Mapping the low enthalpy geothermal potential of shallow Quaternary aquifers in Finland

被引:0
|
作者
Arola T. [1 ]
Eskola L. [2 ]
Hellen J. [3 ]
Korkka-Niemi K. [4 ]
机构
[1] Golder Associates Oy, Apilakatu 13B, Turku
[2] Department of Energy Technology, Aalto University, Sähkömiehentie 4, Aalto
[3] Golder Associates Oy, Ruosilankuja 3E, Helsinki
[4] Department of Geosciences and Geography, University of Helsinki, Gustaf Hällströmin katu 2a, Helsinki
关键词
Aquifer; Design power; Energy potential; Finland; Heat pump; Open-loop system;
D O I
10.1186/s40517-014-0009-x
中图分类号
学科分类号
摘要
Background: EU member states have concluded an agreement that renewable energy will cover 20% of the total energy production by 2020. To achieve this target, it is essential to investigate all possibilities for renewable energy production. We investigated whether groundwater could provide a shallow geothermal energy resource, and to what extent it could meet the demands for heating buildings in Finland. Our research focused on classified aquifers, namely, groundwater areas that are zoned for urban or industrial use. Methods: The heating potential of Finnish aquifers was estimated based on the flux, temperature and heat capacity of groundwater and the efficiency of heat pumps. The design power of residential buildings was then simulated. Finally, the design power was divided by the groundwater power to determine the ability of groundwater to heat buildings. Results: Approximately 56,500 ha of Finnish aquifers are zoned for urban or industrial land use. These aquifers contain 40 to 45 MW of power. In total, 55 to 60 MW of the heat load could be utilised with heat pumps, meaning that 25% to 40% of annually constructed residential buildings could be heated utilising groundwater in Finland. Conclusions: There are several hundred sites in Finland where groundwater could be used for energy utilisation, and groundwater could thus be a significant source of local renewable energy. However, because of geological and geographical factors, groundwater cannot be considered as a nationwide energy source. Future research should define the area-specific limiting factors for groundwater energy use. © 2014, Arola et al.; licensee Springer.
引用
收藏
页数:20
相关论文
共 50 条
  • [1] Mapping the low-enthalpy geothermal potential of Quaternary alluvial aquifers in Slovakia
    Krcmar, David
    Marschalko, Marian
    Yilmaz, Isik
    Malik, Peter
    Cernak, Radovan
    Svasta, Jaromir
    Kulman, Eugen
    Rusnakova, Daniela
    Popielarczyk, Dariusz
    Yang, Shuran
    [J]. BULLETIN OF ENGINEERING GEOLOGY AND THE ENVIRONMENT, 2020, 79 (03) : 1225 - 1238
  • [2] Mapping the low-enthalpy geothermal potential of Quaternary alluvial aquifers in Slovakia
    David Krčmář
    Marian Marschalko
    Isik Yilmaz
    Peter Malík
    Radovan Černák
    Jaromír Švasta
    Eugen Kullman
    Daniela Rusnáková
    Dariusz Popielarczyk
    Shuran Yang
    [J]. Bulletin of Engineering Geology and the Environment, 2020, 79 : 1225 - 1238
  • [3] The effect of urban heat islands on geothermal potential: examples from Quaternary aquifers in Finland
    Arola, Teppo
    Korkka-Niemi, Kirsti
    [J]. HYDROGEOLOGY JOURNAL, 2014, 22 (08) : 1953 - 1967
  • [4] Shallow geothermal (low enthalpy) and regulation
    Cerutti, Paolo
    [J]. ACQUE SOTTERRANEE-ITALIAN JOURNAL OF GROUNDWATER, 2024, 13 (02): : 33 - 34
  • [5] Shallow gravel aquifers and the urban 'heat island' effect: a source of low enthalpy geothermal energy
    Allen, A
    Milenic, D
    Sikora, P
    [J]. GEOTHERMICS, 2003, 32 (4-6) : 569 - 578
  • [6] Geophysical Methods for Monitoring Temperature Changes in Shallow Low Enthalpy Geothermal Systems
    Hermans, Thomas
    Nguyen, Frederic
    Robert, Tanguy
    Revil, Andre
    [J]. ENERGIES, 2014, 7 (08): : 5083 - 5118
  • [7] Engineering Students' Reference of Low Enthalpy Geothermal Potential in Parangtritis
    Rekinagara, Istifari Husna
    Prasetyo, Rizqi Mahfudz
    Dwinagara, Barlian
    Biddinika, Muhammad Kunta
    Aziz, Muhammad
    Takahashi, Fumitake
    [J]. 1ST INTERNATIONAL CONFERENCE ON ADVANCE AND SCIENTIFIC INNOVATION, 2019, 1175
  • [8] GEOTHERMAL ENERGY OF LOW ENTHALPY
    Carcel Carrasco, Francisco Javier
    Martinez Marquez, David
    [J]. 3C TECNOLOGIA, 2015, 4 (03): : 96 - 108
  • [9] Study of Shallow Low-Enthalpy Geothermal Resources Using Integrated Geophysical Methods
    De Giorgi, Lara
    Leucci, Giovanni
    [J]. ACTA GEOPHYSICA, 2015, 63 (01) : 125 - 153
  • [10] Study of Shallow Low-Enthalpy Geothermal Resources Using Integrated Geophysical Methods
    Lara De Giorgi
    Giovanni Leucci
    [J]. Acta Geophysica, 2015, 63 : 125 - 153