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Geothermal potential of closed underground mines: resource assessment study of the Con Mine (Northwest Territories, Canada); Ngoyo Mandemvo, D; Comeau, F-A; Raymond, J; Grasby, S E; Terlaky, V. Natural Resources Research vol. 32, no. 4, 2023 p. 1579-1593, https://doi.org/10.1007/s11053-023-10214-3 (NRCan Cont.# 20220195)

 


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Use of CT-scan images to build geomaterial 3D pore network representation in preparation for numerical simulations of fluid flow and heat transfer, Quebec; Hammouti, A; Larmagnat, S; Rivard, CORCID logo; Pham Van Bang, D. Geological Survey of Canada, Open File 8954, 2023, 49 pages, https://doi.org/10.4095/331502 Open Access logo Open Access

 
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Ground surface temperature monitoring data analysis and applications to geothermal exploration in volcanic areas, Mount Meager, western Canada; Chen, Z; Grasby, S E; Yuan, W; Liu, X. Geothermics vol. 108, 102610, 2023 p. 1-18, https://doi.org/10.1016/j.geothermics.2022.102610 Open Access
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AI-enabled remote sensing data interpretation for geothermal resource evaluation as applied to the Mount Meager geothermal prospective area; Chen, ZORCID logo; Grasby, S EORCID logo; Deblonde, C; Liu, XORCID logo. Geological Survey of Canada, Open File 8882, 2022, 1 sheet, https://doi.org/10.4095/330008 Open Access
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Thermodynamic modeling of the advanced geothermal system using inclined well applications; Yuan, W; Chen, Z; Grasby, S E; Little, E; Zhao, G. Applied Thermal Engineering vol. 220, 119709, 2022 p. 1-16 (NRCan Cont.# 20220036)

 


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Geothermal exploration in the Burwash Landing region, Canada, using three-dimensional inversion of passive electromagnetic data; Tschirhart, V; Colpron, M; Craven, J; Hormozzade Ghalati, F; Enkin, R J; Grasby, S. Remote Sensing vol. 14, issue 23, 2022 p. 1-22, https://doi.org/10.3390/rs14235963 Open Access logo Open Access (NRCan Cont.# 20220264)

 


Improving the competitiveness of geothermal energy exploitation through integrated CO2 storage in the Western Canadian Sedimentary Basin; Shokri, A R; Vaisblat, N; Wigston, A; Champollion, Y; Hickson, C; Chalaturnyk, R; in, Transactions - Geothermal Resources Council. 187780, 2022 p. 2098-2111 (NRCan Cont.# 20230206)

 


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Modeling a fractured geothermal reservoir using 3-D AMT data inversion: insights from Garibaldi Volcanic Belt, BC, Canada; Hormozzade Ghalati, F; Craven, J A; Motazedian, D; Grasby, S E; Tschirhart, V. Geothermics vol. 105, 102528, 2022, https://doi.org/10.1016/j.geothermics.2022.102528 (NRCan Cont.# 20220136)

 


Design and optimization of deep coaxial borehole heat exchangers for cold sedimentary basins; Gascuel, V; Raymond, J; Rivard, C; Marcil, J -S; Comeau, F -A. Geothermics vol. 105, 102504, 2022 p. 1-36, https://doi.org/10.1016/j.geothermics.2022.102504 (NRCan Cont.# 20210644)

 


Performance assessment of heat pump and solar thermal heating with seasonal storage systems for smart microgrid research center building at IAUN; Zanjani, S M H; Shahinzadeh, H; Oskui, A B; Yaici, W; Longo, M; in, 10th International Conference on Smart Grid, icSmartGrid 2022, abstracts. 182150, 2022 p. 345-350, https://doi.org/10.1109/icSmartGrid55722.2022.9848623 (NRCan Cont.# 20220485)

 


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Using shallow temperature measurements to evaluate thermal flux anomalies in the southern Mount Meager volcanic area, British Columbia, Canada; Liu, XORCID logo; Chen, ZORCID logo; Grasby, S EORCID logo. Geological Survey of Canada, Open File 8890, 2022, 19 pages, https://doi.org/10.4095/330009 Open Access
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Determining the lifespan of hydrothermal systems using thermochronology and thermal modeling; Jess, S; Enkelmann, E; Grasby, S E; Fraser, K. Journal of Geophysical Research, Earth Surface vol. 126, issue 11, e2021JF006286, 2021 p. 1-17, https://doi.org/10.1029/2021JF006286 (NRCan Cont.# 20210297)

