• 제목/요약/키워드: seismic factors

검색결과 421건 처리시간 0.027초

사면안정성 영향인자의 민감도 분석 (Sensitivity Analyses of Influencing Factors on Slope Stability)

  • 박병수;전상현;조광준;유남재
    • 한국방재학회 논문집
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    • 제10권3호
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    • pp.91-100
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    • 2010
  • 본 논문에서는 절 성토 사면의 안정성에 영향을 미치는 영향인자의 민감도 분석을 수행하였다. 사면안정성 해석은 건기 및 우기조건, 지진시로 구별하여 해석하였다. 건기와 우기 조건에 대한 민감도 분석결과, 절토사면에서는 점착력, 내부마찰각, 단위 중량 등이 사면안정성에 미치는 영향은 우기조건 보다 더 큼을 알 수 있고, 성토사면에서는 건기와 우기조건에서 모두 유사한 영향을 주는 것으로 나타났다. 또한 수평지진계수는 전체사면에서 건기와 우기조건에 관계없이 유사한 값의 범위로 영향을 미치는 것으로 분석되었다. 강도정수인 점착력과 내부마찰각은 건기 및 우기조건에 관계없이 사면안정성에 단위중량, 지진계수에 비하여 상대적으로 큰 영향을 미치는 영향인자로 나타났다.

지진 하중을 받는 철골 모멘트 골조 빌딩에 대한 반응수정계수의 평가 (Evaluation of Response Modification Factors for Steel Moment Frame Buildings Subjected to Seismic Loads)

  • 이기학;우성우
    • 한국강구조학회 논문집
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    • 제18권5호
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    • pp.585-596
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    • 2006
  • 이 연구의 목적은 높은 지진 위험도를 가진 지역에 위치한 철골조 모멘트 구조물에 대한 반응수정계수의 영향을 평가함을 목표로 하고 있다. 3층, 9층, 그리고 20층으로 구성된 구조물 모델이 2000 International Building Code(IBC) 기준과 각각의 다른 반응수정계수들(8, 9, 10, 11, 12)에 따라 설계되었다. 이에 따라 전체 30개의 구조물이 50년 동안의 2% 초과 확률을 가지는 20개의 지반 운동에 대해 변위요구와 변위능력 값이 조사되었다. 이 결과는 현재의 지진 기준에 따라 설계된 표준적인 구조물과의 성능 비교를 통해 반응수정계수의 변화에 따른 효과를 조사하였다. 본 연구에서 3층 및 9층 구조물은 기존의 반응수정계수 값 8에 비해 크게 설계되었음에도 불구하고 붕괴방지의 성능목표를 만족하는데 안정적인 반응을 보여 주었다. 그러나 2000 IBC에서 명시하고 있는 탄성설계스펙트럼(CS)에 대한 최소 값의 적용 없이 설계된 20층 구조물은 붕괴방지의 성능목표에 대해 낮은 내진성능을 보여 주었다.

유한요소 해석을 활용한 매설 배관의 지진 취약도 곡선 도출 기법 비교 (Comparative Study on Seismic Fragility Curve Derivation Methods of Buried Pipeline Using Finite Element Analysis)

  • 이승준;윤성식;송현성;이진미;이영주
    • 한국지진공학회논문집
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    • 제27권5호
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    • pp.213-220
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    • 2023
  • Seismic fragility curves play a crucial role in assessing potential seismic losses and predicting structural damage caused by earthquakes. This study compares non-sampling-based methods of seismic fragility curve derivation, particularly the probabilistic seismic demand model (PSDM) and finite element reliability analysis (FERA), both of which require employing sophisticated finite element analysis to evaluate and predict structural damage caused by earthquakes. In this study, a three-dimensional finite element model of API 5L X65, a buried gas pipeline widely used in Korea, is constructed to derive seismic fragility curves. Its seismic vulnerability is assessed using nonlinear time-history analysis. PSDM and a FERA are employed to derive seismic fragility curves for comparison purposes, and the results are verified through a comparison with those from the Monte Carlo Simulation (MCS). It is observed that the fragility curves obtained from PSDM are relatively conservative, which is attributed to the assumption introduced to consider the uncertainty factors. In addition, this study provides a comprehensive comparison of seismic fragility curve derivation methods based on sophisticated finite element analysis, which may contribute to developing more accurate and efficient seismic fragility analysis.

