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HandWiki. Geothermal Heat Pump. Encyclopedia. Available online: https://encyclopedia.pub/entry/28898 (accessed on 13 September 2026).
HandWiki. Geothermal Heat Pump. Encyclopedia. Available at: https://encyclopedia.pub/entry/28898. Accessed September 13, 2026.
HandWiki. "Geothermal Heat Pump" Encyclopedia, https://encyclopedia.pub/entry/28898 (accessed September 13, 2026).
HandWiki. (2022, October 11). Geothermal Heat Pump. In Encyclopedia. https://encyclopedia.pub/entry/28898
HandWiki. "Geothermal Heat Pump." Encyclopedia. Web. 11 October, 2022.
Geothermal Heat Pump
Edit

A geothermal heat pump (GHP) or ground source heat pump (GSHP) is a type of heat pump used to heat and/or cool a building by exchanging heat with ground, often through a vapor-compression refrigeration cycle.

It uses the earth all the time, without any intermittency, as a heat source (in the winter) or a heat sink (in the summer). This design takes advantage of the moderate temperatures in the ground to boost efficiency and reduce the operational costs of heating and cooling systems, and may be combined with solar heating to form a geosolar system with even greater efficiency. They are also known by other names, including geoexchange, earth-coupled, earth energy systems. The engineering and scientific communities prefer the terms "geoexchange" or "ground source heat pumps" to avoid confusion with traditional geothermal power, which uses a high-temperature heat source to generate electricity. Ground source heat pumps harvest heat absorbed at the Earth's surface from solar energy. The temperature in the ground below 6 metres (20 ft) is roughly equal to the local mean annual air temperature (MAAT).

Depending on latitude, the temperature beneath the upper 6 metres (20 ft) of Earth's surface maintains a nearly constant temperature reflecting the mean average annual air temperature (in many areas, between 10 and 16 °C/50 and 60 °F), if the temperature is undisturbed by the presence of a heat pump. Like a refrigerator or air conditioner, these systems use a heat pump to force the transfer of heat from the ground. Heat pumps can transfer heat from a cool space to a warm space, against the natural direction of flow, or they can enhance the natural flow of heat from a warm area to a cool one. The core of the heat pump is a loop of refrigerant pumped through a vapor-compression refrigeration cycle that moves heat. Air source heat pumps are typically more efficient at heating than pure electric heaters, even when extracting heat from cold winter air, although efficiencies begin dropping significantly as outside air temperatures drop below 5 °C (41 °F). A ground source heat pump exchanges heat with the ground. This is much more energy-efficient because underground temperatures are more stable than air temperatures throughout the year. Seasonal variations drop off with depth and disappear below 7 metres (23 ft) to 12 metres (39 ft) due to thermal inertia. Like a cave, the shallow ground temperature is warmer than the air above during the winter and cooler than the air in the summer. A ground source heat pump extracts ground heat in the winter (for heating) and transfers heat back into the ground in the summer (for cooling). Some systems are designed to operate in one mode only, heating or cooling, depending on climate.

Geothermal pump systems reach fairly high coefficient of performance (CoP), 3 to 6, on the coldest of winter nights, compared to 1.75–2.5 for air-source heat pumps on cool days. Ground source heat pumps (GSHPs) are among the most energy-efficient technologies for providing HVAC and water heating.

Setup costs are higher than for conventional systems, but the difference is usually returned in energy savings in 3 to 10 years. Geothermal heat pump systems are reasonably warranted by manufacturers, and their working life is estimated at 25 years for inside components and 50+ years for the ground loop. As of 2004, there are over one million units installed worldwide providing 12 GW of thermal capacity, with an annual growth rate of 10%.