 


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Assessment of petrophysical rock properties in North Madagascar: implications for geothermal resource exploration; Rajaobelison, M; Raymond, J; Malo, M; Dezayes, C; Larmagnat, S. Natural Resources Research 2021 p. 1-27, https://doi.org/10.1007/s11053-021-09875-9 (NRCan Cont.# 20210204)

 


Closed-loop geothermal energy recovery from deep high enthalpy systems; Yuan, W; Chen, Z; Grasby, S E; Little, E. Renewable Energy vol. 177, 2021 p. 976-991, https://doi.org/10.1016/j.renene.2021.06.028 Open Access logo Open Access (NRCan Cont.# 20200775)

 


Performance investigation of solar organic Rankine cycle system with zeotropic working fluid mixtures for use in micro-cogeneration; Yaici, W; Entchev, E; Talebizadehsardari, P; Longo, M. Journal of Energy Resources Technology vol. 143, issue 9, 090906, 2021 p. 1-13, https://doi.org/10.1115/1.4049582 (NRCan Cont.# 20210205)

 


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Deep geothermal heating potential for the communities of the Western Canadian Sedimentary Basin; Majorowicz, J; Grasby, S E. Energies vol. 14, issue 3, 706, 2021 p. 1-37, https://doi.org/10.3390/en14030706 Open Access logo Open Access (NRCan Cont.# 20200774)

 


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Potential heat production from the Seagull and Teslin plutonic suites, southern Yukon: geochemistry, geochronology, rock physical properties, and 3-D geophysical inversion of Bouguer gravity data; Colpron, M; Hayward, N; Crowley, J L. Yukon Geological Survey, Yukon Exploration and Geology 2020 p. 47-72 (NRCan Cont.# 20200585)

 


Using geodetic data in geothermal areas; Vasco, D W; Rutqvist, J; Jeanne, P; Samsonov, S V; Hartline, C. The Leading Edge vol. 39, issue 12, 2020 p. 845-924, https://doi.org/10.1190/tle39120883.1 Open Access logo Open Access (NRCan Cont.# 20200619)

 


Performance investigation of solar organic rankine cycle systems with and without regeneration and with zeotropic working fluid mixtures for use in micro-cogeneration; Yaïci, W; Entchev, E; Sardari, P T; in, ASME 2020 14th International Conference on Energy Sustainability, ES 2020, abstracts. 162951, 2020 p. 1-14, https://doi.org/10.1115/ES2020-1616 (NRCan Cont.# 20200499)

 


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Qualitative petroleum resource assessment of the Labrador Margin; Carey, J SORCID logo; McCartney, TORCID logo; Hanna, M C; Lister, C J; Kung, L EORCID logo. Geological Survey of Canada, Open File 8535, (ed. rev.), 2020, 104 pages, https://doi.org/10.4095/326017 Open Access logo Open Access

 
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Heat transition for major communities supported by geothermal energy development of the Alberta Basin, Canada; Majorowicz, J A; Grasby, S E. Geothermics vol. 88, 101883, 2020 p. 1-20, https://doi.org/10.1016/j.geothermics.2020.101883 (NRCan Cont.# 20200089)

 


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Qualitative petroleum resource assessment of the Labrador Margin; Carey, J SORCID logo; McCartney, TORCID logo; Hanna, M C; Lister, C J; Ferguson, RORCID logo; Kung, L EORCID logo. Geological Survey of Canada, Open File 8535, 2019, 104 pages, https://doi.org/10.4095/314721 Open Access
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NOTE: This publication is superceded by Qualitative petroleum resource assessment of the Labrador Margin


 
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Deep geothermal energy in Canadian sedimentary basins VS. Fossils based energy we try to replace - Exergy [KJ/KG] compared; Majorowicz, J; Grasby, S E. Renewable Energy vol. 141, 2019 p. 259-277, https://doi.org/10.1016/j.renene.2019.03.098 (NRCan Cont.# 20180449)

 


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Qualitative petroleum resource assessment of western Hudson Bay, Foxe Channel, and Repulse Bay, Manitoba, Nunavut, Ontario, and Quebec; Hanna, M C; Lister, C J; Kublik, K; King, H M; Kung, L EORCID logo; McCarthy, W M; McDannell, K TORCID logo; Jassim, Y. Geological Survey of Canada, Open File 8434, 2018, 31 pages, https://doi.org/10.4095/311260 Open Access logo Open Access

