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Christopher Simon Brown
Christopher Simon Brown
Research Associate, James Watt School of Engineering, University of Glasgow, Glasgow, G12 8QQ.
Verified email at glasgow.ac.uk
Title
Cited by
Cited by
Year
Seasonal thermal energy storage in smart energy systems: District-level applications and modelling approaches
A Lyden, CS Brown, I Kolo, G Falcone, D Friedrich
Renewable and Sustainable Energy Reviews 167, 112760, 2022
522022
Numerical modelling of deep coaxial borehole heat exchangers in the Cheshire Basin, UK
CS Brown, NJ Cassidy, SS Egan, D Griffiths
Computers & Geosciences 152, 104752, 2021
472021
Iceberg scours, pits, and pockmarks in the North Falkland Basin
CS Brown, AMW Newton, M Huuse, F Buckley
Marine Geology 386, 140-152, 2017
332017
Investigating scalability of deep borehole heat exchangers: Numerical modelling of arrays with varied modes of operation
CS Brown, I Kolo, G Falcone, D Banks
Renewable Energy 202, 442-452, 2023
172023
Repurposing a deep geothermal exploration well for borehole thermal energy storage: Implications from statistical modelling and sensitivity analysis
CS Brown, I Kolo, G Falcone, D Banks
Applied Thermal Engineering 220, 119701, 2023
152023
Deep geothermal energy in northern England: Insights from 3D finite difference temperature modelling
L Howell, CS Brown, SS Egan
Computers & Geosciences 147, 104661, 2021
152021
A sensitivity analysis of a single extraction well from deep geothermal aquifers in the Cheshire Basin, UK
CS Brown, NJ Cassidy, SS Egan, D Griffiths
Quarterly Journal of Engineering Geology and Hydrogeology 55 (3), qjegh2021-131, 2022
122022
Thermal and economic analysis of heat exchangers as part of a geothermal district heating scheme in the cheshire basin, UK
CS Brown, NJ Cassidy, SS Egan, D Griffiths
Energies 15 (6), 1983, 2022
122022
Closed-loop deep borehole heat exchanger: Newcastle science central deep geothermal borehole
I Kolo, CS Brown, G Falcone, D Banks
92023
Regional geothermal resource assessment of hot dry rocks in Northern England using 3D geological and thermal models
CS Brown
Geothermics 105, 102503, 2022
82022
Investigating the influence of groundwater flow and charge cycle duration on deep borehole heat exchangers for heat extraction and borehole thermal energy storage
CS Brown, H Doran, I Kolo, D Banks, G Falcone
Energies 16 (6), 2677, 2023
72023
Repurposing a geothermal exploration well as a deep borehole heat exchanger: understanding long-term effects of lithological layering, flow direction, and circulation flow rate
I Kolo, CS Brown, G Falcone, D Banks
Sustainability 15 (5), 4140, 2023
72023
Modelling, characterisation and optimisation of deep geothermal energy in the Cheshire basin
CS Brown
University of Birmingham, 2020
72020
Modelling borehole thermal energy storage using curtailed wind energy as a fluctuating source of charge
CS Brown, T Desguers, A Lyden, I Kolo, D Friedrich, G Falcone
Proceedings of the 48th Workshop on Geothermal Reservoir Engineering …, 2023
52023
Unlocking deep geothermal energy in the UK using borehole heat exchangers
CS Brown, L Howell
Geology Today 39 (2), 67-71, 2023
42023
Radioactive waste as an anthropogenic heat source: shallow and deep geothermal applications
HR Doran, T Renaud, CS Brown, I Kolo, G Falcone, DCW Sanderson
32023
Revisiting the Deep Geothermal Potential of the Cheshire Basin, UK
CS Brown
Energies 16 (3), 1410, 2023
32023
Thermal Power from a Notional 6 km Deep Borehole Heat Exchanger in Glasgow
I Kolo, CS Brown, G Falcone
Proceedings of 48th workshop on geothermal reservoir engineering, SGP-TR-224, 2023
22023
Evaluating the Response of Geothermal Reservoirs in the Cheshire Basin: A Parameter Sensitivity Analysis
C Brown, N Cassidy, S Egan, D Griffiths
AAPG 2019, 2019
22019
Modelling low-enthalpy deep geothermal reservoirs in the Cheshire Basin, UK as a future renewable energy source.
C Brown, N Cassidy, SS Egan, D Griffiths
Geophysical Research Abstracts, V. 21, EGU2019-5078, 2019
22019
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