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        필댐 제체 재료의 동적 물성치 평가 : Ⅱ. 비선형 동적 변형특성

        이세현(Lee, Sei-Hyun),김동수(Dongsoo Kim),추연욱(Yunwook Choo),권혁기(Kwon Hyek-Kee) 한국지반공학회 2009 한국지반공학회논문집 Vol.25 No.12

        Nonlinear dynamic deformation characteristics, expressed in terms of normalized shear modulus reduction curve (G/G<sub>max</sub>- logγ, G/G<sub>max</sub> curve) and damping curve (D-logγ), are important input parameters with shear wave velocity profile (Vs-profile) in the seismic analysis of (new or existing) fill dam. In this paper, the reasonable and economical methods to evaluate the nonlinear dynamic deformation characteristics for core zone and rockfill zone respectively are presented. For the core zone, 111 G/G<sub>max</sub> curves and 98 damping curves which meet the requirements of core material were compiled and representative curves and ranges were proposed for the three ranges of confining pressure (0~100 kPa, 100 kPa~200 kPa, more than 200 kPa). The reliability of the proposed curves for the core zone were verified by comparing with the resonant column test results of two kinds of core materials. For the rockfill zone, 135 G/G<sub>max</sub> curves and 65 damping curves were compiled from the test results of gravelly materials using large scale testing equipments. The representative curves and ranges for G/G<sub>max</sub> were proposed for the three ranges of confining pressure (0~50 kPa, 50 kPa~100 kPa, more than 100 kPa) and those for damping were proposed independently of confining pressure. The reliability of the proposed curves for the rockfill zone were verified by comparing with the large scale triaxial test results of rockfill materials in the B-dam which is being constructed.

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        수치해석을 이용한 이중 강-콘크리트 합성말뚝 연직지지력 평가

        김정수(Jeongsoo Kim),구정민(Jeongmin Goo),김문옥(Moonok Kim),정충열(Chungryul Jeong),추연욱(Yunwook Choo) 한국지반환경공학회 2022 한국지반환경공학회논문집 Vol.23 No.12

        이중 강-콘크리트 합성말뚝의 설계를 위한 지지력 평가 방법이 정립되지 않아 기존 강관말뚝 설계 지지력식이 활용되고 있다. 그러나 이들 설계식 간 지지력 예측 결과가 상이할 뿐만 아니라 일반적으로 가장 보수적인 결과를 채택하게 된다. 이러한 말뚝 지지력 평가방법은 설계의 신뢰성 및 경제성을 낮추게 된다. 본 논문은 수직하중을 받는 이중 강관 내 콘크리트 채움된 신형식 합성단면(DSCT) 말뚝의 역학적 거동을 수치해석적으로 조사하고, 여러 DSCT 말뚝 조건변화에 따른 연직지지력을 분석하였다. DSCT 말뚝 및 인접지반에 대한 축대칭 유한요소모델을 생성하였고, 이를 활용해 근입깊이, 말뚝 선단 채움재 강성, 말뚝 선단 채움재 높이, 기반암층 종류 변화에 따른 영향을 분석하였다. 또한 해석결과를 말뚝 설계 실무에서 주로 사용하는 선단 지지력 평가식과 비교하여 합성말뚝에 대한 기존 강관말뚝 지지력 산정식의 활용 가능성을 검토하였다. Conventionally, because evaluation methods of the bearing capacity for double steel pipe-concrete composite pile design have not been established, the conventional vertical bearing capacity equations for steel hollow pile are used. However, there are severe differences between the predictions from these equations, and the most conservative one among vertical bearing capacity predictions are conventionally adopted as a design value. Consequently, the current prediction method for vertical bearing capacity of composite pile prediction composite pile causes design reliability and economical feasibility to be low. This paper investigated mechanical behaviors of a new composite pile, with a cross-section composed of double steel pipes filled with concrete (DSCT), vertical bearing capacities were analyzed for several DSCT pile conditions. Axisymmetric finite element models for DSCT pile and surrounding ground were created and they were used to analyze effects on behaviors of DSCT pile pile by embedding depth, stiffness of plugging material at pile tip, height of plugging material at pile tip, and rockbed material. Additionally, results from conventional design prediction equations for vertical bearing capacity at steel hollow pile tip were compared with that from numerical results, and the use of the conventional equations for steel hollow pile was examined to apply to that for DSCT pile.

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