of the power of a laser beam passing through the mist flow is measured and the number of droplets is evaluated. Characteristics of the water spray are also evaluated by a phase Doppler anemometer (PDA). The data are compared with cooling performance. All experiments are tested in a wind tunnel with 1m x 1m square shape and 2 m in length. Mean velocity of main flow is set at 2 m/s, temperature at inlet of wind tunnel is set at 33 degree Celsius. Humidity of the inlet air is varied from 60 % to 90 %. The results show that the cooling efficiency by the water spray is depended on the water droplet diameter and humidity. The PDA data and the cooling efficiency are well correlated. The proposed method can present the data related with the droplet number and quantity.
机译:通过实验评估空气冷却性能和水喷雾特性,以获得发电厂吸入空气冷却的基本知识。提出了一种用于测量空气流量的水滴空间密度和水量的新型光学测量技术。该技术基于Lambert-Beer Law。测量通过雾流的激光束功率的衰减率,并评估液滴的数量。水喷雾的特性也通过相位多普勒风速计(PDA)评估。将数据与冷却性能进行比较。所有实验均在风洞中测试,具有1m×1M平方形状,长度为2米。主流的平均速度设定为2米/秒,风隧道入口温度设定为33摄氏度。入口空气的湿度从60%变化至90%。结果表明,水喷雾的冷却效率取决于水滴直径和湿度。 PDA数据和冷却效率良好相关。所提出的方法可以呈现与液滴数和数量有关的数据。

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