• 제목/요약/키워드: Seismic performance objective

검색결과 205건 처리시간 0.024초

철골모멘트골조의 내진성능향상을 위한 층간변위조절기법 (Inter-story Drift Design Method to Improve the Seismic Performance for Steel Moment Frames)

  • 최세운;박효선
    • 한국전산구조공학회논문집
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    • 제24권6호
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    • pp.707-714
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    • 2011
  • 층간변위율은 구조물의 내진성능을 평가하는데 널리 사용되는 지표 중의 하나이다. 지진에 의해 발생하는 층간변위율이 클수록 지진에 의한 손상이 커지는 것으로 알려져 있다. 이러한 이유로 층간변위율을 감소시키는 설계기술은 내진설계분야에서 중요한 이슈이다. 그럼에도 불구하고 현재까지는 지진하중을 받는 구조물에 대한 현실적인 층간변위설계기법이 제시되고 있지 않다. 본 연구는 재분배 기법을 이용하여 철골모멘트골조의 내진성능을 향상시키기는 최적 층간변위설계기법을 제시한다. 이 기법은 층간변위율 차이를 최소화함으로써 구조물의 층별 층간변위율을 고르게 분포시키고, 최대 층간변위율을 감소시킨다. 이 기법은 단위하중법으로 계산된 변위기여도를 이용하여 구조재의 단면성능을 재설계하기 때문에 반복적인 구조해석없이 구조물의 내진성능을 향상시킬 수 있는 장점을 가진다. 이 기법의 효율성 검증을 위해 철골모멘트골조 예제 적용을 실시하였다.

불균형력에 따른 철골보통중심가새골조의 붕괴모드 (Collapse Modes of Steel Ordinary Concentrically Braced Frames According to Unbalanced Forces)

  • 박진영;김서연;홍석재;김형준
    • 한국전산구조공학회논문집
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    • 제28권3호
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    • pp.249-257
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    • 2015
  • 철골보통중심가새골조의 수직불균형력에 대한 설계 요구사항이 KBC2009에서 처음으로 도입하였고, 이를 통하여 설계지진에서의 인명안전성능이라는 목표내진성능을 만족하도록 유도하고 있다. 그러나 수직 불균형력의 영향이 ASCE7-10에서 암시적으로 제시하는 최대고려지진에서의 구조물 붕괴방지성능에 미치는 영향에 대한 연구는 매우 제한적으로 이루어지고 있어 KBC2009를 따라 설계된 철골보통중심가새골조의 붕괴성능을 조사할 필요가 있다. 이를 위하여 본 논문에서는 역V형 철골보통중심가새골조의 최대고려지진에서의 붕괴양상을 조사하였다. 두 가지 지반조건과 세 가지 다른 수직불균형력 조건을 해석변수로 하여 총 6개의 5층 규모의 철골보통중심가새골조 표본건물을 설계하였다. 비선형 정적해석과 비선형 동적해석을 통하여 표본건물들의 내진성능과 붕괴양상을 조사하였다. 해석결과를 통해 수직 불균형력은 철골보통중심가새골조의 내진성능에 지대한 영향을 미쳤고, 바람직한 붕괴양상과 붕괴방지성능을 달성하기 위하여 불균형력에 대한 적절한 고려가 필요한 것으로 나타났다.

Influence of axial load and loading path on the performance of R.C. bridge piers

  • Kehila, Fouad;Bechtoula, Hakim;Benaouar, Djillali
    • Computers and Concrete
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    • 제15권4호
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    • pp.563-588
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    • 2015
  • Piers are the most vulnerable part of a bridge structure during an earthquake event. During Kobe earthquake in 1995, several bridge piers of the Hanshin Expressway collapsed for more than 600m of the bridge length. In this paper, the most important results of an experimental and analytical investigation of ten reinforced concrete bridge piers specimens with the same cross section subjected to constant axial (or variable) load and reversed (or one direction) cycling loading are presented. The objective was to investigate the main parameters influencing the seismic performance of reinforced concrete bridge piers. It was found that loading history and axial load intensity had a great influence on the performance of piers, especially concerning strength and stiffness degradation as well as the energy dissipation. Controlling these parameters is one of the keys for an ideal seismic performance for a given structure during an eventual seismic event. Numerical models for the tested specimens were developed and analyzed using SeismoStruct software. The analytical results show reasonable agreement with the experimental ones. The analysis not only correctly predicted the stiffness, load, and deformation at the peak, but also captured the post-peak softening as well. The analytical results showed that, in all cases, the ratio, experimental peak strength to the analytical one, was greater than 0.95.

