华电技术 ›› 2020, Vol. 42 ›› Issue (11): 44-50.

• 中低温热能利用 • 上一篇    下一篇

太阳能跨季节储热供热系统性能研究

  

  1. 1. 河北工业大学 河北省热科学与能源清洁利用技术重点实验室,天津 300401;2. 怀安县住房和 城乡建设局,河北 怀安 076150
  • 出版日期:2020-11-25 发布日期:2020-12-07

Study on the performance of a solar seasonal heat-storage and heating system

  1. 1.Key Laboratory of Thermal Science and Energy Clean Utilization Technology in Hebei Province, Hebei University of Technology,Tianjin 300401,China;2.Huaian Housing and Urban-Rural Development Bureau,Huaian 076150,China
  • Online:2020-11-25 Published:2020-12-07

摘要: 为促进太阳能跨季节储热供热(SSSH)系统在严寒地区的推广应用,以张家口市某严寒地区办公楼为研究 对象,结合试验和 TRNSYS 动态仿真软件对集热(储热)启/停控制条件、供热性能和地温变化等进行了研究。试验 结果表明,集热启/停温差增大,集热效率降低;储热启动温度升高,集热效率和储热效率均下降。模拟预测结果表 明,随着集热(储热)启动温度、停止温度或启停温差的增大,集热(储热)效率均会降低,而集热(储热)循环能效比 会增大。储热启动温度平均每升高 1 ℃,集热效率和储热效率平均下降 0.7% 和 0.3%;集热启/停温差每增大 1 ℃,集 热效率平均下降 1.7%,而集热循环能效比增加 2.0%。供热季热泵机组性能系数和系统性能系数分别为 3.4 和 3.1; 地温初始值为 6.12 ℃,经过储热—供热完整循环,最终值为 6.91 ℃,满足系统长期稳定运行要求。

关键词: 地源热泵, 太阳能, 清洁供热, 跨季节储热, 运行性能, TRNSYS, 储热效率, 集热效率, 地温

Abstract: A solar seasonal heat storage and heating (SSSH) system for an office building in a severe cold area of Zhangjiakou is studied,to promote the application of SSSH system. The start/stop control conditions of heat collection (heat storage),heating performance and ground temperature variation are analyzed by taking experiments and TRNSYS dynamic simulation. The experiment results show that the heat collection efficiency decreases with the increase of the start/ stop temperature difference,and the heat collection efficiency and storage efficiency decrease with the increase of start-up temperature of heat storage. The simulation results show that with the increase of start-up temperature,stop temperature or start /stop temperature difference of heat collection and the heat collection(heat storage)efficiency will decrease,while energy efficiency ratio of heat collection(heat storage)cycle will increase. Every 1 ℃ increase of heat storage starting temperature will lead to a 0.7% decrease and a 0.3% decrease in heat collection and heat storage efficiencies on average. And every 1 ℃ increase of the start/stop temperature difference will reduce the heat collection efficiency by 1.7%,while increase the energy efficiency ratio of heat collection cycle by 2.0%. The COP of the heat pump and the system are 3.4 and 3.1 in heating seasons,respectively. Completing the cycle of heat storage and heating,the ground temperature rises from 6.12 ℃ to 6.91 ℃,which meets the requirements of long-term stable operation of the system.

Key words: GSHP, solar energy, clean heating, heat storage across seasons, operating performance, TRNSYS, storage efficiency, heat collection efficiency, ground temperature