Numerical Simulation of an Energy Pile Using Thermo-Hydro-Mechanical Coupling and a Visco-Hypoplastic Model
รหัสดีโอไอ
Creator Xiaolong Ma
Title Numerical Simulation of an Energy Pile Using Thermo-Hydro-Mechanical Coupling and a Visco-Hypoplastic Model
Contributor Gang Qiu, Jürgen Grabe
Publisher Southeast Asian Geotechnical Society
Publication Year 2557
Journal Title The Geotechnical Engineering Journal of the SEAGS & AGSSEA
Journal Vol. 45
Journal No. 2
Page no. 12-16
Keyword Thermal-hydro-mechanical coupling, Energy pile, Abaqus, Thermal loading, Pore water pressure
URL Website http://seags.ait.asia
Website title AGSSEA & SEAGS
ISSN 0046-5828
Abstract Geothermal energy has been proven to be an economical renewable energy source and is applied all over the world. One of the efficient ways to use shallow geothermal energy is the thermal usage of piles. However, as temperature changes and the thermal expansion coefficients of concrete and soils are not the same, the interaction between them will be affected. In this article the thermal-hydromechanical (THM) behavior of an energy pile is simulated. The THM-coupling is implemented in the commercial software code Abaqus/Standard. The pore water pressure in the low permeability soils will be considered as they can have a considerable effect on the effective stress. A visco-hypoplastic soil model is used to reproduce the viscous behavior including creep, relaxation and rate dependency of fine grained soils. The calculated temperature development, the pile head settlement as well as the shaft resistance will be compared to results of a field test. Furthermore, a simplified concept will be introduced to understand the behavior of the shaft resistance and strains of energy piles due to mechanical and thermal loads.
Southeast Asian Geotechnical Society and Association of Geotechnical Societies in Southeast Asia

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