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AuthorElzeiny R.
AuthorSuleiman M.T.
AuthorQamar M.A.
AuthorXiao S.
AuthorAl-Khawaja M.
Available date2020-03-29T12:12:12Z
Publication Date2018
Publication NameGeotechnical Special Publication
ResourceScopus
ISSN8950563
URIhttp://dx.doi.org/10.1061/9780784481578.067
URIhttp://hdl.handle.net/10576/13529
AbstractEnergy piles support structural loads and exchange heat with surrounding soils using closed-loop ground source heat pump (GSHP) systems. A GSHP connected to an energy pile operates in cycles where it functions for a period of time (running time) then stops for another period of time (stoppage time). This intermittent operation of the GSHP subjects the piles and surrounding soil to changes in temperature and to temperature cycles introducing challenges to foundation design. The research presented in this paper focuses on evaluating the effects of thermal cycles on the soil temperature and soil-pile interaction. In order to investigate these effects, an instrumented concrete energy pile with diameter of 101.6 mm and length of 1.383 m was subjected to different thermal cycles and tested under pull-out loading at the soil-structure interaction (SSI) facility at Lehigh University. In this paper, results from two pile tests are presented. Axial pull-out response of a pile subjected to five thermal cycles was compared to the response of a pile subjected to pull-out loading at room temperature. It was observed that the pile subjected to thermal cycles had an ultimate shaft resistance that is 28% greater than that of the pile tested at room temperature.
SponsorThis work was made possible by an NPRP 7-725-2-270 grant from the Qatar National Research Fund (a member of Qatar Foundation). The statements made herein are solely the responsibility of the authors.
Languageen
PublisherAmerican Society of Civil Engineers (ASCE)
Subjectground source heat pump (GSHP)
soil-structure interaction (SSI)
TitleAxial pull-out response of a small-scale concrete pile subjected to cyclic thermal loading in sand
TypeConference Paper
Pagination706-714
Issue NumberGSP 294
Volume Number2018-March
dc.accessType Abstract Only


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