International audienceTime-lapse microgravity surveying combined with absolute gravity measurements is used to investigate water storage changes in a karst aquifer of similar to 100 km(2) area. The survey consists of 40 gravity stations measured with a relative gravimeter; absolute gravity is measured at three stations for each survey. In total, four gravity surveys are performed over a 2 year time period during consecutive wet and dry periods. Survey precisions range between 2.4 and 5 mu Gal, enabling statistically significant detection of 10 mu Gal change, i.e., similar to 0.25 m equivalent water level change. Observed gravity changes are coherent between consecutive survey periods, i.e., net water withdrawal and net water recharge is obs...
2020 Fall.Includes bibliographical references.Unconfined aquifers are commonly characterized by an a...
5siDepicting the water dynamics in a Karst environment frequently represents a challenge due to the ...
Terrestrial water storage consists of groundwater, soil moisture, snow, ice, surface water, and wate...
International audienceIn this study we attempt to understand the water storage variations in a karst...
TAG LITHOIn this study we attempt to understand the water storage variations in a karst aquifer on t...
The magnitude of epikarstic water storage variation is evaluated in various karst settings using a ...
The acquisition of reliable data sets representative of hydrological regimes and their variations is...
For the 10 last years, terrestrial and satellite (GRACE) gravity measurements have reached such a pr...
International audienceThe Earth's mass distribution is continuously changing due to physical process...
International audienceIn mountain areas, both the ecosystem and the local population highly depend o...
International audienceAdvances in groundwater storage monitoring are crucial for water resource mana...
Time-lapse microgravity measurements can be used to monitor underground water storage changes. For t...
For the 20 last years, terrestrial and satellite gravity measurements have reached such a precision ...
2020 Fall.Includes bibliographical references.Unconfined aquifers are commonly characterized by an a...
5siDepicting the water dynamics in a Karst environment frequently represents a challenge due to the ...
Terrestrial water storage consists of groundwater, soil moisture, snow, ice, surface water, and wate...
International audienceIn this study we attempt to understand the water storage variations in a karst...
TAG LITHOIn this study we attempt to understand the water storage variations in a karst aquifer on t...
The magnitude of epikarstic water storage variation is evaluated in various karst settings using a ...
The acquisition of reliable data sets representative of hydrological regimes and their variations is...
For the 10 last years, terrestrial and satellite (GRACE) gravity measurements have reached such a pr...
International audienceThe Earth's mass distribution is continuously changing due to physical process...
International audienceIn mountain areas, both the ecosystem and the local population highly depend o...
International audienceAdvances in groundwater storage monitoring are crucial for water resource mana...
Time-lapse microgravity measurements can be used to monitor underground water storage changes. For t...
For the 20 last years, terrestrial and satellite gravity measurements have reached such a precision ...
2020 Fall.Includes bibliographical references.Unconfined aquifers are commonly characterized by an a...
5siDepicting the water dynamics in a Karst environment frequently represents a challenge due to the ...
Terrestrial water storage consists of groundwater, soil moisture, snow, ice, surface water, and wate...