• 제목/요약/키워드: Earthquake Measures

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스마트시티의 재난안전을 위한 사회기술기반의 주민 자조(自助) 방안 고찰 - 일본 가마이시시(釜石市) 교훈을 중심으로 (A Study on inhabitants self-help scheme via sociotechnology for disaster safety of the smart city - Mainly on lessons of Kamaisi-city in Japan)

  • 장혜정;김도년
    • 한국정보전자통신기술학회논문지
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    • 제9권4호
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    • pp.388-403
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    • 2016
  • 2016년 7월 5일 울산 앞바다 규모5.0 지진은 대한민국이 지진에 안전하지 않을 수 있다는 불안감을 주었고 2016년 7월 20일 부산 가스냄새는 지역주민들에게 지진에 대한 괴담 확산으로 번졌다. 이와 같이 스마트 시티에서는 재난안전에 관한 정확한 정보가 중요하며 피해주민과 커뮤니티에 대한 빠른 대응이 재난회복에 영향을 주게 된다. 본 연구는 스마트시티의 피해주민을 대상으로 사회기술을 응용하여 재난에 대한 불안환기모델의 중요성을 밝히고, 동일본대지진 당시 가마이시시(釜石市) 주민들의 자조(自助)내용을 심도 있게 고찰하여 적용 방안을 찾아내고, 재난대응 및 회복을 위한 보완수단으로 주민들이 실천할 수 있는 자조방안에 대해 제시하고자 한다.

Ground-Motion Prediction Equations based on refined data for dynamic time-history analysis

  • Moghaddam, Salar Arian;Ghafory-Ashtiany, Mohsen;Soghrat, Mohammadreza
    • Earthquakes and Structures
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    • 제11권5호
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    • pp.779-807
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    • 2016
  • Ground Motion Prediction Equations (GMPEs) are essential tools in seismic hazard analysis. With the introduction of probabilistic approaches for the estimation of seismic response of structures, also known as, performance based earthquake engineering framework; new tasks are defined for response spectrum such as the reference criterion for effective structure-specific selection of ground motions for nonlinear time history analysis. One of the recent efforts to introduce a high quality databank of ground motions besides the corresponding selection scheme based on the broadband spectral consistency is the development of SIMBAD (Selected Input Motions for displacement-Based Assessment and Design), which is designed to improve the reliability of spectral values at all natural periods by removing noise with modern proposed approaches. In this paper, a new global GMPE is proposed by using selected ground motions from SIMBAD to improve the reliability of computed spectral shape indicators. To determine regression coefficients, 204 pairs of horizontal components from 35 earthquakes with magnitude ranging from Mw 5 to Mw 7.1 and epicentral distances lower than 40 km selected from SIMBAD are used. The proposed equation is compared with similar models both qualitatively and quantitatively. After the verification of model by several goodness-of-fit measures, the epsilon values as the spectral shape indicator are computed and the validity of available prediction equations for correlation of the pairs of epsilon values is examined. General consistency between predictions by new model and others, especially, in short periods is confirmed, while, at longer periods, there are meaningful differences between normalized residuals and correlation coefficients between pairs of them estimated by new model and those are computed by other empirical equations. A simple collapse assessment example indicate possible improvement in the correlation between collapse capacity and spectral shape indicators (${\varepsilon}$) up to 20% by selection of a more applicable GMPE for calculation of ${\varepsilon}$.

A framework for modelling mechanical behavior of surrounding rocks of underground openings under seismic load

  • Zhang, Yuting;Ding, Xiuli;Huang, Shuling;Pei, Qitao;Wu, Yongjin
    • Earthquakes and Structures
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    • 제13권6호
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    • pp.519-529
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    • 2017
  • The surrounding rocks of underground openings are natural materials and their mechanical behavior under seismic load is different from traditional man-made materials. This paper proposes a framework to comprehensively model the mechanical behavior of surrounding rocks. Firstly, the effects of seismic load on the surrounding rocks are summarized. Three mechanical effects and the mechanism, including the strengthening effect, the degradation effect, and the relaxation effect, are detailed, respectively. Then, the framework for modelling the mechanical behavior of surrounding rocks are outlined. The strain-dependent characteristics of rocks under seismic load is considered to model the strengthening effect. The damage concept under cyclic load is introduced to model the degradation effect. The quantitative relationship between the damage coefficient and the relaxation zone is established to model the relaxation effect. The major effects caused by seismic load, in this way, are all considered in the proposed framework. Afterwards, an independently developed 3D dynamic FEM analysis code is adopted to include the algorithms and models of the framework. Finally, the proposed framework is illustrated with its application to an underground opening subjected to earthquake impact. The calculation results and post-earthquake survey conclusions are seen to agree well, indicating the effectiveness of the proposed framework. Based on the numerical calculation results, post-earthquake reinforcement measures are suggested.