natural flow geothermal heat pump ground source heat pump

References

  1. "History". About Us. International Ground Source Heat Pump Association. http://www.igshpa.okstate.edu/about/about_us.htm. 
  2. Bloomquist, R. Gordon (December 1999). "Geothermal Heat Pumps, Four Plus Decades of Experience". Geo-Heat Centre Quarterly Bulletin (Klmath Falls, Oregon: Oregon Institute of Technology) 20 (4): pp. 13–18. ISSN 0276-1084. http://geoheat.oit.edu/bulletin/bull20-4/art3.pdf. 
  3. Lund, J.; Sanner, B.; Rybach, L.; Curtis, R.; Hellström, G. (September 2004). "Geothermal (Ground Source) Heat Pumps, A World Overview". Geo-Heat Centre Quarterly Bulletin (Klmath Falls, Oregon: Oregon Institute of Technology) 25 (3): pp. 1–10. ISSN 0276-1084. http://geoheat.oit.edu/bulletin/bull25-3/art1.pdf. 
  4. "Geothermal – The Energy Under Our Feet: Geothermal Resources Estimates for the United States". http://www1.eere.energy.gov/geothermal/pdfs/40665.pdf. 
  5. "Choosing a heating system". http://www.motiva.fi/rakentaminen/lammitysjarjestelman_valinta. 
  6. "GSHC Viability and Design – Carbon Zero Consulting". http://www.carbonzeroco.com/ground-source-heat-pumps/ground-source-heating-cooling/. 
  7. "Environmental Technology Verification Report". U.S. Environmental Protection Agency. http://www.epa.gov/etv/pubs/600etv06063.pdf. 
  8. Li M, Lai ACK. Review of analytical models for heat transfer by vertical ground heat exchangers (GHEs): A perspective of time and space scales, Applied Energy 2015; 151: 178-191.
  9. Hellstrom G. Ground heat storage – thermal analysis of duct storage systems I. Theory. Lund: University of Lund; 1991.
  10. ASHRAE. ASHRAE handbook: HVAC applications. Atlanta: ASHRAE, Inc; 2011.
  11. Kavanaugh SK, Rafferty K. Ground-source heat pumps: Design of geothermal systems for commercial and institutional buildings. Atlanta, GA: American Society of Heating, Refrigerating and Air-Conditioning Engineers, Inc.; 1997.
  12. "Ground Source Heat Pumps (Earth Energy Systems)". Heating and Cooling with a Heat Pump. Natural Resources Canada, Office of Energy Efficiency. http://oee.nrcan.gc.ca/publications/infosource/pub/home/heating-heat-pump/gsheatpumps.cfm.  Note: contrary to air-source conventions, the NRC's HSPF numbers are in units of BTU/hr/watt. Divide these numbers by 3.41 BTU/hr/watt to arrive at non-dimensional units comparable to ground-source COPs and air-source HSPF.
  13. Chiasson, A.D. (1999). Advances in modeling of ground source heat pump systems. Oklahoma State University. http://www.solis.pl/index.php/content/download/375/1291/file/GROUND%20SOURCE%20HEAT.pdf. Retrieved 2009-04-23. 
  14. Rezaei, B.; Amir, Kolahdouz; Dargush, G. F.; Weber, A. S. (2012a). "Ground source heat pump pipe performance with Tire Derived Aggregate". International Journal of Heat and Mass Transfer 55 (11–12): 2844–2853. doi:10.1016/j.ijheatmasstransfer.2012.02.004.  https://dx.doi.org/10.1016%2Fj.ijheatmasstransfer.2012.02.004
  15. "Geothermal Home Heating And Cooling, ME 1065: Thermal Systems Analysis and Design". Dr. Laura Schaefer. http://me1065.wikidot.com/geothermal-home-heating-and-cooling. 
  16. Epp, Baerbel (17 May 2019). "Seasonal pit heat storage: Cost benchmark of 30 EUR/m3" (in en). https://www.solarthermalworld.org/news/seasonal-pit-heat-storage-cost-benchmark-30-eurm3. 
  17. "Underground Thermal Energy Storage (UTES) - 4 PTES (Pit Thermal Energy Storage), 10 MB". p. 99. https://www.heatstore.eu/documents/HEATSTORE_UTES%20State%20of%20the%20Art_WP1_D1.1_Final_2019.04.26.pdf. 
  18. Li M, Li P, Chan V, Lai ACK. Full-scale temperature response function (G-function) for heat transfer by borehole ground heat exchangers (GHEs) from sub-hour to decades. Appl Energy 2014; 136: 197-205.
  19. Hard water
  20. Orio, Carl D.; Johnson, Carl N.; Rees, Simon J.; Chiasson, A.; Deng, Zheng; Spitler, Jeffrey D. (2004). "A Survey of Standing Column Well Installations in North America". ASHRAE Transactions (ASHRAE) 11 (4): pp. 637–655. http://www.hvac.okstate.edu/research/Documents/Orio_Johnson_Rees_Chiasson_Deng_Spitler_05.pdf. 
