Thermoactive piles ensure a dual function: they support mechanically the superstructure and at the same time they are used as heat exchanger elements. In comparison to standard design practice, this requires considering the associated thermal loadings from the operation of the heat exchange system. To assess the thermal effects on the mechanical behaviour, different design assumptions and modelling approaches can be used. Therefore, within the framework of European Cooperation in Science and Technology Action TU1405 ‘Geothermal Applications for Buildings and Infrastructures’, benchmarking of a single geothermal pile has been performed. Hence, both heating and cooling of the pile were considered while different rigidities (representing the upper structure) on the pile head were assumed. The results show that a broad range of design assumptions could be used, which unfortunately lead to noticeable differences. Although the main focus was on the methods and assumptions employed, the exercise also opens questions about the influence of transient effects, thermal strains in the ground, temperature cycles and so on. Owing to the complexity of the topic, some of them were just mentioned, while others were addressed in greater detail. In general, the findings emphasise the need for further practice-oriented guidance to be presented in design guidelines and standards.
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6 July 2020
Research Article|
April 26 2019
Synthesis of a benchmark exercise for geotechnical analysis of a thermoactive pile Available to Purchase
Julien Habert, Ing.;
Julien Habert, Ing.
Senior Engineer
Cerema Nord-Picardie, Lille, France
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Hussein Mroueh, PhD, Ing.;
Laboratory of Civil Engineering and Geo-environment of Lille, University of Lille Science and Technologies, Villeneuve d’Ascq, France
(corresponding author: hussein.mroueh@polytech-lille.fr)
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Josif Josifovski, PhD, Ing.;
Josif Josifovski, PhD, Ing.
Associate Professor
Department of Geotechnics, Faculty of Civil Engineering, Ss Cyril and Methodius University, Skopje, Republic of North Macedonia
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Witold Bogusz, MSc Eng
;
Witold Bogusz, MSc Eng
Research Assistant
Department of Building Structures, Geotechnics and Concrete, Building Research Institute, Warsaw, Poland
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Donatella Sterpi, PhD;
Donatella Sterpi, PhD
Associate Professor
Department of Civil and Environmental Engineering, Politecnico di Milano, Milan, Italy
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Konstantinos Georgiadis, Dipl.(Eng), MSc, PhD, DIC
Konstantinos Georgiadis, Dipl.(Eng), MSc, PhD, DIC
Associate Professor
Department of Civil Engineering, Aristotle University of Thessaloniki, Thessaloniki, Greece
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(corresponding author: hussein.mroueh@polytech-lille.fr)
Publisher: Emerald Publishing
Received:
March 23 2018
Accepted:
December 06 2018
ICE Publishing: All rights reserved
2020
Environmental Geotechnics (2020) 7 (4): 225–236.
Article history
Received:
March 23 2018
Accepted:
December 06 2018
Citation
Habert J, Mroueh H, Josifovski J, Bogusz W, Sterpi D, Georgiadis K (2020), "Synthesis of a benchmark exercise for geotechnical analysis of a thermoactive pile". Environmental Geotechnics, Vol. 7 No. 4 pp. 225–236, doi: https://doi.org/10.1680/jenge.18.00054
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