Effect of heat and mass transfer related parameters on the performance of deep borehole heat exchangers

被引:3
作者
Lund, Andreas E. D. [1 ]
机构
[1] Aalto Univ, Dept Elect Engn & Automat, FI-00076 Espoo, Finland
关键词
Deep borehole exchanger; Geothermal heat; Heat pump; Heat transfer; Mass transfer; Sector coupling; SYSTEMS; STORAGE;
D O I
10.1016/j.applthermaleng.2024.123764
中图分类号
O414.1 [热力学];
学科分类号
摘要
Deep borehole heat exchangers (DBHE) are a highly potential clean heat source. Using 3-D numerical simulations, a comprehensive analysis on the effect of design parameters and geological conditions for 1-3 km deep DBHEs were undertaken. Key parameters included the inner and outer pipe diameter of the well, insulation between them, borehole depth, mass flow rate, and thermal conductivity and geothermal temperature gradient of ground. The whole heating system performance with the DBHE, heat pump, and circulation-pump-unit of the well was also analyzed. The results show that the performance of the well is strongly influenced by its design and mass flow rate with increasing well depth. For a 1 km to 3 km DBHE, the thermal output ranges from 46 kW to 240 kW at steady state in Scandinavian conditions. A smaller inner pipe in the well could increase the output by 7-11 % compared to a larger pipe, but a higher mass flow rate could produce even 75 % more heat than a lower one. However, the effect of the inner pipe and mass flow rate would be the opposite on the whole energy system efficiency when considering the COP of a heat pump connected to well and the well pressure losses. The geological conditions of the rock have a major effect, too.
引用
收藏
页数:15
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共 53 条
  • [41] How to develop district heating in Finland?
    Paiho, Satu
    Saastamoinen, Heidi
    [J]. ENERGY POLICY, 2018, 122 : 668 - 676
  • [42] Peltoniemi S., 1995, Report Q18/95/1
  • [43] The deeper the better? A thermogeological analysis of medium-deep borehole heat exchangers in low-enthalpy crystalline rocks
    Piipponen, Kaiu
    Martinkauppi, Annu
    Korhonen, Kimmo
    Vallin, Sami
    Arola, Teppo
    Bischoff, Alan
    Leppaharju, Nina
    [J]. GEOTHERMAL ENERGY, 2022, 10 (01)
  • [44] Rindahl C., 2016, Master's Thesis
  • [45] General review of ground-source heat pump systems for heating and cooling of buildings
    Sarbu, Ioan
    Sebarchievici, Calin
    [J]. ENERGY AND BUILDINGS, 2014, 70 : 441 - 454
  • [46] Selley R.C., 2005, Encyclopedia of geology
  • [47] The subsurface thermal state of Svalbard and implications for geothermal potential
    Senger, Kim
    Nuus, Matthijs
    Balling, Niels
    Betlem, Peter
    Birchall, Tom
    Christiansen, Hanne H.
    Elvebakk, Harald
    Fuchs, Sven
    Jochmann, Malte
    Klitzke, Peter
    Midttomme, Kirsti
    Olaussen, Snorre
    Pascal, Christophe
    Rodes, Nil
    Shestov, Aleksey
    Smyrak-Sikora, Aleksandra
    Thomas, Peter James
    [J]. GEOTHERMICS, 2023, 111
  • [48] Sliaupa S., 2010, P WORLD GEOTH C 2010
  • [49] Statistics Finland, 2021, ENERGY FINLAND
  • [50] United Nations, 2015, SUMM PAR AGR