A full path assessment approach for vibration serviceability and vibration control of footbridges

  • Zhu, Qiankun;Hui, Xiaoli;Du, Yongfeng;Zhang, Qiong
    • Structural Engineering and Mechanics
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    • 제70권6호
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    • pp.765-779
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    • 2019
  • Most of the existing evaluation criteria of vibration serviceability rely on the peak acceleration of the structure rather than that of the people keeping their own body unmoved on the structure who is the real receiver of structural vibrations. In order to accurately assess the vibration serviceability, therefore, a full path assessment approach of vibration serviceability based on vibration source, path and receiver is not only tentatively proposed in this paper, taking the peak acceleration of receiver into account, but also introduce a probability procedure to provide more instructive information instead of a single value. In fact, semi-rigid supported on both sides of the structure is more consistent with the actual situation than simply supported or clamped due to the application of the prefabricated footbridge structures. So, the footbridge is regarded as a beam with semi-rigid supported on both sides in this paper. The differential quadrature-integral quadrature coupled method is not only to handle different type of boundary conditions, but also after being further modified via the introduction of an approximation procedure in this work, the time-varying system problem caused by human-structure interaction can be solved well. The analytical results of numerical simulations demonstrate that the modified differential quadrature-integral quadrature coupled method has higher reliability and accuracy compared with the mode superposition method. What's more, both of the two different passive control measures, the tuned mass damper and semi-rigid supported, have good performance for reducing vibrations. Most importantly, semi-rigid supported is easier to achieve the objective of reducing vibration compared with tuned mass damper in design stage of structure.

Markov-based time-varying risk assessment of the subway station considering mainshock and aftershock hazards

  • Wei Che;Pengfei Chang;Mingyi Sun
    • Earthquakes and Structures
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    • 제24권4호
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    • pp.303-316
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    • 2023
  • Rapid post-earthquake damage estimation of subway stations is particularly necessary to improve short-term crisis management and safety measures of urban subway systems after a destructive earthquake. The conventional Performance-Based Earthquake Engineering (PBEE) framework with constant earthquake occurrence rate is invalid to estimate the aftershock risk because of the time-varying rate of aftershocks and the uncertainty of mainshock-damaged state before the occurrence of aftershocks. This study presents a time-varying probabilistic seismic risk assessment framework for underground structures considering mainshock and aftershock hazards. A discrete non-omogeneous Markov process is adopted to quantify the time-varying nature of aftershock hazard and the uncertainties of structural damage states following mainshock. The time-varying seismic risk of a typical rectangular frame subway station is assessed under mainshock-only (MS) hazard and mainshock-aftershock (MSAS) hazard. The results show that the probabilities of exceeding same limit states over the service life under MSAS hazard are larger than the values under MS hazard. For the same probability of exceedance, the higher response demands are found when aftershocks are considered. As the severity of damage state for the station structure increases, the difference of the probability of exceedance increases when aftershocks are considered. PSDR=1.0% is used as the collapse prevention performance criteria for the subway station is reasonable for both the MS hazard and MSAS hazard. However, if the effect of aftershock hazard is neglected, it can significantly underestimate the response demands and the uncertainties of potential damage states for the subway station over the service life.