 
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Geothermal studies in Yukon - collaborative efforts to understand ground temperature in the Canadian North; Fraser, T A; Grasby, S E; Witter, J B; Colpron, M; Relf, C; in, Transactions of the 2018 Geothermal Resources Council Annual Meeting & Expo Presentations. Geothermal Resources Council, Transactions vol. 42, 2018 p. 1451-1470 (NRCan Cont.# 20180136)

 


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2017 Korea-Canada-U.S.A. Beaufort Sea (offshore Yukon and Northwest Territories) research program: 2017 Araon expedition (ARA08C) cruise report; Jin, Y K (ed.); Côté, M M (ed.); Paull, C K (ed.); King, E L (ed.). Geological Survey of Canada, Open File 8406, 2018, 206 pages, https://doi.org/10.4095/308396 Open Access logo Open Access

 
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Heat flow measurements; Kim, Y -G; in, 2017 Korea-Canada-U.S.A. Beaufort Sea (offshore Yukon and Northwest Territories) research program: 2017 Araon expedition (ARA08C) cruise report; Jin, Y K (ed.); Côté, M M (ed.); Paull, C K (ed.); King, E L (ed.). Geological Survey of Canada, Open File 8406, 2018 p. 112-123, https://doi.org/10.4095/308404 Open Access logo Open Access

 
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Water column study; Kim, M; Rhee, T S; Choi, Y S; in, 2017 Korea-Canada-U.S.A. Beaufort Sea (offshore Yukon and Northwest Territories) research program: 2017 Araon expedition (ARA08C) cruise report; Jin, Y K (ed.); Côté, M M (ed.); Paull, C K (ed.); King, E L (ed.). Geological Survey of Canada, Open File 8406, 2018 p. 142-149, https://doi.org/10.4095/308406 Open Access logo Open Access

 
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Insights into contaminant transport from unconventional oil and gas developments from analog system analysis of methane-bearing thermal springs in the northern Canadian Rocky Mountains; Ferguson, G; Grasby, S E. Hydrogeology Journal vol. 26, issue 2, 2017 p. 481-493, https://doi.org/10.1007/s10040-017-1662-5 (NRCan Cont.# 20170115)

 


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Developing the bedrock layer for Canada 3-D: the Precambrian-Phanerozoic boundary; de Kemp, E AORCID logo; Schetselaar, E MORCID logo; Hillier, MORCID logo; Montsion, R. Geological Survey of Canada, Scientific Presentation 65, 2017, 1 sheet, https://doi.org/10.4095/301671 Open Access logo Open Access

 
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A new modeling approach for improved ground temperature profile determination; Badache, M; Eslami Nejad, P; Ouzzane, M; Aidoun, Z; Lamarche, L. Renewable Energy vol. 85, 2015 p. 436-444, https://doi.org/10.1016/j.renene.2015.06.020

 


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Determination of geothermal gradient from borehole temperature and permafrost base for exploration wells in the Beaufort-Mackenzie Basin; Hu, KORCID logo; Chen, ZORCID logo; Issler, D RORCID logo. Geological Survey of Canada, Open File 6957, 2014, 23 pages, https://doi.org/10.4095/293872 Open Access
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Modeling of a two-phase CO2-filled vertical borehole for geothermal heat pump applications; Eslami-Nejad, P; Ouzzane, M; Aidoun, Z. Applied Energy vol. 114, 2014 p. 611-620, https://doi.org/10.1016/j.apenergy.2013.10.028

 


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Permafrost investigation by well logs, and seismic velocity and repeated shallow temperature surveys, Beaufort-Mackenzie Basin, Canada; Issler, D; Hu, K; Chen, Z; Brent, T; Couture, N; in, Book of abstracts of EUCOP4 - 4th European Conference on Permafrost. 2014 p. 263 (ESS Cont.# 20140221)

 


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Having the energy ; Fowler, M; Wielens, H; Williams, G; Jefferson, C; Chorlton, L; Haidl, F; Lavoie, D; Monger, J; Murphy, R; Nowlan, G; Wach, G; in, Four Billion Years and Counting: Canada's Geological Heritage; Fensome, R (ed.); Williams, G (ed.); Achab, A (ed.); Clague, J (ed.); Corrigan, DORCID logo (ed.); Monger, J (ed.); Nowlan, G (ed.). 2014 p. 261-277 (ESS Cont.# 20150038)

 