부분안전계수를 이용한 케이슨식안벽의 신뢰성설계법 (Reliability Based Design of Caisson type Quay Wall Using Partial Safety Factors)

  • 김동현;윤길림
    • 한국해안·해양공학회논문집
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    • 제21권3호
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    • pp.224-229
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    • 2009
  • 케이슨식 안벽의 Level I 신뢰성설계를 위한 부분안전계수를 산정하였다. 일계신뢰도법에 의한 부분안전계수는 한계상태함수의 확률변수에 대한 민감도, 목표신뢰도지수, 확률특성치 및 설계특성치 등의 함수로써 표현하였으며 전면조위와 잔류수위에 대해서는 현행설계법과의 연계성을 유지하기 위하여 수정부분안전계수를 새롭게 정의하였다. 수치해석을 통하여 목표신뢰도지수에 대한 부분안전계수를 산정하였으며 지진계수의 확률분포는 극치분포를 사용하였다. 지진계수의 설계치를 적용함에 있어서 재현주기가 길수록 부분안전계수가 작게 산정됨을 확인하였다.

Effect of seismic design level on safety against progressive collapse of concentrically braced frames

  • Rezvani, Farshad Hashemi;Asgarian, Behrouz
    • Steel and Composite Structures
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    • 제16권2호
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    • pp.135-156
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    • 2014
  • In this research the effect of seismic design level as a practical approach for progressive collapse mitigation and reaching desired structural safety against it in seismically designed concentric braced frame buildings was investigated. It was achieved by performing preliminary and advanced progressive collapse analysis of several split-X braced frame buildings, designed for each seismic zone according to UBC 97 and by applying various Seismic Load Factors (SLFs). The outer frames of such structures were studied for collapse progression while losing one column and connected brace in the first story. Preliminary analysis results showed the necessity of performing advanced element loss analysis, consisting of Vertical Incremental Dynamic Analysis (VIDA) and Performance-Based Analysis (PBA), in order to compute the progressive collapse safety of the structures while increasing SLF for each seismic zone. In addition, by sensitivity analysis it became possible to introduce the equation of structural safety against progressive collapse for concentrically braced frames as a function of SLF for each seismic zone. Finally, the equation of progressive collapse safety as a function of bracing member capacity was presented.

Effects of diaphragm flexibility on the seismic design acceleration of precast concrete diaphragms

  • Zhang, Dichuan;Fleischman, Robert B.;Lee, Deuckhang
    • Computers and Concrete
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    • 제25권3호
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    • pp.273-282
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    • 2020
  • A new seismic design methodology for precast concrete diaphragms has been developed and incorporated into the current American seismic design code. This design methodology recognizes that diaphragm inertial forces during earthquakes are highly influenced by higher dynamic vibration modes and incorporates the higher mode effect into the diaphragm seismic design acceleration determination using a first mode reduced method, which applies the response modification coefficient only to the first mode response but keeps the higher mode response unreduced. However the first mode reduced method does not consider effects of diaphragm flexibility, which plays an important role on the diaphragm seismic response especially for the precast concrete diaphragm. Therefore this paper investigated the effect of diaphragm flexibility on the diaphragm seismic design acceleration for precast concrete shear wall structures through parametric studies. Several design parameters were considered including number of stories, diaphragm geometries and stiffness. It was found that the diaphragm flexibility can change the structural dynamic properties and amplify the diaphragm acceleration during earthquakes. Design equations for mode contribution factors considering the diaphragm flexibility were first established through modal analyses to modify the first mode reduced method in the current code. The modified first mode reduced method has then been verified through nonlinear time history analyses.

