• 제목/요약/키워드: SASSI

검색결과 23건 처리시간 0.014초

지반-구조물 상호작용을 고려한 철도 교량하부 말뚝 기초의 내진 안정성 평가 (An Evaluation on the Seismic Stability of a Railway Bridge Pile Foundation Considering Soil-Structure Interaction)

  • 이기호;신민호
    • 한국철도학회논문집
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    • 제6권1호
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    • pp.29-40
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    • 2003
  • In this study, the three dimensional pile-soil dynamic interaction analysis of the railway bridge pile foundation was performed using SASSI 2000 program and the applicability of SASSI 2000 about an evaluation of the seismic stability of a pile foundation was examined. The numerical analysis was executed on the two site of actual construction and input properties such as the acceleration of bedrock were estimated by one dimensional seismic response analysis using the Pro-SHAKE. Consequently, all the piles of the subject of investigation showed that displacement occurred within a permitted limit and the shear force and moment largely occurred at the point where the soil stiffness varied rapidly.

KIESSI-3D 프로그램을 이용한 대형 3차원 SSI 해석 (Large-scale 3D SSI Analysis using KIESSI-3D Program)

  • 이은행;김재민;서춘교
    • 한국전산구조공학회논문집
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    • 제26권6호
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    • pp.439-445
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    • 2013
  • 단단한 암반이 아닌 지반에 건설된 구조물의 지진응답을 정확하게 평가하기 위해서는 지반-구조물 상호작용(SSI)의 영향을 고려하여야 한다. 최근에는 USNRC SRP 3.7.2와 같은 원전설계분야의 규제지침 강화로 인해 SSI 해석의 필요성이 증가되고 있다. 이 연구에서는 대형 3차원 SSI 해석에 KIESSI-3D 프로그램을 사용한 사례를 제시하고 해석시간 및 정확성에 대한 토의를 하였다. 이를 위하여 대형 3차원 구조물 예제에 대한 SSI 해석을 수행하고 해석결과와 해석시간을 ACS/SASSI 프로그램과 비교하였다. 비교결과 KIESSI-3D 프로그램과 ACS/SASSI 프로그램에 의해 구한 구조응답의 전달함수가 거의 동일함을 보여 KIESSI-3D 프로그램의 정확성을 확인할 수 있었다. 아울러 해석시간 측면에서는 다중 쓰레드를 사용한 KIESSI-3D 프로그램(8개 쓰레드)이 단일 쓰레드를 사용한 ACS/SASSI 프로그램 보다 약 30배~2000배 빠른 성능을 보였다.

SSI를 고려한 현수교의 지진응답해석 (Earthquake Response Analyses of Cable-Supported Bridges with Soil-Structure Interaction)

  • 신영석;박장호;안성찬
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 2009년도 정기 학술대회
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    • pp.429-432
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    • 2009
  • 본 논문에서는 현수교에 대하여 지반-구조물 상호작용을 고려한 해석을 수행하였다. 교량의 앵커리지와 기초를 부분구조법(Structure method)을 이용한 지반-구조물 상호작용(Soil-Structure Interaction) 해석프로그램 SASSI를 이용하여 구조물 저면에서의 지반 임피던스(Impedance)를 계산하고 이로부터 앵커리지 및 기초와 지반에 대응하는 강성, 질량, 그리고 감쇠를 가지는 집중 파라메터 모델을 구하였다. 그리고 현수교 유한요소 모델에 앵커리지 및 기초와 지반에 대한 집중 파라메터 모델을 연계하여 전체 교량에 대한 지반-구조물 시스템을 구성하고 시간영역에서의 지반 운동에 대한 동적해석을 수행하였다. 해석결과를 지반-구조물 상호작용을 고려하지 않은 경우와 고려한 경우를 비교하였고 파동전달효과를 고려한 경우와 고려하지 않은 경우를 비교함으로써 지반-구조물 상호작용의 영향을 살펴보았다.

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지반-구조물 상호작용을 고려한 장대교량의 동적 거동 (Dynamic Behavior of a Long-Span Bridge Considering Soil-Structure Interaction)

  • 임채민;박장호;신영석
    • 한국안전학회지
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    • 제19권2호
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    • pp.119-124
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    • 2004
  • The effect of soil-structure interaction becomes important in the design of civil structures such as long-span bridges, which are constructed in the site composed of soft soil. Many methodologies have been developed to account for the proper consideration of soil-structure interaction effect. However, it is difficult to estimate soil-structure interaction effect accurately becaused of many uncertainties. This paper presents the results of study on soil-structure interaction and dynamic response of a long-span bridge designed in the site composed of soft soil. The effect of the soft soil was evaluated by the use of computer program SASSI and a long-span bridge structure was modeled by finite elements. Dynamic response characteristics of a long-span bridge considering soil-structure interaction wereinvestigated.

