• 제목/요약/키워드: Seismic response characteristic

검색결과 80건 처리시간 0.023초

진동대실험을 통한 축소 아치구조물의 고유진동주기 분석 (Natural Vibration Period of Small-scaled Arch Structure by Shaking Table Test)

  • 김기철;강주원
    • 한국공간구조학회논문집
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    • 제15권4호
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    • pp.107-114
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    • 2015
  • Large spatial structures can not easily predict the dynamic behavior due to the lack of construction and design practices. The spatial structures are generally analyzed through the numerical simulation and experimental test in order to investigate the seismic response of large spatial structures. In the case of analysis for seismic response of large spatial structure, the many studies by the numerical analysis was carried out, researches by the shaking table test are very rare. In this study, a shaking table test of a small-scale arch structure was conducted and the dynamic characteristics of arch structure are analyzed. And the dynamic characteristics of arch structures are investigated according to the various column cross-section and length. It is found that the natural vibration periods of the small-scaled arch structure that have large column stiffness are very similar to the natural vibration period of the non-column arch structure. And in case of arch structure with large column stiffness, primary natural frequency period by numerical analysis is very similar to the primary natural frequency period of by shaking table test. These are because the dynamic characteristics of the roof structure are affected by the column stiffness of the spatial structure.

원전구조물의 비선형 시간영역 SSI 해석을 위한 경계반력법에 의한 유효지진하중과 PML의 적용 (Application of Effective Earthquake Force by the Boundary Reaction Method and a PML for Nonlinear Time-Domain Soil-Structure Interaction Analysis of a Standard Nuclear Power Plant Structure)

  • 이혁주;임재성;문일환;김재민
    • 한국지진공학회논문집
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    • 제27권1호
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    • pp.25-35
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    • 2023
  • Considering the non-linear behavior of structure and soil when evaluating a nuclear power plant's seismic safety under a beyond-design basis earthquake is essential. In order to obtain the nonlinear response of a nuclear power plant structure, a time-domain SSI analysis method that considers the nonlinearity of soil and structure and the nonlinear Soil-Structure Interaction (SSI) effect is necessary. The Boundary Reaction Method (BRM) is a time-domain SSI analysis method. The BRM can be applied effectively with a Perfectly Matched Layer (PML), which is an effective energy absorbing boundary condition. The BRM has a characteristic that the magnitude of the response in far-field soil increases as the boundary interface of the effective seismic load moves outward. In addition, the PML has poor absorption performance of low-frequency waves. For this reason, the accuracy of the low-frequency response may be degraded when analyzing the combination of the BRM and the PML. In this study, the accuracy of the analysis response was improved by adjusting the PML input parameters to improve this problem. The accuracy of the response was evaluated by using the analysis response using KIESSI-3D, a frequency domain SSI analysis program, as a reference solution. As a result of the analysis applying the optimal PML parameter, the average error rate of the acceleration response spectrum for 9 degrees of freedom of the structure was 3.40%, which was highly similar to the reference result. In addition, time-domain nonlinear SSI analysis was performed with the soil's nonlinearity to show this study's applicability. As a result of nonlinear SSI analysis, plastic deformation was concentrated in the soil around the foundation. The analysis results found that the analysis method combining BRM and PML can be effectively applied to the seismic response analysis of nuclear power plant structures.

복합 공간데이터베이스 적용을 통한 해안 시설영역 지진 유발 지반재해의 가시적 평가 (Visible Assessment of Earthquake-induced Geotechnical Hazards by Adopting Integrated Geospatial Database in Coastal Facility Areas)

  • 김한샘;선창국
    • 한국지진공학회논문집
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    • 제20권3호
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    • pp.171-180
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    • 2016
  • Earthquake event keeps increasing every year, and the recent cases of earthquake hazards invoke the necessity of seismic study in Korea, as geotechnical earthquake hazards, such as strong ground motion, liquefaction and landslides, are a significant threat to structures in industrial hub areas including coastal facilities. In this study, systemized framework of integrated assessment of earthquake-induced geotechnical hazard was established using advanced geospatial database. And a visible simulation of the framework was specifically conducted at two coastal facility areas in Incheon. First, the geospatial-grid information in the 3D domain were constructed with geostatistical interpolation method composed of multiple geospatial coverage mapping and 3D integration of geo-layer construction considering spatial outliers and geotechnical uncertainty. Second, the behavior of site-specific seismic responses were assessed by incorporating the depth to bedrock, mean shear wave velocity of the upper 30 m, and characteristic site period based on the geospatial-grid. Third, the normalized correlations between rock-outcrop accelerations and the maximum accelerations of each grid were determined considering the site-specific seismic response characteristics. Fourth, the potential damage due to liquefaction was estimated by combining the geospatial-grid and accelerations correlation grid based on the simplified liquefaction potential index evaluation method.