2방향 지진하중을 받는 세굴된 교각기초의 파괴확률분석 (Failure Probability of Scoured Pier Foundation under Bi-directional Ground Motions)

  • 김상효;마호성;이상우;김영훈
    • 한국지진공학회:학술대회논문집
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    • 한국지진공학회 2002년도 추계 학술발표회 논문집
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    • pp.300-307
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    • 2002
  • Bridge foundation failure considering the effect of local scour around pier foundations under hi-directional seismic excitations is examined in probabilistic perspectives. The seismic responses of bridges with deep foundations are evaluated with a simplified mechanical model, which can consider the local scour effect around the deep foundation in addition to many other components. The probabilistic characteristics of local scour depths are estimated by using the Monte Carlo simulation. The probabilistic characteristics of basic random variables used in the Monte Carlo simulation are determined from the actual hydraulic data collected in middle size streams in Korea. The failure condition of deep foundation is assumed as bearing capacity failure of the ground below the foundation base. The probability of foundation failure of a simply supported bridge with various scour conditions and hi-directional seismic excitations are examined. It is found that the local scour and the recovery duration are critical factors in evaluating the probability of foundation failure. Moreover, the probability of foundation failure under hi-directional seismic excitations is much higher than under uni-directional seismic excitations. Therefore, it is reasonable to consider hi-directional seismic excitations in evaluating the seismic safety of bridge systems scoured by a flood.

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Investigating the effect of bond slip on the seismic response of RC structures

  • Fallah, Mohammad Mehdi;Shooshtari, Ahmad;Ronagh, Hamid Reza
    • Structural Engineering and Mechanics
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    • 제46권5호
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    • pp.695-711
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    • 2013
  • It is reasonable to assume that reinforced concrete (RC) structures enter the nonlinear range of response during a severe ground motion. Numerical analysis to predict the behaviour therefore must allow for the presence of nonlinear deformations if an accurate estimate of seismic response is aimed. Among the factors contributing to inelastic deformations, the influence of the degradation of the bond slip phenomenon is important. Any rebar slip generates an additional rotation at the end regions of structural members which are not accounted for in a conventional analysis. Although these deformations could affect the seismic response of RC structures considerably, they are often neglected due to the unavailability of suitable models. In this paper, the seismic response of two types of RC structures, designed according to the Iranian concrete code (ABA) and the Iranian seismic code (2800), are evaluated using nonlinear dynamic and static analyses. The investigation is performed using nonlinear dynamic and static pushover analysis considering the deformations due to anchorage slip. The nonlinear analysis results confirm that bond slip significantly influences the seismic behavior of RC structure leading to an increase of lateral deformations by up to 30% depending on the height of building. The outcomes also identify important parameters affecting the extent of this influence.

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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현행 내진설계 규준의 수평강도 요구에 대한 평가 (Evaluation of the Strength Required in Current Seismic Design Code)

  • 한상환;오영훈;이리형
    • 전산구조공학
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    • 제10권4호
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    • pp.281-290
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    • 1997
  • 현행 내진설계 규준에서 사용하고 있는 반응수정계수는 설계지진하중과 유사한 지진발생시 구조물이 비선형 거동을 하도록 탄성응답에서 요구되는 밑면전단력 값을 낮추는 계수라 할 수 있다. 따라서 반응수정계수는 하중저감계수(force reduction factor)라고 할 수 있으며, 이러한 값들은 경험적으로 결정된 것이어서 예상지진에 대하여 구조설계자가 설계한 건물이 어느정도의 비선형 거동을 할지는 예측하기가 힘들다. 본 연구에서는 목표가 되는 연성비(target ductility ratio)에 따라 요구되는 밑면전단력의 값을 구하고 이를 규준에서 요구하는 값과 비교할 것이다. 만약 요구되는 값이 규준 값 보다 크다면 이는 구조물이 가지는 부가강도(overstrength)나 잉여력(redundancy)이 담당해야 한다. 모멘트연성골조 건물을 설계한 후 이를 push-over 해석에 의하여 부가강도를 찾아 보아 요구강도와 비교할 것이다.

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