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Mechanical Properties of Cement Material for Energy-Foundation (EF) Structures
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  • Mechanical Properties of Cement Material for Energy-Foundation (EF) Structures
  • Mechanical Properties of Cement Material for Energy-Foundation (EF) Structures
저자명
Park. Yong-Boo,Choi. Hang-Seok,Sohn. Jeong-Rak,Sim. Young-Jong,Lee. Chul-Ho
간행물명
LHI journal of land, housing, and urban affairs
권/호정보
2012년|3권 1호|pp.83-88 (6 pages)
발행정보
한국토지주택공사 토지주택연구원
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정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
서지반출

기타언어초록

In this study, physical characteristics of cement and/or concrete materials that are typically used for energy-foundation (EF) structures have been studied. The thermal conductivity and structural integrity of the cement-based materials were examined, which are commonly encountered in backfilling a vertical ground heat exchangers, cast-in-place concrete piles and concrete lining in tunnel. For this purpose the thermal conductivity and unconfined compression strength of cement-based materials with various curing conditions were experimentally estimated and compared. Hydration heat generated from massive concrete in the cast-in-place concrete energy pile was observed for 4 weeks to estimate its dissipation time in the underground. The hydration heat may mask the in-situ thermal response test (TRT) result performed in the cast-in-place concrete energy pile. It is concluded that at least two weeks are needed to dissipate the hydration heat in this case. In addition, a series of numerical analysis was performed to compare the effect of thermal property of the concrete material on the cast-in-place pile.