Direct utilization of geothermal energy 2020 worldwide review

被引:444
|
作者
Lund, John W. [1 ]
Toth, Aniko N. [2 ]
机构
[1] Oregon Inst Technol, Geoheat Ctr, Klamath Falls, OR 97601 USA
[2] Ana Geo Ltd, Miskolc, Hungary
关键词
Geothermal; Direct-use; Spas; Balneology; Space heating; District heating; Aquaculture; Greenhouses; Ground-source heat pumps; Industrial application; Snow melting; Energy savings; Wells; Drilled; Manpower; Investment;
D O I
10.1016/j.geothermics.2020.101915
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
This paper presents a review of the worldwide applications of geothermal energy for direct utilization and updates the previous survey carried out in 2015. We also compare data from WGC1995, WGC2000, WGC2005, WGC2010, and WGC2015 presented at World Geothermal Congresses in Italy, Japan, Turkey, Indonesia and Australia. As in previous reports, an effort is made to quantify geothermal (ground-source) heat pump data. The present report is based on country update papers received from 62 countries and regions reporting on their direct utilization of geothermal energy. Twenty-six additional countries were added to the list based on other sources of information. Thus, direct utilization of geothermal energy in a total of 88 countries is an increase from 82 in 2015, 78 reported in 2010, 72 reported in 2005, 58 reported in 2000, and 28 reported in 1995. An estimation of the installed thermal power for direct utilization at the end of 2019 is used in this paper and equals 107,727 MWt, a 52.0 % increase over the 2015 data, growing at a compound rate of 8.73 % annually. The thermal energy used is 1,020,887 TJ/yr (283,580 GW h/yr.), a 72.3 % increase over 2015, growing at a compound rate of 11.5 % annually. The distribution of thermal energy used by category is approximately 58.8 % for geothermal (ground-source) heat pumps, 18.0 % for bathing and swimming (including balneology), 16.0 % for space heating (of which 91.0 % is for district heating), 3.5 % for greenhouse heating, 1.6 % for industrial applications, 1.3 % for aquaculture pond and raceway heating, 0.4 % for agricultural drying, 0.2 % for snow melting and cooling, and 0.2 % for other applications. Energy savings amounts to 596 million barrels (81.0 million tonnes) of equivalent oil annually, preventing 78.1 million tonnes of carbon and 252.6 million tonnes of CO2 from being released to the atmosphere. This includes savings for geothermal heat pumps in the cooling mode, compared to using fuel oil to generate electricity. Since it is almost impossible to separate direct-use from electric power generation for the following, they are combined: approximately 2647 wells were drilled in 42 countries, 34,500 person-years of effort were allocated in 59 countries, and US $22.262 billion invested in projects by 53 countries.
引用
收藏
页数:31
相关论文
共 50 条
  • [21] Utilization of geothermal energy in Slovakia
    Pavolova, Henrieta
    Culkova, Katarina
    Bakalar, Tomas
    ACTA MONTANISTICA SLOVACA, 2015, 20 (04) : 326 - 333
  • [22] Direct heat utilization of geothermal resources
    Lund, JW
    RENEWABLE ENERGY, 1997, 10 (2-3) : 403 - 408
  • [23] WORLDWIDE GEOTHERMAL ENERGY RESOURCE DEVELOPMENT.
    Saint, Prem K.
    Jasso, Abel
    Geothermal Energy, 1976, 4 (02): : 8 - 14
  • [24] Socio-economic considerations for the direct utilization of geothermal energy in developing countries
    Barbier, Jean
    Geothermics, 1988, 17 (01) : 191 - 194
  • [25] Efficiency of geothermal power plants: A worldwide review
    Zarrouk, Sadiq J.
    Moon, Hyungsul
    GEOTHERMICS, 2014, 51 : 142 - 153
  • [26] Reinjection in geothermal fields: A review of worldwide experience
    Kaya, Eylem
    Zarrouk, Sadiq J.
    O'Sullivan, Michael J.
    RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2011, 15 (01): : 47 - 68
  • [27] Reinjection in geothermal fields A worldwide review update
    Diaz, Alexandre Rivera
    Kaya, Eylem
    Zarrouk, Sadiq J.
    RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2016, 53 : 105 - 162
  • [28] Possibilities of Geothermal Energy in the Face of the Worldwide Energy Crisis.
    Marinelli, Giorgio
    Annales des Mines de Belgique, 1979, (11): : 993 - 1001
  • [29] Potential and Future Prospects of Geothermal Energy in Space Conditioning of Buildings: India and Worldwide Review
    Aggarwal, Vivek
    Meena, Chandan Swaroop
    Kumar, Ashok
    Alam, Tabish
    Kumar, Anuj
    Ghosh, Arijit
    Ghosh, Aritra
    SUSTAINABILITY, 2020, 12 (20) : 1 - 19
  • [30] Differences in Direct Geothermal Energy Utilization for Heating and Cooling in Central and Northern European Countries
    Nordgard-Hansen, Ellen
    Fjellsa, Ingvild Firman
    Medgyes, Tamas
    Gudmundsdottir, Maria
    Petursson, Baldur
    Miecznik, Maciej
    Pajak, Leszek
    Halas, Oto
    Leknes, Einar
    Midttomme, Kirsti
    ENERGIES, 2023, 16 (18)