섬유보강 원형 철근콘크리트 교각의 내진성능 향상에 관한 유사동적 실험 (Pseudo Dynamic Test for the Seismic Performance Enhancement of Circular RC Bridge Piers Retrofitted with Fibers)

  • 정영수;박종협;박희상;조창백
    • 콘크리트학회논문집
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    • 제14권2호
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    • pp.180-189
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    • 2002
  • 이 연구의 목적은 유사동적실험에 의한 섬유보강 원형철근콘크리트교각의 내진성능평가를 위한 연구로서 수원시에 위치한 내진설계된 교량인 하갈교를 대상모델로 하였다. 도로교설계기준의 내진설계규정이 적용되지 않은 비내진실험체 2개 및 내진설계 규정에 따라 설계된 내진실험체 2개 그리고 내진성능향상을 위해 비내진실험체를 보강한 섬유보강실험체 4개 즉 총 8개에 대하여 유사동적실험을 수행하였다. 보강공법으로는 유리섬유 및 탄소섬유 보강공법을 사용하였으며, 실험변수로는 내진 및 비내진설계, 하중형식, 섬유보강유무로 하였다. 내진성능평가 방법은 소산에너지, 변위연성도 그리고 능력스펙트럼이 분석되었다. 실험결과로 유리 및 탄소섬유로 보강된 비내진실험체의 변위연성도는 KHC인공지진파에 대하여 7.7~8.7정도의 값으로서 충분한 내진성능을 확보하고 있는 것으로 평가되었다.

국내 지진재해도를 고려한 저층 필로티 건물의 붕괴 확률 (Collapse Probability of a Low-rise Piloti-type Building Considering Domestic Seismic Hazard)

  • 김대환;김태완;추유림
    • 한국지진공학회논문집
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    • 제20권7_spc호
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    • pp.485-494
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    • 2016
  • The risk-based assessment, also called time-based assessment of structure is usually performed to provide seismic risk evaluation of a target structure for its entire life-cycle, e.g. 50 years. The prediction of collapse probability is the estimator in the risk-based assessment. While the risk-based assessment is the key in the performance-based earthquake engineering, its application is very limited because this evaluation method is very expensive in terms of simulation and computational efforts. So the evaluation database for many archetype structures usually serve as representative of the specific system. However, there is no such an assessment performed for building stocks in Korea. Consequently, the performance objective of current building code, KBC is not clear at least in a quantitative way. This shortcoming gives an unresolved issue to insurance industry, socio-economic impact, seismic safety policy in national and local governments. In this study, we evaluate the comprehensive seismic performance of an low-rise residential buildings with discontinuous structural walls, so called piloti-type structure which is commonly found in low-rise domestic building stocks. The collapse probability is obtained using the risk integral of a conditioned collapse capacity function and regression of current hazard curve. Based on this approach it is expected to provide a robust tool to seismic safety policy as well as seismic risk analysis such as Probable Maximum Loss (PML) commonly used in the insurance industry.

기존 기둥 실험결과 비교를 통한 기둥성능 평가 (Comparisons of Seismic Behaviors of Columns in Concrete Moment Frames)

  • 박성일;한상환;이리형
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2001년도 봄 학술발표회 논문집
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    • pp.571-576
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    • 2001
  • The objective of this study is to assess seismic damage potential and evaluate structural performance of columns in concrete moment frames. For this purpose the results of 3 former studies are compared. Experimental variables considered in these studies are lap-splice of longitudinal reinforcement, axial load level, longitudinal reinforcement ratio, etc. The columns in 1st story of the building are considered in these studies since the columns in 1st story shall resist largest axial force during an earthquake. Based on test results strength, ductility capacities as well as plastic hinge length are compared and discussed.

