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A Study on Field Application of a Deformable Rod Sensor to Large Diameter Drilled Shafts  

정성기 (부산광역시 감사관실)
김상일 (㈜상지엔지니어링건축사사무소)
정성교 (동아대학교 토목공학과)
최용규 (경성대학교 건설ㆍ환경공학부)
이민희 (부산대학교 대학원 토목공학과)
Publication Information
Journal of the Korean Geotechnical Society / v.19, no.6, 2003 , pp. 15-22 More about this Journal
Abstract
In the conventional load transfer analysis for a steel pipe drilled shaft, it was assumed that the concrete's strain is the same as the measured steel's strain and the elastic modulus of the steel and the concrete calculated by the formular as prescribed by specification is used in the calculation of pile axial load. But, the pile axial load calculation by conventional method differed to some extent from the actual pile load. So, the behavior of a steel pipe drilled shaft could not be analyzed exactly. Thus, the necessity to measure the strain for each pile component was proposed. In this study, a new approach for load transfer measurement of large diameter drilled shafts was suggested ; the strain of each pile component(i. e., steel and concrete) was measured by DRS(Deformable Rod Sensor), the elastic modulus was determined by the uniaxial compression test for concrete specimens made at test site and a value of elastic modulus was evaluated as average tangential modulus corresponding to the stress level of the (0.2-0.6)$f_{ck}$. Field application was confirmed by the results of load transfer measurement tests for 3 drilled shafts. The errors for calculated pile head load were -11 ∼16% and 3.4% separately.
Keywords
Average tangential modulus; DRS(Deformable Rod Sensor); Elastic modulus; Pile axial load distribution; Pile axial load measurement;
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