Seasonal performance research of heat-source tower systems using different work materials

Author:

Mao Yifan1,Li Yongcun1ORCID,Wen Xiantai2,Yuan Xiaolei3,Wu Zhaofan1

Affiliation:

1. Hunan University of Science and Technology School of Civil Engineering, , Yuhu District, Zhicheng Road, Xiangtan 411201, China

2. Nanjing Institute of Technology School of Energy and Power Engineering, , 1 Hongjing Avenue, Nanjing 211167, China

3. Aalto University Department of Mechanical Engineering, , Otakaari 24, 02150 Espoo, Finland

Abstract

Abstract The heat-source tower system has been evaluated in an enthalpy difference laboratory. This study analyzes the seasonal performance under various operating situations and fluid quality. In the summer and fall seasons, water is used as the circulating fluid in the tower. In the spring and winter seasons, glycol solution is used as the circulating fluid. Some parameters of the heat-source tower (e.g. the temperature of the solution inlet and outlet, the flow rate of the solution inlet and outlet, the temperature of the air inlet and outlet, the inlet air volume and the moisture content of the inlet air) are considered and measured to obtain its heat transfer characteristics. The simulation model of heat-source tower is constructed based on the mechanism of heat and mass transfer. This model is validated by the experimental results. The heat exchange and latent heat exchange of the system are analyzed under different parameters, as well as the variation law of inlet and outlet temperature and moisture content differences. The results show that the system has solution moisture absorption during winter operation. However, for every 9000 m3/h increase in air volume, the rate of solution dilution decreases between 9 and 43%. The rate of solution dilution is reduced by 11–31% for every 1°C in addition to the inlet solution temperature. Meanwhile, the heat dissipation in summer is about 2.8 times of the heat dissipation in winter.

Funder

Natural Science Foundation of Hunan Province

Publisher

Oxford University Press (OUP)

Reference33 articles.

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