지반-구조물 상호작용을 고려한 터널 구조물의 동적 해석 (Dynamic Analysis of Tunnel Structures Considering Soil-Structure Interaction)

  • 김현중;박장호;신영석
    • 한국안전학회지
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    • 제20권1호
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    • pp.101-106
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    • 2005
  • When a underground structure is constructed at the site composed of soft soil, the behavior of a underground structure Is much affected by the motion of soft soil. Therefore, the effect of soil-structure interaction is an important consideration in the design of a underground structure such as tunnel at the site composed of soft soil. This paper presents the results of the study on dynamic response of tunnel structures and soil-structure interaction effects. The computer program SASSI was used in seismic analysis of tunnel structures because it is more capable of analyzing dynamic response or structures considering soil-structure interaction. As regards the results, the flexibility of surrounding soil affects dynamic response characteristics of tunnel structures and response of tunnel structures can be amplified.

p-version 무한요소를 적용한 지반-구조물 상호작용해석의 계산속도 향상 (A Speed-Up in Computing Time for SSI Analysis by p-version Infinite Elements)

  • 임재성;손일민;김재민;서춘교
    • 한국전산구조공학회논문집
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    • 제29권5호
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    • pp.471-482
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    • 2016
  • 이 연구에서는 p-version 동적무한요소법을 도입함으로써 FE-IE 기법에 기반한 KIESSI-3D 프로그램의 속도향상에 역점을 두었다. KIESSI-3D의 성능을 평가하기 위해 8가지 실규모 SSI 문제에 대한 수치해석을 수행하였다. 이를 위해 근역지반 모델의 반경($r_0$)이 구조물기초 반경(R)의 1.2배, 1.5배, 3.0배인 KIESSI-3D 해석모델을 고려하였다. 또한 SASSI2010 프로그램을 이용한 SSI 해석을 수행하였으며, 이 결과를 KIESI-3D에 의한 결과와 정확성 및 계산속도를 비교하였다. 수치해석 결과, 인 KIESI-3D 모델을 사용하면 정확한 해석을 수행할 수 있음을 알 수 있었다. 계산속도 측면을 보면, 새로운 KIESSI-3D의 해석속도는 기존 KIESSI-3D에 비해 최대 25배 빠른 것으로 나타났다.

반복법을 이용한 면진적용 원전구조물의 지반-구조물 상호작용 해석 (Soil-Structure Interaction Analysis for Base-Isolated Nuclear Power Plants Using an Iterative Approach)

  • 한승룡;남민준;서춘교;이상훈
    • 한국지진공학회논문집
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    • 제19권1호
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    • pp.21-28
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    • 2015
  • The nuclear accident due to the recent earthquake in Japan has triggered awareness of the importance of safety with regard to nuclear power plants (NPPs). An earthquake is one of the most important parameters which governs the safety of NPPs among external events. Application of a base isolation system for NPPs can reduce the risk for earthquakes. At present, a soil-structure interaction (SSI) analysis is essential in the seismic design of NPPs in consideration of the ground structure interaction. In the seismic analysis of the base-isolated NPP, it is restrictive to consider the nonlinear properties of seismic isolation devices due to the linear analysis of the SSI analysis programs, such as SASSI. Thus, in this study, SSI analyses are performed using an iterative approach considering the material nonlinearity of the isolators. By performing the SSI analysis using an iterative approach, the nonlinear properties of isolators can be considered. The difference between the SSI analysis results without iteration and SSI with iteration using SASSI is noticeable. The results of the SSI analysis using an effective linear (non-iterative) approach underestimate the spectral acceleration because the effective linear model cannot consider the nonlinear properties of isolators. The results of the SSI analysis show that the horizontal response of the base-isolated NPP is significantly reduced.

입사각을 고려한 장대교량의 지반-구조물 상호작용 해석 (Analysis of Soil-Structure Interaction of a Long-Span Bridge Considering Incident Angle of Input Ground Motion)

  • 박장호;신영석;최승환
    • 한국안전학회지
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    • 제23권2호
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    • pp.7-13
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    • 2008
  • In a long-span bridge which is constructed on soft soil, it is requested to make a plan considering soil-structure interaction, and soil-structure interaction is partially under consideration at the actual bridge plan. Many researches on dynamic behavior of a bridge affected by soil-structure interacting have been accomplished, but it is difficult to estimate dynamic behavior of a bridge on soft soil accurately because of many uncertainties. This paper presents the results about dynamic response of a long-span suspension bridge in the site composed of soft soil considering incident angle of input ground motion. The effect of soft soil was evaluated by the use o computer program SASSI and a long-span suspension bridge was modeled by finite element program MIDAS. The effect of incident angle of input ground motion was investigated on the dynamic response of a long-span bridge.

화련 대형내진시험모델의 계측지진응답 평가 (Evaluation of Measured Seismic Responses of the Hualien LSST Model Structure)

  • 현창헌
    • 한국지진공학회:학술대회논문집
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    • 한국지진공학회 1997년도 춘계 학술발표회 논문집 Proceedings of EESK Conference-Fall 1997
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    • pp.249-256
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    • 1997
  • This paper deals with the prediction and the evaluation of the measured seismic responses of the Hualien large-scale seismic test soil-structure system. The predicted analysis was carried out for the model structure by the computer code SASSI utilizing soil properties derived from geotechnical investigations and correlation analysis of recorded earthquake responses of soil. Utilizing the soil properties, seismic responses were predicted and compared with measured ones. The nonlinear effects of soil on structural responses were also evaluated.

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