• 제목/요약/키워드: earthquake simulation test

검색결과 117건 처리시간 0.024초

상사법칙이 적용된 철근콘크리트 기둥 축소모형의 지진 취약도 분석 (Fragility Analysis of A Scaled Model of Reinforced Concrete Column in Accordance with Similitude Law)

  • 박동욱;전법규;김남식;박자민;조재열
    • 한국지진공학회논문집
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    • 제21권2호
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    • pp.87-93
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    • 2017
  • Many studies are conducted in several fields for fragility analysis of structures or elements which is a probabilistic seismic safety analysis in consideration with uncertainty of seismic loading. It is hard to directly conduct fragility analysis for an infrastructure with social importance due to its size. Therefore, a fragility analysis for an infrastructure mainly conducted in element level or conducted with scaled model built in accordance with similarity law. In this article, fragility analysis for prototype and scaled model of reinforced concrete column was conducted with numerical models which had been updated by the results of shaking table test and pseudo dynamic test. As a result, response stress from the numerical analysis result of prototype model was higher than that from scaled model due to different stiffness ratios between steel and concrete. However, the probability of failure for scaled model was higher than that for prototype model because failure criteria for scaled model was down due to similarity law. Also it was evaluated that probability of failure by using log normal standard deviation of response stresses by spectrum matched accelerograms was more reliable than probability of failure by using existing coefficient of variation normally used.

3층 전단벽 구조물의 지진응답에 관한 수치해석 (Numerical Study on Seismic Behavior of a Three-Story RC Shear Wall Structure)

  • 박다원;최영준;홍정욱
    • 한국지진공학회논문집
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    • 제25권3호
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    • pp.111-119
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    • 2021
  • A shear wall is a structural member designed to effectively resist in-plane lateral forces, such as strong winds and earthquakes. Due to its efficiency and stability, shear walls are often installed in residential buildings and essential facilities such as nuclear power plants. In this research, to predict the results of the shaking table test of the three-story shear wall RC structure hosted by the Korea Atomic Energy Research Institute, three types of numerical modeling techniques are proposed: Preliminary, Calibrated 1, and Calibrated 2 models, in order of improvement. For the proposed models, an earthquake of the 2016 Gyeongju, South Korea (peak ground acceleration of 0.28 g) and its amplified earthquake (peak ground acceleration of 0.50 g) are input. The response spectra of the measuring points are obtained by numerical analysis. Good agreement is observed in the comparisons between the experiment results and the simulation conducted on the finally adopted numerical model, Calibrated 2. In the process of improving the model, this paper investigates the influences of the mode shape, material properties, and boundary conditions on the structure's seismic behavior.

모듈러 신축이음장치 지진거동 모사 실험적 연구 (Experimental Study on the Seismic Behavior Simulation of Modular Expansion Joint)

  • 이정우;최은석
    • 한국구조물진단유지관리공학회 논문집
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    • 제26권5호
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    • pp.43-48
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    • 2022
  • 본 논문에서는 신축량이 크고 내구성이 우수한 모듈러 신축이음장치의 내진성능을 평가하기 위해 지진응답 거동해석과 지진거동모사실험을 수행하였다. 지진응답 거동해석은 한국(KS), 미국(AASHTO LRFD), 그리고 유럽(Eurocode)의 설계기준 응답스팩트럼을 적용하여 인공지진파를 생성하였다. 해석대상 교량은 경간 1,000m 사장교를 대상으로 각 기준에 대해 세가지의 인공지진파를 생성하였으며, 지진거동모사실험은 축방향과 횡방향의 동적 유압가력기를 사용하여 인공지진파를 재현하였다. 실험결과 축방향, 횡방향 및 양방향에 인공지진파를 재하하였을 때 신축이음의 거동 이상이나 파괴는 발생하지 않았으며, 신축이음장치의 지진거동에 대한 내구성 및 안전성을 확인하였다.

이중 슬립마찰면을 이용한 면진장치의 면진성능평가 (Seismic Performance Evaluation of Seismic Isolation Device with Double Slip Friction Surface)

