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Experimental investigation of pressurized packing saturator for humid air turbine cycle

机译:湿式空气透平循环用加压填料饱和器的试验研究

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摘要

Humid air turbine (HAT) cycle is an advanced power generation system, and its efficiency and output power are improved by humidifying the compressed air. This humidification process is completed in the saturator. Therefore, the humidifying performance of saturator has great influence on the performance of HAT cycle. In this work, a new type packing saturator was designed and a series of experiments were carried out to study its humidifying performance. In order to improve the uniformity of the saturator inlet, a twin-tangential annular flow gas distributor was designed. Then it was authorized by China invention patents (ZL201010200778.9). Now, the mal-distribution factor of inlet air is mainly between 0.15 and 0.35 in all experimental conditions. Some key parameters of air and water at the inlet and outlet of saturator were measured at different experimental conditions. These results show the outlet humid air temperature is an important parameter for determining the humidifying amount of the saturator. The humidifying performance of the saturator is mainly affected by the inlet water temperature and the liquid/gas (L/G) ratio. At the same operating pressure, the humidity ratio of outlet humid air increases with inlet water temperature and L/G ratio. At higher inlet water temperature, the L/G ratio has a greater effect on the humidity ratio of outlet humid air. The outlet water temperature is mainly affected by the inlet gas temperature. With the increasing of inlet air temperature, the outlet water temperature increases, and it is close to the wet-bulb temperature of inlet air.
机译:湿式空气涡轮机(HAT)循环是一种先进的发电系统,通过对压缩空气进行加湿来提高其效率和输出功率。加湿过程在饱和器中完成。因此,饱和器的加湿性能对HAT循环的性能影响很大。在这项工作中,设计了一种新型的填料饱和器,并进行了一系列实验以研究其加湿性能。为了提高饱和器入口的均匀性,设计了双切向环形流气体分配器。然后它获得了中国发明专利授权(ZL201010200778.9)。现在,在所有实验条件下,进气的分配不均主要在0.15和0.35之间。在不同的实验条件下,测量了饱和器入口和出口的空气和水的一些关键参数。这些结果表明,出口湿空气温度是确定饱和器加湿量的重要参数。饱和器的加湿性能主要受进水温度和液/气(L / G)比的影响。在相同的工作压力下,出口湿空气的湿度比随入口水温和L / G比的增加而增加。在较高的进水温度下,L / G比对出口湿空气的湿度比影响更大。出口水温主要受进气温度影响。随着进风温度的升高,出水温度升高,接近进风的湿球温度。

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