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나선철근으로 횡구속된 정사각형 RC 기둥의 내진성능 (Seismic Performance of Square RC Column Confined with Spirals)

  • 고성현
    • 한국구조물진단유지관리공학회 논문집
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    • 제16권5호
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    • pp.88-97
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    • 2012
  • 본 연구에서는 비내진 교각의 내진성능과 휨-전단 거동을 파악하고자 형상비 4.5인 정사각형의 중실 및 중공단면 철근콘크리트 교각실험체를 제작하여 일정한 축력하에서 변위비 등급을 증가시켜 가면서 횡하중을 가력하는 실험을 수행하였다. 본 연구는 철근콘크리트 교각의 한정연성 내진설계를 위한 실험적 기초자료의 제공과 함께 성능단계별 교각성능 및 손상평가를 위한 정량적 수치와 경향을 제공하기 위한 것이며, 파괴거동, 극한변위, 극한드리프트비율, 변위연성도, 응답수정계수, 등가점성감쇠비, 잔류변형지수, 유효강성, 철근 변형률 등의 주요 내진성능 인자들에 대한 분석결과와 비선형 해석 결과를 나타내었다.

반응수정계수의 영향에 따른 철골조 빌딩의 내진 성능 평가 (Performance Evaluation of Steel Moment Frame Buildings with Different Response Modification Factors)

  • 이기학
    • 한국지진공학회:학술대회논문집
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    • 한국지진공학회 2006년도 학술발표회 논문집
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    • pp.201-208
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    • 2006
  • This study lotuses on the seismic behavior of 3-, 9-, and 20-story steel moment resisting frame (MRF) structures designed in accordance with the 2000 International Building Code using different Response Modification factors (R factors) 8, 9, 10, 11, and 12. For a detailed case study, 30 different structures were evaluated for twenty ground motions representing the hazard level which is equal to a 2% probability exceeding in 50 years (2% in 50 years). The results showed that the current R factors provide conservative designs for the 3- and 9-story buildings for the Collapse Prevention performance objective. However, the 20-story buildings designed without using the minimum requirement of spectral acceleration CS prescribed in the IBC 2000 did not satisfy the seismic performance for Collapse Prevention performance.

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A design procedure of dissipative braces for seismic upgrading structures

  • Bergami, A.V.;Nuti, C.
    • Earthquakes and Structures
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    • 제4권1호
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    • pp.85-108
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    • 2013
  • The research presented in this paper deals with the seismic protection of existing frame structures by means of passive energy dissipation. A displacement-based procedure to design dissipative bracings for the seismic protection of frame structures is proposed and some applications are discussed. The procedure is based on the displacement based design using the capacity spectrum method, no dynamic non linear analyses are needed. Two performance objective have been considered developing the procedure: protect the structure against structural damage or collapse and avoid non-structural damage as well as excessive base shear. The compliance is obtained dimensioning dissipative braces to limit global displacements and interstorey drifts. Reference is made to BRB braces, but the procedure can easily be extended to any typology of dissipative brace. The procedure has been validated through a comparison with nonlinear dynamic response of two 2D r.c. frames, one bare and one infilled. Finally a real application, on an existing 3D building where dissipative braces available on market are used, is discussed.

Effect of MDOF structures' optimal dampers on seismic fragility of piping

  • Jung, Woo Young;Ju, Bu Seog
    • Earthquakes and Structures
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    • 제9권3호
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    • pp.563-576
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    • 2015
  • Over the past few decades, seismic retrofitting of structural systems has been significantly improved by the adoption of various methods such as FRP composite wraps, base isolation systems, and passive/active damper control systems. In parallel with this trend, probabilistic risk assessment (PRA) for structural and nonstructural components has become necessary for risk mitigation and the achievement of reliable designs in performance-based earthquake engineering. The primary objective of the present study was to evaluate the effect on piping fragility at T-joints due to seismic retrofitting of structural systems with passive energy-dissipation devices (i.e., linear viscous dampers). Three mid-rise building types were considered: without any seismic retrofitting; with distributed damper systems; with optimal placement of dampers. The results showed that the probability of piping system failure was considerably reduced in a Multi Degree of Freedom (MDOF) building retrofitted with optimal passive damper systems at lower floor levels. This effect of damper systems on piping fragility became insignificant as the floor level increased.