  • 손수원;권정호;김정곤;정용규;황은동
    • 한국재난정보학회 논문집
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    • 제16권4호
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    • pp.712-722
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    • 2020
  • 연구목적: 최근 국내 규모 5.0이상의 지진으로 인한 피해 발생이 증가하고 있다. 지진이 발생하면 구조물 이외에도 내부설비, 전력기기 등에 피해를 주게 된다. 이에 본 논문에서는 지진으로 인한 배전반과 같은 전기기기의 피해를 저감시킬 수 있는 이중 슬립마찰면이 있는 면진장치를 개발하였으며, 이에 대한 면진성능을 평가하였다. 연구방법: 면진성능을 평가하기 위해 진동대 시험을 수행하였으며, 면진장치 유무에 따른 성능비교를 수행하였다. 다양한 주파수와 가속도 수준에 대한 응답가속도 및 변위를 비교하여 면진장치의 감쇠효과를 분석하였다. 연구결과: 시험결과, 면진장치가 설치되어 있는 경우가 면진장치가 설치되어 있지 않은 경우보다 가속도 증폭이 최대 42% 작았다. 이는 면진장치의 이중슬립마찰면 사이에서 발생한 변위가 지진에너지를 소산하는 역할을 하여 증폭에너지가 감소된 것으로 판단된다. 결론: 이중 슬립마찰면을 적용한 면진장치는 약진보다는 강진에서 지진감쇠효과가 더 컸으며, 주파수가 클수록 지진감쇠효과가 더 좋았다. 따라서, 배전반과 같은 전기기기에 적용하여 지진에너지를 감쇠하는 작용을 할 수 있을 것으로 판단된다.

Spatial substructure hybrid simulation tests of high-strength steel composite Y-eccentrically braced frames

  • Li, Tengfei;Su, Mingzhou;Sui, Yan
    • Steel and Composite Structures
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    • 제34권5호
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    • pp.715-732
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    • 2020
  • High-strength steel composite Y-eccentrically braced frame (Y-HSS-EBF) is a novel structural system. In this study, the spatial substructure hybrid simulation test (SHST) method is used to further study the seismic performance of Y-HSS-EBF. Firstly, based on the cyclic loading tests of two single-story single-span Y-HSS-EBF planar specimens, a finite element model in OpenSees was verified to provide a reference for the numerical substructure analysis model for the later SHST. Then, the SHST was carried out on the OpenFresco test platform. A three-story spatial Y-HSS-EBF model was taken as the prototype, the top story was taken as the experimental substructure, and the remaining two stories were taken as the numerical substructure to be simulated in OpenSees. According to the test results, the validity of the SHST was verified, and the main seismic performance indexes of the SHST model were analyzed. The results show that, the SHST based on the OpenFresco platform has good stability and accuracy, and the results of the SHST agree well with the global numerical model of the structure. Under strong seismic action, the plastic deformation of Y-HSS-EBF mainly occurs in the shear link, and the beam, beam-columns and braces can basically remain in the elastic state, which is conducive to post-earthquake repair.

1-G 진동대 실험을 이용한 시트파일 보강재의 액상화 및 피해 방지 효과 (Liquefaction Prevention and Damage Reduction Effect of Reinforcement by Sheet Pile Using 1-G Shaking Table Test)

  • 심성훈;윤종찬;손수원;김진만
    • 한국지진공학회논문집
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    • 제24권5호
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    • pp.211-217
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    • 2020
  • Earthquake preparedness has become more important with recent increase in the number of earthquakes in Korea, but many existing structures are not prepared for earthquakes. There are various types of liquefaction prevention method that can be applied, such as compaction, replacement, dewatering, and inhibition of shear strain. However, most of the liquefaction prevention methods are applied before construction, and it is important to find optimal methods that can be applied to existing structures and that have few effects on the environment, such as noise, vibration, and changes in underground water level. The purpose of this study is to estimate the correlation between the displacement of a structure and variations of pore water pressure on the ground in accordance with the depth of the sheet file when liquidation occurs. To achieve this, a shaking table test was performed for Joo-Mun-Jin standard sand and an earth pressure, accelerometer, pore water pressure transducer, and LVDT were installed in both the non-liquefiable layer and the liquefiable layer to measure the subsidence and excess pore water pressure in accordance with the time of each embedded depth. Then the results were analyzed. A comparison of the pore water pressure in accordance with Hsp/Hsl was shown to prevent lateral water flow at 1, 0.85 and confirmed that the pore water pressure increased. In addition, the relationship between Hsp/Hsl and subsidence was expressed as a trend line to calculate the expected settlement rate formula for the embedded depth ratio.

