Numerical modelling has been undertaken to help improve understanding of a deep geothermal system being considered for development in the vicinity of Eastgate (Weardale, County Durham, UK). A parsimonious numerical modelling approach is used, which allows the possibility to develop a workable formal framework, rigorously testing evolving concepts against data as they become available. The approach used and results presented in this study are valuable as a contribution to a wider understanding of deep geothermal systems. This modelling approach is novel in that it utilises the mass transport code MT3DMS as a surrogate representation for heat transport in mid-enthalpy geothermal systems. A three-dimensional heat transport model was built, based on a relatively simple conceptual model. Results of simulation runs of a geothermal production scenario have positive implications for a working geothermal system at Eastgate. The Eastgate Geothermal Field has significant exploitation potential for combined heat and power purposes; it is anticipated that this site could support several tens of megawatts of heat production for direct use and many megawatts of electrical power using a binary power plant.
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November 2015
Research Article|
July 09 2015
Parsimonious numerical modelling of deep geothermal reservoirs
Tim H. Fairs, MSc, MSc, CGeol FGS;
Tim H. Fairs, MSc, MSc, CGeol FGS
Consultant Geologist
Subterra Ltd, Manchester, UK
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Paul L. Younger, PhD, CGeol FGS, CEng FICE, FREng;
Paul L. Younger, PhD, CGeol FGS, CEng FICE, FREng
Rankine Chair of Engineering and Professor of Energy Engineering
School of Engineering, University of Glasgow, Glasgow, UK
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Geoff Parkin, PhD
Geoff Parkin, PhD
Senior Lecturer
School of Civil Engineering and Geosciences, Newcastle University, Newcastle upon Tyne, UK
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Publisher: Emerald Publishing
Received:
September 10 2014
Accepted:
April 09 2015
Online ISSN: 1751-4231
Print ISSN: 1751-4223
Published with permission by the ICE under the CC-BY license. (http://creativecommons.org/licenses/by/4.0/)
2015
Proceedings of the Institution of Civil Engineers - Energy (2015) 168 (4): 218–228.
Article history
Received:
September 10 2014
Accepted:
April 09 2015
Citation
Fairs TH, Younger PL, Parkin G (2015), "Parsimonious numerical modelling of deep geothermal reservoirs". Proceedings of the Institution of Civil Engineers - Energy, Vol. 168 No. 4 pp. 218–228, doi: https://doi.org/10.1680/jener.14.00026
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