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The geothermal potential of the basal clastics of Saskatchewan, Canada; Fergusson, G; Grasby, S E. Hydrogeology Journal vol. 22, 2014 p. 143-150, https://doi.org/10.1007/s10040-013-1061-5 (ESS Cont.# 20130286)

 


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Geothermal energy for northern Canada: is it economical?; Majorowicz, J; Grasby, S E. Natural Resources Research vol. 23, issue 1, 2014 p. 159-173, https://doi.org/10.1007/s11053-013-9199-3 (ESS Cont.# 20120468)

 


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Geothermal energy potential for northern communities; Grasby, S EORCID logo; Majorowicz, J; McCune, G. Geological Survey of Canada, Open File 7350, 2013, 50 pages, https://doi.org/10.4095/292840 Open Access logo Open Access

 
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Permafrost investigation by well logs, and seismic velocity and repeated shallow temperature surveys, Beaufort-Mackenzie Basin; Hu, KORCID logo; Issler, D RORCID logo; Chen, ZORCID logo; Brent, T A. Geological Survey of Canada, Open File 6956, 2013, 33 pages, https://doi.org/10.4095/293120 Open Access logo Open Access

 
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Performance analysis of a hybrid renewable microgeneration system in load sharing applications; Yang, L; Entchev, E; Ghorab, M; Lee, E J. Applied Thermal Engineering vol. 71, issue 2, 2013 p. 697-704, https://doi.org/10.1016/j.applthermaleng.2013.10.057

 


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Geothermal energy resource potential of Canada; Grasby, S EORCID logo; Allen, D M; Bell, S; Chen, ZORCID logo; Ferguson, G; Jessop, A; Kelman, M; Ko, M; Majorowicz, J; Moore, M; Raymond, J; Therrien, R. Geological Survey of Canada, Open File 6914, (ed. rev.), 2012, 322 pages, https://doi.org/10.4095/291488 Open Access logo Open Access

 
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Geothermal energy resource potential of Canada; Grasby, S EORCID logo; Allen, D M; Bell, S; Chen, ZORCID logo; Ferguson, G; Jessop, A; Kelman, M; Ko, M; Majorowicz, J; Moore, M; Raymond, J; Therrien, R. Geological Survey of Canada, Open File 6914, 2011, 322 pages, https://doi.org/10.4095/288745 Open Access logo Open Access

NOTE: This publication is superceded by Geothermal energy resource potential of Canada


 
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Thermal springs and heat flow in North America; Ferguson, G; Grasby, S E. Geofluids vol. 11, 2011 p. 294-301, https://doi.org/10.1111/j.1468-8123.2011.00339.x (ESS Cont.# 20110157)

 


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Geothermal modeling of the gas hydrate stability zone along the Krishna Godavari Basin; Shankar, U; Riedel, M; Sathe, A V. Marine Geophysical Researches 2010, 12 pages, https://doi.org/10.1007/s11001-010-9089-6 (ESS Cont.# 20090399)

 


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Heat flow, depth - temperature variations and stored thermal energy for enhanced geothermal systems in Canada; Majorowicz, J; Grasby, S E. Journal of Geophysics and Engineering vol. 7, 2010 p. 232-241, https://doi.org/10.1088/1742-2132/7/3/002 Open Access logo Open Access (ESS Cont.# 20090389)

 


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High potential regions for enhanced geothermal systems in Canada; Majorowicz, J; Grasby, S E. Natural Resources Research vol. 19, no. 3, 2010 p. 177-188, https://doi.org/10.1007/s11053-010-9119-8 (ESS Cont.# 20100078)

 


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Geothermal maps of Canada; Grasby, S EORCID logo; Majorowicz, J; Ko, M. Geological Survey of Canada, Open File 6167, 2009, 35 pages, https://doi.org/10.4095/247765 Open Access logo Open Access

 
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Estimation of shallow geothermal energy resource in Canada: Heat gain and heat sink; Majorowicz, J; Grasby, S E; Skinner, W R. Natural Resources Research vol. 18, no. 2, 2009, https://doi.org/10.1007/s11053-009-9090-4 (ESS Cont.# 20080659)

 


What do aqueous geothermometers really tell us?; Fergusson, G; Grasby, S E; Hindle, S R. Geofluids vol. 9, 2009 p. 39-48, https://doi.org/10.1111/j.1468-8123.2008.00237.x Open
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Surface-coupled three-dimensional geothermal model for study of permafrost geothermal regime in a building environment; Zhou, F; Li, R; Zhang, A; Zhu, L. Journal of Geophysical Research, Atmospheres vol. 113, no. D19, D19102, 2008 p. 1-14, https://doi.org/10.1029/2008JD009827 Open Access logo Open Access (NRCan Cont.# 20181049)

 


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Review of National Geothermal Energy Program: phase 1 - geothermal potential of sedimentary basins; Jessop, A M. Geological Survey of Canada, Open File 5690, 2008, 146 pages; 1 CD-ROM, https://doi.org/10.4095/224672 Open Access logo Open Access

 
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Thermal effects of salt on the petroleum system: evidence from fission track thermochronology, fluid inclusions and basin modelling; Zentilli, M; Wielens, H; Grist, A M; Kettanah, Y; Negulic, E; Brown, E; in, Conjugate Margins conference, 2008, abstracts. 2008 (ESS Cont.# 20080514)

 


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Cordilleran Intermontane thermotectonic history and implications for neotectonic structure and petroleum systems, British Columbia, Canada; Majorowicz, J; Osadetz, K. International Journal of Earth Sciences vol. 97, no. 2, 2008 p. 269-287, https://doi.org/10.1007/s00531-007-0215-x (ESS Cont.# 20070528)

 


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Foreland belt thermal history using apatite fission-track thermochronology: implications for Lewis Thrust and Flathead Fault in the southern Canadian Cordilleran Petroleum Province; Osadetz, K G; Kohn, B P; Feinstein, S; Price, R A; in, Deformation, fluid flow, and reservoir appraisal in foreland fold and thrust belts; Swennen, R (ed.); Roure, F (ed.); Granath, J W (ed.). American Association of Petroleum Geologists, Hedberg Series no. 1, 2004 p. 21-48 (GSC Cont.# 2003099)

 


A process-based model for quantifying the impact of climate change on permafrost thermal regimes; Zhang, Y; Chen, W; Cihlar, J. Journal of Geophysical Research vol. 108, issue D22, 2003 p. 5-15, https://doi.org/10.1029/2002JD003354 Open Access logo Open Access (ESS Cont.# 20043166)

 
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North Cascadia deep sea gas hydrates; Spence, G D; Hyndman, R D; Chapman, N R; Walia, R; Gettrust, J; Edwards, R N; in, Gas hydrates: challenges for the future; Holder, G D (ed.); Bishnoi, P R (ed.). Annals of the New York Academy of Sciences vol. 912, 2000 p. 65-75, https://doi.org/10.1111/j.1749-6632.2000.tb06760.x (GSC Cont.# 1999059)

 


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Thermotectonic history of Mt Logan, Yukon Territory, Canada: implications of multiple episodes of Middle to Late Cenozoic denudation; O'Sullivan, P B; Currie, L D. Earth and Planetary Science Letters vol. 144, issue 1-2, 1996 p. 251-261, https://doi.org/10.1016/0012-821X(96)00161-6 (GSC Cont.# 1996/23)

 


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Geothermal conditions for gas hydrate stability in the Beaufort-Mackenzie area: the global change aspect; Judge, A S; Majorowicz, J A. Palaeogeography, Palaeoclimatology, Palaeoecology vol. 98, issue 2-4, 1992 p. 251-263, https://doi.org/10.1016/0031-0182(92)90203-h (GSC Cont.# 20892)

 


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Part D: Geothermal Energy [Chapter 20: Energy and Groundwater Resources of the Canadian Cordillera]; Souther, J G; in, Geology of the Cordilleran Orogen in Canada; Gabrielse, H (ed.); Yorath, C J (ed.). Geological Survey of Canada, Geology of Canada Series no. 4, 1991 p. 787-792, https://doi.org/10.4095/134133 Open
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The microseismic monitoring system at the Camborne School of mines, geothermal energy project, Rosemanowes Quarry, Cornwall, U.K.; Udd, J E. Canada Centre for Mineral and Energy Technology, Mining Research Laboratories, Division Report 87-24 (TR), 1987, 12 pages Open Access logo Open Access

 
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1984 geothermal investigation Prince Edward Island drilling, MacDougall, Prince County hole number EPB 345; John A. Leslie and Associates Limited. Earth Physics Branch, Open File 85-10, 1985, 73 pages, https://doi.org/10.4095/293532 Open Access logo Open Access

 
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Subsurface modelling for geothermal production and energy storage; Hutchence, K; Vigrass, L W. Earth Physics Branch, Open File 85-16, 1985, 51 pages, https://doi.org/10.4095/293498 Open Access logo Open Access

