Integrated Intelligent Energy ›› 2023, Vol. 45 ›› Issue (4): 81-88.doi: 10.3969/j.issn.2097-0706.2023.04.012

• OTechnology Exploration and Prospect • Previous Articles    

Analysis of heat transfer characteristics and thermal-permeability coupling characteristics of single U-tube borehole heat exchangers

LIU Yuanyuan1(), GENG Zhi1,2,4,*(), ZHANG Yuanfeng2, ZHANG Liang3, HAN Zhao3, ZHANG Bin1   

  1. 1. Huadian Zhengzhou Mechanical Design Institute Company Limited, Zhengzhou 450046, China
    2. School of Aero Engine, Zhengzhou University of Aeronautics, Zhengzhou 450046, China
    3. Shijiazhuang Huadian Heating Supply Group Company Limited, Shijiazhuang 050041, China
    4. Department of Energy and Power Engineering, Tsinghua University, Beijing 100084, China
  • Received:2023-03-24 Revised:2023-04-04 Accepted:2023-04-25 Online:2023-04-25 Published:2023-05-06
  • Contact: GENG Zhi E-mail:liuyuanyuan@chec.com.cn;zhgz@zua.edu.cn
  • Supported by:
    Science and Technology Program of China Huadian Corporation(CHDKJ22-01-23);Young Elite Scientists Sponsorship Program of Henan Province(2022HYTP021);Henan Housing and Urban-Rural Construction Science and Technology Plan(HNJS-2022-K57);Henan Civil Engineering and Architecture Society Supported Program(202102)

Abstract:

To achieve the "dual carbon" target, shallow geothermal energy heating(cooling),a new utilization form of clean energy, has been widely applied. To improve the efficiency of geothermal energy, taking the ground source heat pump of an integrated energy heating(cooling) system in northern China as the research object, a 3D unsteady-state heat transfer model of a single U-tube borehole heat exchanger (BHE)was constructed, and its heat transfer characteristics and coupling characteristics thermal conduction and groundwater seepage were analyzed by the software Fluent. Comparative analyses on the total transfer heat and transfer heat per unit length were made on the BHE with three different spacing distances(4.0,4.5 and 5.0 m) and three different tube lengths(106.0,113.0 and 120.0 m),respectively. The analysis results show that the BHE with 4.0 m spacing distance and 106.0 m tube length demonstrates the optimal performance. Comparing the temperature fields of the BHE with and without seepage flow, the results show that seepage flow exerts positive effect on the BHE heat transfer efficiency, and the faster the seepage flows, the higher the heat transfer efficiency is. The analyses above provide references for the design of practical examples of BHE projects.

Key words: geothermal energy, ground-source heat pump, borehole heat exchanger, heat transfer characteristics, coupling of thermal conduction and groundwater seepage, clean energy, dual carbon

CLC Number: