期刊论文详细信息
Journal of Thermal Science and Technology
Effect of change factors on evaporation loss based on cold end system in natural draft counter-flow wet cooling towers
Xuehong CHEN1  Ying LI1  Wei YUAN1  Fengzhong SUN1  Ruqing LIU1 
[1] School of Energy and Power Engineering, Shandong University;
关键词: natural draft counter-flow wet cooling towers;    mathematical method;    evaporation loss;    circulating water volume;    air parameters;    cold end system;   
DOI  :  10.1299/jtst.2021jtst0015
来源: DOAJ
【 摘 要 】

The water loss caused by evaporation heat dissipation is non-negligible for a natural draft counter-flow wet cooling tower (NDWCT), which is evidently influenced by many change factors. Based on Merkel method, the Merkel number is revised in consideration of the effect of water loss. Taking the NDWCTs equipped for 300MW and 600MW power plants as experimental objects, a mathematical model is established for predicting the evaporation loss of the NDWCT. The accuracy of the model is verified by experimental data, and the mathematical model for predicting evaporation loss is feasible. Then, the effect of change factors, including mass flow rate of circulating water and air parameters, on the tower evaporation loss is studied in the case of fixed the thermal load dissipated by the condenser. Results show that the evaporation loss varies little with the change of mass flow rate of circulating water. Therefore, Water conservation cannot be achieved by changing mass flow rate. With the increase of dry bulb temperature, the evaporation loss, as well as the rate of evaporation loss caused by unit temperature drop increases. As the relative air humidity increases, the NDWCT outlet water temperature increases, whereas the evaporation loss and the rate of evaporation loss caused by unit temperature difference decrease.

【 授权许可】

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