  21. "Interseasonal Heat Transfer". Icax.co.uk. http://www.icax.co.uk/interseasonal_heat_transfer.html. 
  22. Van Passel, Willy; Sourbron, Maarten; Verplaetsen, Filip; Leroy, Luc; Somers, Yvan; Verheyden, Johan; Coupé, Koen. Organisatie voor Duurzame Energie Vlaanderen. ed. Warmtepompen voor woningverwarming. p. 28. http://www2.vlaanderen.be/economie/energiesparen/doc/brochure_warmtepomp.pdf. Retrieved 2009-03-23. 
  23. "Schematic of similar system of aquifers with fans-regulation". Zonneterp.nl. 2005-11-11. http://www.zonneterp.nl/english/index_uk.html. 
  24. "Capture, storage and release of Renewable Cooling". Icax.co.uk. http://www.icax.co.uk/renewable_cooling.html. 
  25. Geothermal Heat Pumps. National Renewable Energy Laboratory. http://www.nrel.gov/docs/legosti/fy98/24782.pdf
  26. Rafferty, Kevin (April 1997). "An Information Survival Kit for the Prospective Residential Geothermal Heat Pump Owner". Geo-Heat Centre Quarterly Bulletin (Klmath Falls, Oregon: Oregon Institute of Technology) 18 (2): pp. 1–11. ISSN 0276-1084. http://geoheat.oit.edu/bulletin/bull18-2/art1.pdf.  The author issued an updated version of this article in February 2001.
  27. "AHRI Directory of water-to-air geothermal heat pumps". http://www.ahridirectory.org/ahriDirectory/pages/wbahp/defaultSearch.aspx. 
  28. "Energy Star Program Requirements for Geothermal Heat PUmps". Partner Commitments. Energy Star. http://www.energystar.gov/ia/partners/product_specs/eligibility/geo_heat_pump_elig.pdf. 
  29. Environmental Protection Agency (1993). Space Conditioning: The Next Frontier – Report 430-R-93-004. EPA. 
  30. European Environment Agency (2008). Energy and environment report 2008. EEA Report. No 6/2008. Luxemburg: Office for Official Publications of the European Communities. p. 83. doi:10.2800/10548. ISBN 978-92-9167-980-5. http://www.eea.europa.eu/publications/eea_report_2008_6. Retrieved 2009-03-22. 
  31. Energy Information Administration, US Department of Energy (2007). "Voluntary Reporting of Greenhouse Gases, Electricity Emission Factors". http://www.eia.doe.gov/oiaf/1605/pdf/Appendix%20F_r071023.pdf. 
  32. "annex 9". National Inventory Report 1990–2006:Greenhouse Gas Sources and Sinks in Canada. Government of Canada. May 2008. ISBN 978-1-100-11176-6. http://www.ec.gc.ca/pdb/ghg/inventory_report/2004_report/ta9_7_e.cfm. 
  33. Hanova, J; Dowlatabadi, H (9 November 2007). "Strategic GHG reduction through the use of ground source heat pump technology". Environmental Research Letters (UK: IOP Publishing) 2: pp. 044001 8pp. doi:10.1088/1748-9326/2/4/044001. ISSN 1748-9326. Bibcode: 2007ERL.....2d4001H. http://www.iop.org/EJ/article/1748-9326/2/4/044001/erl7_4_044001.pdf?request-id=dd247af1-1eb0-4c8d-a20b-426d37d8ee5f. 
  34. Spiegel.de report on recent geological changes (in German, partial translation) http://www.spiegel.de/wissenschaft/natur/0,1518,589944,00.html
  35. Pancevski, Bojan (30 March 2008). "Geothermal probe sinks German city". https://www.telegraph.co.uk/news/worldnews/1583323/Geothermal-probe-sinks-German-city.html. 
  36. FORMACIJE, A (2010). "DAMAGE TO THE HISTORIC TOWN OF STAUFEN (GERMANY) CAUSED By GEOTHERMAL DRILLING THROUGH ANHYDRITE-BEARING FORMATIONS". Acta Carsologica 39 (2): 233. http://carsologica.zrc-sazu.si/downloads/392/Sass.pdf. 
  37. Butscher, Christoph; Huggenberger, Peter; Auckenthaler, Adrian; Bänninger, Dominik (2010). "Risikoorientierte Bewilligung von Erdwärmesonden". Grundwasser 16: 13–24. doi:10.1007/s00767-010-0154-5. Bibcode: 2011Grund..16...13B. http://doc.rero.ch/record/321504/files/767_2010_Article_154.pdf. 
  38. Goldscheider, Nico; Bechtel, Timothy D. (2009). "Editors' message: The housing crisis from underground—damage to a historic town by geothermal drillings through anhydrite, Staufen, Germany". Hydrogeology Journal 17 (3): 491–493. doi:10.1007/s10040-009-0458-7. Bibcode: 2009HydJ...17..491G.  https://dx.doi.org/10.1007%2Fs10040-009-0458-7
