International audienceThermal dilution experiments with Fiber-Optic Distributed Temperature Sensing (FO-DTS) were conducted at the In-situ Stimulation and Circulation (ISC) rock laboratory, at the Grimsel Test Site (GTS) in Switzerland. The experiment consists in replacing the total volume of a borehole with a warmer water and monitoring the rate of temperature increase and decrease during the heating and cooling periods, respectively. The changes in temperature monitored in depth and time under various hydraulic conditions and in different boreholes, are used to investigate the information provided by thermal dilution experiments in terms of groundwater flow and thermal properties in low-permeable fractured crystalline rock. The data analy...
International audienceThe modelling and prediction of heat transfer in fractured media is particular...
International audienceGeothermal energy is a renewable energy source particularly attractive...
International audienceThe characterization of flow and transport in fractured media is particularly ...
International audienceThermal dilution experiments with Fiber-Optic Distributed Temperature Sensing ...
International audienceThermal transport in fractured media depends on the hydrological prop...
International audienceGeothermal energy is a renewable energy source particularly attractive due to ...
International audienceWe show how fully distributed space-time measurements with Fiber-Optic Distrib...
International audienceExperimental characterization of thermal transport in fractured media through ...
Quantification of groundwater flow is an important factor for several applications, such as water su...
International audienceIn highly heterogeneous media, fracture network connectivity and hydraulic pro...
peer reviewedIn order to investigate the fracturing of the bedrock and its possible heterogeneous di...
International audienceFractured aquifers are known to be very heterogeneous with complex flow path g...
International audienceCrystalline rocks aquifers are often difficult to characterize since flows are...
International audienceHeat is known to be an excellent tracer for characterizing groundwater flows i...
International audienceThe modelling and prediction of heat transfer in fractured media is particular...
International audienceGeothermal energy is a renewable energy source particularly attractive...
International audienceThe characterization of flow and transport in fractured media is particularly ...
International audienceThermal dilution experiments with Fiber-Optic Distributed Temperature Sensing ...
International audienceThermal transport in fractured media depends on the hydrological prop...
International audienceGeothermal energy is a renewable energy source particularly attractive due to ...
International audienceWe show how fully distributed space-time measurements with Fiber-Optic Distrib...
International audienceExperimental characterization of thermal transport in fractured media through ...
Quantification of groundwater flow is an important factor for several applications, such as water su...
International audienceIn highly heterogeneous media, fracture network connectivity and hydraulic pro...
peer reviewedIn order to investigate the fracturing of the bedrock and its possible heterogeneous di...
International audienceFractured aquifers are known to be very heterogeneous with complex flow path g...
International audienceCrystalline rocks aquifers are often difficult to characterize since flows are...
International audienceHeat is known to be an excellent tracer for characterizing groundwater flows i...
International audienceThe modelling and prediction of heat transfer in fractured media is particular...
International audienceGeothermal energy is a renewable energy source particularly attractive...
International audienceThe characterization of flow and transport in fractured media is particularly ...