The traditional energy pile (solid energy pile) has been implemented for decades. However, the design of different kinds of energy piles is still not well understood. In this study, a series of model tests were performed on an aluminum pipe energy pile (PEP) in dry sandy soil to investigate the thermal effects on the mechanical behaviors of pipe energy pile. The thermal responses of the PEP were also analyzed. Steady temperatures of the PEP under different working conditions were also compared with that of the solid energy pile. Different loading tests were carried out on four pipe energy piles under three different temperatures of 5, 35, and 50°C, respectively. The bearing capacity change can be interpreted through the load-displacement cu...
International audienceThe mechanical behaviour of an energy pile in saturated clay under thermo-mech...
Energy piles, due to their dual roles, are exposed to temperature change throughout their life time,...
Energy piles, due to their dual roles, are exposed to temperature change throughout their life time,...
The thermo- mechanical behavior of energy piles has been studied extensively in recent years. In the...
A laboratory-scale model test is conducted to improve the understanding of the effects of thermal cy...
Energy piles are a relatively new technology that have dual function as heat transferring and load b...
The behavior of an energy pile in a group is different from that of an isolated energy pile due to t...
The thermal response of an energy pile that is part of a pair of energy piles spaced at 3.5 m, was e...
A deep buried pipe energy pile (DBP-EP) is a composite structure that integrates ground-source heat ...
Cyclic temperature changes in an energy pile generate cyclic thermal expansive and contractive strai...
The thermal response of an energy field scale pile that is part of a pair of energy piles spaced at ...
This study investigates the impact that different magnitudes and combinations of thermal and axial m...
Energy piles are an emerging energy technology for both structural and thermal purposes. To support ...
A finite element model is developed to investigate the thermomechanical behavior of the energy pile ...
Energy piles are deep foundation elements designed to utilize the relatively constant temperature of...
International audienceThe mechanical behaviour of an energy pile in saturated clay under thermo-mech...
Energy piles, due to their dual roles, are exposed to temperature change throughout their life time,...
Energy piles, due to their dual roles, are exposed to temperature change throughout their life time,...
The thermo- mechanical behavior of energy piles has been studied extensively in recent years. In the...
A laboratory-scale model test is conducted to improve the understanding of the effects of thermal cy...
Energy piles are a relatively new technology that have dual function as heat transferring and load b...
The behavior of an energy pile in a group is different from that of an isolated energy pile due to t...
The thermal response of an energy pile that is part of a pair of energy piles spaced at 3.5 m, was e...
A deep buried pipe energy pile (DBP-EP) is a composite structure that integrates ground-source heat ...
Cyclic temperature changes in an energy pile generate cyclic thermal expansive and contractive strai...
The thermal response of an energy field scale pile that is part of a pair of energy piles spaced at ...
This study investigates the impact that different magnitudes and combinations of thermal and axial m...
Energy piles are an emerging energy technology for both structural and thermal purposes. To support ...
A finite element model is developed to investigate the thermomechanical behavior of the energy pile ...
Energy piles are deep foundation elements designed to utilize the relatively constant temperature of...
International audienceThe mechanical behaviour of an energy pile in saturated clay under thermo-mech...
Energy piles, due to their dual roles, are exposed to temperature change throughout their life time,...
Energy piles, due to their dual roles, are exposed to temperature change throughout their life time,...