  39. badische-zeitung.de, Lokales, Breisgau, 15. Oktober 2010, hcw: Keine Entwarnung in der Fauststadt – Risse in Staufen: Pumpen, reparieren und hoffen (17. Oktober 2010) http://www.badische-zeitung.de/staufen/risse-in-staufen-pumpen-reparieren-und-hoffen--36628144.html
  40. "Geothermal Heat Pump Consortium, Inc.". http://geoexchange.us/. 
  41. Lienau, Paul J.; Boyd, Tonya L.; Rogers, Robert L. (April 1995). Ground-Source Heat Pump Case Studies and Utility Programs. Klamath Falls, OR: Geo-Heat Center, Oregon Institute of Technology. http://geoheat.oit.edu/pdf/hp1.pdf. Retrieved 2009-03-26. 
  42. "OpenThermal.org analysis of geothermal incentive payments in the state of Maryland". OpenThermal.org. http://openthermal.net/md/. 
  43. Kavanaugh, Steve; Gilbreath, Christopher (December 1995). Joseph Kilpatrick. ed. Cost Containment for Ground-Source Heat Pumps (final report ed.). http://geoheat.oit.edu/pdf/tp72.pdf. Retrieved 2009-03-24. 
  44. Cummings, Paul (June 2008). Indiana Residential Geothermal Heat Pump Rebate, Program Review. Indiana Office of Energy and Defense Development. http://www.in.gov/oed/files/GHPProgramreport.pdf. Retrieved 2009-03-24. 
  45. Hughes, P. (2008). Geothermal (Ground-Source) Heat Pumps: Market Status, Barriers to Adoption, and Actions to Overcome Barriers. Oak Ridge National Laboratory. doi:10.2172/948543. https://digital.library.unt.edu/ark:/67531/metadc901516/. 
  46. "Energy Savers: Selecting and Installing a Geothermal Heat Pump System". Energysavers.gov. 2008-12-30. http://www.energysavers.gov/your_home/space_heating_cooling/index.cfm/mytopic=12670. 
  47. RETscreen International, ed (2005). "Ground-Source Heat Pump Project Analysis". Clean Energy Project Analysis: RETscreen Engineering & Cases Textbook. Natural Resources Canada. Catalogue no.: M39-110/2005E-PDF. ISBN 978-0-662-39150-0. http://www.retscreen.net/ang/textbook_gshp.html. Retrieved 2009-04-20. 
  48. "Geothermal Heat Pumps". Capital Electric Cooperative. http://www.capitalelec.com/Energy_Efficiency/ground_source/index.html. 
  49. "Geothermal heat pumps: alternative energy heating and cooling FAQs". http://www.econar.com/faq.htm. 
  50. "Energy Savers: Geothermal Heat Pumps". Apps1.eere.energy.gov. 2009-02-24. http://apps1.eere.energy.gov/consumer/your_home/space_heating_cooling/index.cfm/mytopic=12640. 
  51. "Benefits of a Geothermal Heat Pump System". http://energy.ltgovernors.com/benefits-of-a-geothermal-heat-pump-system.html. 
  52. Craig, William; Gavin, Kenneth (2018). Geothermal Energy, Heat Exchange Systems and Energy Piles. London: ICE Publishing. pp. 79. ISBN 9780727763983. https://www.icebookshop.com/Products/Geothermal-Energy,-Heat-Exchange-Systems-and-Energ.aspx. 
  53. Database of State Incentives for Renewables & Efficiency . US Department of Energy. http://www.dsireusa.org/searchby/searchtechnology.cfm?&CurrentPageID=2&EE=1&RE=1
  54. "2010 to 2015 government policy: low carbon technologies". www.gov.uk. https://www.gov.uk/government/publications/2010-to-2015-government-policy-low-carbon-technologies/2010-to-2015-government-policy-low-carbon-technologies#appendix-6-renewable-heat-incentive-rhi. 
  55. "IGSHPA". www.igshpa.okstate.edu. http://www.igshpa.okstate.edu/. 
  56. "White House Executive Order on Sustainability Includes Geothermal Heat Pumps". www.geoexchange.org. https://www.geoexchange.org/. 
  57. "Energy Savers: Selecting and Installing a Geothermal Heat Pump System". Apps1.eere.energy.gov. 2008-12-30. http://apps1.eere.energy.gov/consumer/your_home/space_heating_cooling/index.cfm/mytopic=12670. 
  58. "Horizontal & Vertical Thermal Conductivity". Carbonzeroco.com. 2016-03-23. http://www.carbonzeroco.com/field-services/soil-thermal-conductivity-testing/. 
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