Deep geothermal from the hot crystalline basement has remained an unsolved frontier for the geothermal industry for the past 30 years. This poses the challenge for developing a new unconventional geomechanics approach to stimulate such reservoirs. While a number of new unconventional brittle techniques are still available to improve stimulation on short time scales, the astonishing richness of failure modes of longer time scales in hot rocks has so far been overlooked. These failure modes represent a series of microscopic processes: brittle microfracturing prevails at low temperatures and fairly high deviatoric stresses, while upon increasing temperature and decreasing applied stress or longer time scales, the failure modes switch to transg...
International audienceThe wider concept of hot fractured rock geothermal energy is put forward to ov...
The United States Department of Energy has set long-term national goals for the development of geoth...
We develop a new fully coupled thermo-hydro-mechanical (THM) model to investigate the combined effec...
Deep geothermal from the hot crystalline basement has remained an unsolved frontier for the geotherm...
International audienceEconomically viable geothermal systems rely on the efficiency of fluid circula...
Geothermal energy is recovered by circulating water through heat exchange areas within a hot rock ma...
A significant amount of thermal energy is present in the deep hot dry bedrocks, which can be tapped ...
Enhanced geothermal systems (EGS) offer the potential for a much larger energy source than conventio...
Permeability enhancement during stimulation in a geothermal reservoir is mainly due to the developme...
Development of enhanced geothermal systems (EGS) will require creation of a reservoir of sufficient ...
The goal of the H2020 European MEET Project (Multidisciplinary and multi-context demonstration of E...
Recently, projects have been proposed to engineer deep geothermal reservoirs in the ductile crust. T...
Shallow and deep geothermal reservoirs are potential renewable energy sources. Heat recovery from ge...
When hot and ductile rocks fail they do so with an astonishing variety. Observations from crustal de...
Geothermal energy is recovered by circulating water through heat exchange areas within a hot rock ma...
International audienceThe wider concept of hot fractured rock geothermal energy is put forward to ov...
The United States Department of Energy has set long-term national goals for the development of geoth...
We develop a new fully coupled thermo-hydro-mechanical (THM) model to investigate the combined effec...
Deep geothermal from the hot crystalline basement has remained an unsolved frontier for the geotherm...
International audienceEconomically viable geothermal systems rely on the efficiency of fluid circula...
Geothermal energy is recovered by circulating water through heat exchange areas within a hot rock ma...
A significant amount of thermal energy is present in the deep hot dry bedrocks, which can be tapped ...
Enhanced geothermal systems (EGS) offer the potential for a much larger energy source than conventio...
Permeability enhancement during stimulation in a geothermal reservoir is mainly due to the developme...
Development of enhanced geothermal systems (EGS) will require creation of a reservoir of sufficient ...
The goal of the H2020 European MEET Project (Multidisciplinary and multi-context demonstration of E...
Recently, projects have been proposed to engineer deep geothermal reservoirs in the ductile crust. T...
Shallow and deep geothermal reservoirs are potential renewable energy sources. Heat recovery from ge...
When hot and ductile rocks fail they do so with an astonishing variety. Observations from crustal de...
Geothermal energy is recovered by circulating water through heat exchange areas within a hot rock ma...
International audienceThe wider concept of hot fractured rock geothermal energy is put forward to ov...
The United States Department of Energy has set long-term national goals for the development of geoth...
We develop a new fully coupled thermo-hydro-mechanical (THM) model to investigate the combined effec...