Nonlinear optimal control for reducing vibrations in civil structures using smart devices

  • Contreras-Lopez, Joaquin;Ornelas-Tellez, Fernando;Espinosa-Juarez, Elisa
    • Smart Structures and Systems
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    • 제23권3호
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    • pp.307-318
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    • 2019
  • The frequently excessive vibrations presented in civil structures during seismic events or service conditions may result in users' discomfort, or worst, in structures failure, producing economic and even human casualties. This work contributes in proposing the synthesis of a nonlinear optimal control strategy for semiactive structural control, with the main characteristic that the synthesis considers both the structure model and the semiactive actuator nonlinear dynamics, which produces a nonlinear system that requires a nonlinear controller design. The aim is to reduce the unwanted vibrations in the response of civil structures, by means of intelligent fluid semiactive actuator such as the Magnetorheological Damper (MRD), which is a device with a low level of power consumption. The civil structures for which the proposed control methodology can be applied are those admitting a state-dependent coefficient factorized representation model, such as buildings, bridges, among others. A scaled model of a three storey building is analyzed as a case study, whose dynamical response involves displacement, velocity and acceleration of each one of the storeys, subjected to the North-South component of the September 19th., 2017, Puebla-Morelos (7.1M), Mexico earthquake. The investigation rests on comparing the structural response over time for two different conditions: with no control device installed and with one MRD installed between the first floor and the ground, where a nonlinear optimal signal for the MRD input voltage is determined. Simulation results are presented to show the effectiveness of the proposed controller for reducing the building's dynamical response.

복합면진장치를 적용한 무정전전원장치의 1축 진동대실험 기반 동적특성 분석 (Dynamic Characteristic of the Seismic Performance of Uninterruptible Power Supply with Combined Isolator Using Shaking Table Test)

  • 이지언;이승재;박원일;최경규
    • 한국구조물진단유지관리공학회 논문집
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    • 제26권1호
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    • pp.19-28
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    • 2022
  • 본 연구에서는 전력·통신 설비로 분류되는 무정전전원장치의 내진성능을 향상하기 위하여 고감쇠고무와 와이어 면진장치를 결합한 3가지 유형의 복합면진장치를 개발하였다. 복합면진장치를 적용한 UPS의 동적 특성을 분석하기 위하여 단축 진동대 실험을 수행하였다. 진동대 실험은 국외 진동대 실험 기준인 ICC-ES AC156을 따라 수행하였으며 기준에서 제시하고 있는 요구응답스텍트럼을 기반으로 입력 지진파를 생성하였다. 입력 지진파의 스케일을 50%에서 200%까지 증가시키며 가진하였다. 진동대 실험을 바탕으로 UPS의 손상양상 및 고유진동수, 감쇠비. 동증폭계수, 상대변위 등 동적특성을 비교 및 분석하였다. 3가지 유형의 복합면지장치를 적용함에 따라 UPS의 내진성능이 향상되었으며 이를 통해 개발 면진장치의 성능을 검증하였다.

지진특성을 고려한 장경간 현수교량의 시공방안별 내진성능 평가에 관한 연구 (A Study on Seismic Capacity Assessment of Long-Span Suspension Bridges by Construction Methods Considering Earthquake Characteristics)

  • 한성호;장선재;임남형
    • 대한토목학회논문집
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    • 제30권2A호
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    • pp.93-102
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    • 2010
  • 시공단계별 수치해석 및 안전성 평가는 장경간 교량의 시공 중 불안전성을 해결하기 위한 주요 검토사항으로 고려되어야 한다. 장경간 교량의 시공단계해석에 따른 구조응답특성 평가 시, 근거리지진(NFGM)의 영향은 기존 입력지진동 데이터와는 확연히 다른 특성을 가지고 있기 때문에 내진설계를 위한 주요 변수로 평가되어야 한다. 따라서 이 연구에서는 응답스펙트럼 해석결과를 바탕으로 NFGM 특성에 따른 장경간 교량의 응답양상을 재검토하였으며, 장경간 교량의 시공단계해석 및 신뢰성평가를 효율적으로 수행하기 위해 관련연구에서 제시된 수치해석 프로그램을 개선하였다. NFGM 특성을 고려한 다양한 시공방안의 우수성은 주요 부재의 시간이력해석 결과를 이용하여 평가하였다. 정량적인 안전수준 평가를 위해 확률변수에 포함된 External Uncertainty의 영향을 고려하여 신뢰성해석을 수행하였으며, NFGM 특성에 따른 주요 시공단계의 안전지수 및 파괴확률을 제시하였다. 아울러, 몬테카르로 시뮬레이션(MCS)을 이용하여 신뢰성해석 결과에 대해 Internal Uncertainty의 영향을 검토하였으며, 주요 해석결과의 분포양상을 평가하였다. 이 연구는 NFGM 특성을 고려한 장경간 교량의 내진설계 시, 시공안전성 향상을 위한 기초자료를 제공할 것으로 기대된다.