 
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Modelling of deep groundwater flow in Saskatchewan; Garven, G; Vigrass, L W. Earth Physics Branch, Open File 85-17, 1985, 28 pages (25 sheets), https://doi.org/10.4095/293499 Open Access logo Open Access

 
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Feasibility study in the use of geothermal energy to heat large facilities; UMA Engineering Ltd.. Earth Physics Branch, Open File 85-25, 1985, 136 pages (17 sheets), https://doi.org/10.4095/293505 Open
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Preliminary results from shallow drilling in the Anahim Volcanic Belt, B.C.; Bentkowski, W H; Lewis, T J. Earth Physics Branch, Open File 85-9, 1985, 19 pages, https://doi.org/10.4095/293533 Open
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Study of mine air heating with geothermal energy; Acres Consulting Services Limited. Earth Physics Branch, Open File 84-14, 1984, 55 pages, https://doi.org/10.4095/293605 Open Access logo Open Access

 
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Survey of geothermal energy in the Maritime Provinces; Acres Consulting Services Limited. Earth Physics Branch, Open File 84-13, 1984, 140 pages (1 sheet), https://doi.org/10.4095/293606 Open Access
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Preliminary Results of Shallow Drilling in the Garibaldi Volcanic Belt, British Columbia, 1982; Bentkowski, W H; Lewis, T J. Earth Physics Branch, Open File 83-23, 1983, 38 pages, https://doi.org/10.4095/8921 Open Access logo Open Access

 
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The Geothermal Energy Programme: a review; Jessop, A M. 1981, 22 pages, https://doi.org/10.4095/300854 Open Access logo Open Access

 
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Completion and Pump Test University of Regina 3-8-17-19 Phase 1b Geothermal Project; Vigrass, L W. Earth Physics Branch, Open File 80-6, 1980, 90 pages, https://doi.org/10.4095/8372 Open Access logo Open Access

 
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Canadian Geothermal Data Collection - northern wells 1977-78 / Recueil des données géothermiques canadiennes - puits d'exploration dans le grand-nord 1977-78; Judge, A S; Taylor, A E; Burgess, M. Earth Physics Branch, Geothermal Series no. 11, 1979, 188 pages, https://doi.org/10.4095/8445 Open Access logo Open Access

 
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Supplement to Canadian geothermal data collection : northern wells 1977-78; Judge, A S; Taylor, A E; Rutledge, L. Earth Physics Branch, Open File 79-13, 1979, 64 pages, https://doi.org/10.4095/8360 Open Access logo Open Access

 
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Final well report, U of R Regina 3-8-17-19 (W. 2nd Mer.) Saskatchewan geothermal feasibility project at Regina, Phase 1; Vigrass, L W. Earth Physics Branch, Open File 79-9, 1979, 44 pages (5 sheets), https://doi.org/10.4095/8356 Open Access logo Open Access

 
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Compilation of industry-derived data on formation fluid and reservoir characteristics in the Regina area; Ruse, D; in, Geothermal project, Regina-Moose Jaw area, Saskatchewan; Geothermal Service of Canada. Earth Physics Branch, Open File 78-4, 1978 p. 68, https://doi.org/10.4095/8333 Open Access logo Open Access

 
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Data on geothermal areas Cordilleran Yukon, Northwest Territories, and adjacent British Columbia Canada; Crandall, J T; Sadlier-Brown, T L. Geological Survey of Canada, Open File 427, 1977, 73 pages (11 sheets), https://doi.org/10.4095/100376 Open Access logo Open Access

 
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Canadian Geothermal Data Collection - northern wells 1975; Taylor, A E; Judge, A S. Earth Physics Branch, Geothermal Series no. 6, 1976, 142 pages, https://doi.org/10.4095/8415 Open Access logo Open Access

 
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Geothermal energy from sedimentary basins; Jessop, A M. Earth Physics Branch, Geothermal Series no. 8, 1976, 10 pages, https://doi.org/10.4095/8417 Open Access logo Open Access

 
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Canadian Geothermal Data Collection - northern wells 1974; Taylor, A E; Judge, A S. Earth Physics Branch, Geothermal Series no. 3, 1975, 7 pages, https://doi.org/10.4095/8414 Open Access logo Open Access

 
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Canadian Geothermal Data Collection - northern wells 1955 To February 1974; Taylor, A E; Judge, A S. Earth Physics Branch, Geothermal Series no. 1, 1974, 171 pages, https://doi.org/10.4095/8413 Open
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