An analysis of the effects that groundwater flow has on the thermal regime created by a ground source energy system is presented. The change in the development of the sub-surface thermal regime caused by a groundwater flow across a site, relative to a scenario where groundwater flow does not exist, is examined. Analysis is performed using bespoke finite-element formulations of both single- and multi-borehole systems. The results of this work show that even a modest groundwater flow across a site can lead to a significant change in the development of the sub-surface thermal regime
Ground source heat pump (GSHP) system is one of the major techniques that utilize shallow geothermal...
In a Borehole Thermal Energy Storage (BTES) system, heat is extracted from or injected to the subsur...
Ground source heat pump (GSHP) system combined with boreholes heat exchangers (BHEs) is increasing w...
This paper presents an analysis performed using a coupled TEMP/W-SEEP/W finite element model to cons...
The correct design of the Borehole Heat Exchanger is crucial for the operation and the energy perfor...
The correct design of the Borehole Heat Exchanger is crucial for the operation and the energy perfor...
The correct design of the Borehole Heat Exchanger is crucial for the operation and the energy perfor...
The correct design of the Borehole Heat Exchanger is crucial for the operation and the energy perfor...
Assessment of the current approach taken by guidelines and design methods of vertical closed loop he...
The correct design of the Borehole Heat Exchanger is crucial for the operation and the energy perfor...
A preliminary study has been made of the effects of groundwater flow on the heat transfer characteri...
Current thermal response tests, used to estimate the subsurface thermal conductivity in the geotherm...
Current thermal response tests, used to estimate the subsurface thermal conductivity in the geotherm...
Vertical or Borehole Ground Heat Exchangers (GHEs) constitute a major form of Geothermal Energy Syst...
Current thermal response tests, used to estimate the subsurface thermal conductivity in the geother...
Ground source heat pump (GSHP) system is one of the major techniques that utilize shallow geothermal...
In a Borehole Thermal Energy Storage (BTES) system, heat is extracted from or injected to the subsur...
Ground source heat pump (GSHP) system combined with boreholes heat exchangers (BHEs) is increasing w...
This paper presents an analysis performed using a coupled TEMP/W-SEEP/W finite element model to cons...
The correct design of the Borehole Heat Exchanger is crucial for the operation and the energy perfor...
The correct design of the Borehole Heat Exchanger is crucial for the operation and the energy perfor...
The correct design of the Borehole Heat Exchanger is crucial for the operation and the energy perfor...
The correct design of the Borehole Heat Exchanger is crucial for the operation and the energy perfor...
Assessment of the current approach taken by guidelines and design methods of vertical closed loop he...
The correct design of the Borehole Heat Exchanger is crucial for the operation and the energy perfor...
A preliminary study has been made of the effects of groundwater flow on the heat transfer characteri...
Current thermal response tests, used to estimate the subsurface thermal conductivity in the geotherm...
Current thermal response tests, used to estimate the subsurface thermal conductivity in the geotherm...
Vertical or Borehole Ground Heat Exchangers (GHEs) constitute a major form of Geothermal Energy Syst...
Current thermal response tests, used to estimate the subsurface thermal conductivity in the geother...
Ground source heat pump (GSHP) system is one of the major techniques that utilize shallow geothermal...
In a Borehole Thermal Energy Storage (BTES) system, heat is extracted from or injected to the subsur...
Ground source heat pump (GSHP) system combined with boreholes heat exchangers (BHEs) is increasing w...