μ-GA를 이용한 원전 캐비닛구조물의 최적감쇠보강 (The optimum damping retrofit for cabinet structures of NPP by μ-GA)

  • 이계희;하동호
    • 한국지진공학회논문집
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    • 제9권1호통권41호
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    • pp.1-7
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    • 2005
  • 본 논문에서는 원전내부의 내진범주 1급 계전기를 포함하고 있는 캐비닛 구조물의 최적내진보강에 대한 연구를 수행하였다. 지진시 계전기는 구조적인 파괴보다는 떨림에 의한 기능적 파괴가 발생한다. 이를 방지하기 위해서는 캐비닛구조물의 응답을 적정 수준이하로 감소시켜야 하므로 다양한 감쇠보강의 설치패턴에 따라 최적의 감쇠계수를 ${\mu}$-GA(micro-Genetic Algorithm)기법을 이용하여 산정하였다. 대상캐비닛 구조물은 해석의 정확도와 계산의 효율성을 만족시키기 위해 이용한 프레임구조로 모델링되었다. 구조물의 응답은 감쇠기의 비선형거동을 고려한 비선형 시간이력해석에 의해 얻어진 가속도응답스펙트럼으로 나타내었다. 목적함수는 구조물의 해석에서 얻어진 응답스펙트럼의 최대값과 목표 포괄기기내진력 스펙트럼 (GERS; General Equipment Ruggedness Spectra)의 최대응답비를 기초로 작성되었다. 해석결과 적절한 보강패턴을 선정한 경우 좋은 적합도의 향상을 보였으며 특히 감쇠지수의 값이 작은 경우 적합도의 개선효과가 뛰어났다.

장주기구조물의 탄소성응답특성을 고려한 지진안전성 평가 (Seismic Safety Assessment of Long Period Structures Base on Elastic/Inelastic Response Characteristics)

  • 방명석
    • 한국안전학회지
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    • 제26권3호
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    • pp.52-58
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    • 2011
  • 지진별 특성이 사회간접시설에 미치는 영향을 평가하는 것은 내진성능의 향상을 위해 중요한 검토사항이다. 이 연구에서는 근거리 및 원거리 지진의 특성을 고려하여 장주기 골조구조물의 구조거동을 합리적으로 평가하는 방법을 비교분석하였다. 이를 위해서 입력지진동의 영향을 명확하게 반영할 수 있는 대상구조물을 선정하여 탄성 및 비탄성 시간이력해석을 수행하였다. 수치해석결과를 바탕으로 지진특성에 따른 전단력, 모멘트, 가속도 및 변위응답의 분포양상을 검토하고 차이점을 분석하였다. 또한 대상구조물의 비탄성 거동을 파악하기 위해서 소성힌지의 발생순서를 모사운용하여 붕괴발생모드를 해석하였다. 이 연구결과는 장주기 골조구조물의 내진안전성 평가를 위한 효율적인 방법을 제시하고 근거리 지진의 안전성에 미치는 영향을 분석하였다.

유전자알고리즘을 이용한 캐비닛 구조의 최적감쇠보강 (The optimum damper retrofit of cabinet structures by genetic)

  • 이계희;최익창;하동호
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 2004년도 가을 학술발표회 논문집
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    • pp.379-386
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    • 2004
  • The optimal seismic retrofitting of NPP(Nuclear Power Plant) cabinet structures that contained class 1 relays were studies in this paper. During earthquake event, the failure modes of relays are not appeared in form of structural failure, but are appeared in form of contact chatter of relay. Therefore, the retrofitting of cabinet has to be aimed to the reducing of the structural response, such as acceleration. In this study, the optimal characteristic values of dampers were searched by μ-GA (micro-Genetic Algorithm) scheme for several installation patterns. To keep accuracy and efficiency of analysis, the structural models of cabinet were considered as a frame structure. The responses of structure were obtained in form of acceleration response spectra derived from the results of nonlinear time history analysis including damping nonlinearity. The fitness function of the optimum procedure was constructed based on the ratio of maximum spectral value and target GERS (General Equipment Ruggedness Spectra). The results show the good improvements of fitness fur adequate retrofitting pattern. Especially, the improvements of fitness were remarkable when the damping exponents are proper.

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지반-구조물 상호작용을 고려한 교량상 장대레일의 비선형 지진응답해석 (Nonlinear earthquake response analysis of CWR on bridge considering soil-structure interaction.)

  • 신한철;조선규;양신추;최준성
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2004년도 추계학술대회 논문집
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    • pp.733-738
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    • 2004
  • Recently continuous welded rail is generally used to ensure running performances and to overcome the problems such as structural vulnerability and fastener damage at the rail expansion joint. Though the use of continuous welded rail on bridge has the advantage of decreasing the vibration and damage of rail, it still the risk of buckling and breaking of rail due to change of temperature, starting and/or breaking force, axial stress concentration and so on. So, VIC code and many methods has been developed by researchers considering rail-bridge interaction. Although there are many research concerning stability of continuous welded rail about temperature change on bridge and starting and/or breaking force, the study of continuous welded mil for earthquake load is still unsufficient. In this study, the nonlinear seismic response analysis of continuous welded rail on bridge considering soil-structure interaction, geotechnical characteristic of foundation and earthquake isolation equipment has been performed to examine the stability of continuous welded rail.

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