Seismic response of steel reinforced concrete spatial frame with irregular section columns under earthquake excitation

  • Xue, Jianyang;Zhou, Chaofeng;Liu, Zuqiang;Qi, Liangjie
    • Earthquakes and Structures
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    • 제14권4호
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    • pp.337-347
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    • 2018
  • This paper presents some shaking table tests conducted on a 1/4-scaled model with 5-story steel reinforced concrete (SRC) spatial frame with irregular section columns under a series of base excitations with gradually increasing acceleration peaks. The test frame was subjected to a sequence of seismic simulation tests including 10 white noise vibrations and 51 seismic simulations. Each seismic simulation was associated with a different level of seismic disaster. Dynamic characteristic, strain response, acceleration response, displacement response, base shear and hysteretic behavior were analyzed. The test results demonstrate that at the end of the loading process, the failure mechanism of SRC frame with irregular section columns is the beam-hinged failure mechanism, which satisfies the seismic code of "strong column-weak beam". With the increase of acceleration peaks, accumulated damage of the frame increases gradually, which induces that the intrinsic frequency decreases whereas the damping ratio increases, and the peaks of acceleration and displacement occur later. During the loading process, torsion deformation appears and the base shear grows fast firstly and then slowly. The hysteretic curves are symmetric and plump, which shows a good capacity of energy dissipation. In summary, SRC frame with irregular section columns can satisfy the seismic requirements of "no collapse under seldom earthquake", which indicates that this structural system is suitable for the construction in the high seismic intensity zone.

지진격리된 원전배관의 지진취약도 분석 (Seismic Fragility Analysis of Base Isolated NPP Piping Systems)

  • 전법규;최형석;함대기;김남식
    • 한국지진공학회논문집
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    • 제19권1호
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    • pp.29-36
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    • 2015
  • Base isolation is considered as a seismic protective system in the design of next generation Nuclear Power Plants (NPPs). If seismic isolation devices are installed in nuclear power plants then the safety under a seismic load of the power plant may be improved. However, with respect to some equipment, seismic risk may increase because displacement may become greater than before the installation of a seismic isolation device. Therefore, it is estimated to be necessary to select equipment in which the seismic risk increases due to an increase in the displacement by the installation of a seismic isolation device, and to perform research on the seismic performance of each piece of equipment. In this study, modified NRC-BNL benchmark models were used for seismic analysis. The numerical models include representations of isolation devices. In order to validate the numerical piping system model and to define the failure mode, a quasi-static loading test was conducted on the piping components before the analysis procedures. The fragility analysis was performed by using the results of the inelastic seismic response analysis. Inelastic seismic response analysis was carried out by using the shell finite element model of a piping system considering internal pressure. The implicit method was used for the direct integration time history analysis. In addition, the collapse load point was used for the failure mode for the fragility analysis.

Research on the anti-seismic performance of composite precast utility tunnels based on the shaking table test and simulation analysis

  • Yang, Yanmin;Li, Zigen;Li, Yongqing;Xu, Ran;Wang, Yunke
    • Computers and Concrete
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    • 제27권2호
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    • pp.163-173
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    • 2021
  • In this paper, the parameters of haunch height, reinforcement ratio and site condition were evaluated for the influence on the seismic performance of a composite precast fabricated utility tunnel by shaking table test and numerical simulation. The dynamic response laws of acceleration, interlayer displacement and steel strain under unidirectional horizontal seismic excitation were analyzed through four specimens with a similarity ratio of 1:6 in the test. And a numerical model was established and analyzed by the finite element software ABAQUS based on the structure of utility tunnel. The results indicated that composite precast fabricated utility tunnel with the good anti-seismic performance. In a certain range, increasing the height of haunch or the ratio of reinforcement could reduce the influence of seismic wave on the utility tunnel structure, which was beneficial to the structure earthquake resistance. The clay field containing the interlayer of liquefied sandy soil has a certain damping effect on the structure of the utility tunnel, and the displacement response could be reduced by 14.1%. Under the excitation of strong earthquake, the reinforcement strain at the side wall upper end and haunches of the utility tunnel was the biggest, which is the key part of the structure. The experimental results were in good agreement with the fitting results, and the results could provide a reference value for the anti-seismic design and application of composite precast fabricated utility tunnel.

1/12 축소 철근콘크리트 주상복합구조물의 진동대실험 (Shaking Table Tests of A 1/12-Scale Reinforced Concrete Upper-Wall Lower-Frame Structure)

  • 이한선;김상연;고동우;권기혁;김병현
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2001년도 봄 학술발표회 논문집
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    • pp.139-144
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    • 2001
  • The objective of this study is to investigate the behavior of 1/12 scale upper-wall lower-frame reinforced concrete structure subjected to earthquake excitations. For this purpose, Taft N21E earthquake accelerogram was simulated by using 4m$\times$4m shaking table. When the input acceleration is compared to that of output, it was found that simulation of shaking table is satisfactory. From the test results with peak ground acceleration(PGA) 0.22g, which corresponds to 0.11g in prototype by the similitude law, it can be observed that the model responded in elastic behavior and that large interstory drift occurred at the lower part of the structure.

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