내진성능평가에 따른 정밀안전진단 및 내진 보수보강 조치의 개선방안 연구 (A study on the improvement plan for precision safety diagnosis and seismic repair and reinforcement measures according to seismic performance evaluation)

  • 김장욱
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2022년도 봄 학술논문 발표대회
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    • pp.87-88
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    • 2022
  • For an earthquake-safe urban environment, the Republic of Korea conducts seismic performance evaluation in accordance with laws and guidelines to assign safety ratings and implement necessary management measures such as repairs and reinforcements. In the seismic performance evaluation result, structures lacking in preparation for earthquakes are prioritized and classified into measures such as repair, reinforcement, or careful observation to respond to physical risks such as earthquakes. Such repair and reinforcement work is not a one-time thing, but it is necessary to further enhance the effect through continuous follow-up observation. In this study, the location of the vertical and horizontal displacement measuring part of the construction part is displayed so that the post-construction status of the reinforcement construction part can be visually checked by identifying the problems in the process of post-monitoring in 2022 for the maintenance and reinforcement work of local governments' public facilities carried out in 2021. We propose a plan to institutionalize the installation of, inspection tools, and crack gauges at certain locations in the construction department, and to have facility managers periodically inspect and manage them with a smartphone program or the 'Facility Autonomous Safety Inspection' app.

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광미적치장 사면의 안정성 해석 및 대책

  • 송원경;한공창;신중호
    • 한국지반공학회지:지반
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    • 제14권3호
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    • pp.123-134
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    • 1998
  • 지금음 폐광된 한 광산에서 중석을 회수하는 과정에서 발생된 광미를 쌓아둔 적치장 사면의 안정성을 해석하고 그 대책을 수립하기 위하여 본 연구를 수행하였다. 안정성 해석을 위하여 FLAC 프로그램을 이용한 2차원 모델링을 수행하였다. 특히 지하수면의 상승뿐만 아니라 지진이 사면의 안정성에 미치는 영향을 분석하는데 연구의 초점을 맞추었다. 전산해석 결과 광미 적치장 사면은 지진이 일어날 경우 안전하지 못하며, 지하수면 수준이 지표 근처까지 상승할 경우 파괴될 수도 있는 것으로 나타났다. 전산해석 및 현장조사를 기초로 두 가지의 보강 대책에 수립되었다. 단기적으로는 사면상단의 광미를 제거하여 안전율을 높이는 것이고, 장기적으로는 사면 피복시설과 배수시설을 보수하는 것이다. 이러한 공사가 완료되었을 때 사면의 안정성이 크게 향상될 수 있음이 수치해석 결과 확인되었다.

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Evaluation of optimal ground motion intensity measures of high-speed railway train running safety on bridges during earthquakes

  • Liu, Xiang;Jiang, Lizhong;Xiang, Ping;Feng, Yulin;Lai, Zhipeng;Sun, Xiaoyun
    • Structural Engineering and Mechanics
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    • 제81권2호
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    • pp.219-230
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    • 2022
  • Due to the large number of railway bridges along China's high-speed railway (HSR) lines, which cover a wide area with many lines crossing the seismic zone, the possibility of a HSR train running over a bridge when an earthquake occurs is relatively high. Since the safety performance of the train will be threatened, it is necessary to study the safety of trains running over HSR bridges during earthquakes. However, ground motion (GM) is highly random and selecting the appropriate ground-motion intensity measures (IMs) for train running safety analysis is not trivial. To deal this problem, a model of a coupled train-bridge system under seismic excitation was established and 104 GM samples were selected to evaluate the correlation between 16 different IMs and train running safety over HSR bridges during earthquakes. The results show that spectral velocity (SvT1) and displacement (SdT1) at the fundamental period of the structure have good correlation with train running safety for medium-and long-period HSR bridges, and velocity spectrum intensity (VSI) and Housner intensity (HI) have good correlation for a wide range of structural periods. Overall, VSI and HI are the optimal IMs for safety analysis of trains running over HSR bridges during earthquakes. Finally, based on VSI and HI, the IM thresholds of an HSR bridge at different speed were analyzed.

우리나라 포항지진 재난관리에 대한 중앙·지방정부 간 대책 방안 연구 (A Study on Countermeasures between Central and Local Governments for Earthquake Disaster Management of Pohang, Korea)

  • 라홍우
    • 한국방재안전학회논문집
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    • 제12권3호
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    • pp.25-34
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    • 2019
  • 현대의 재난은 재난에 대해서 사전에 사고를 미리 예방하는 것도 사고 이후 복구도 매우 중요하다. 이러한 사고에 대한 현재 우리 정부의 대처방법은 적절하지 못하고 있다. 현재까지는 재난관리에 대해서는 재난에 대한 대응과 복구 활동의 중심이었으며, 그것에 대해 정부가 주도해 왔다. 반면에 대부분의 민간단체 및 기관들은 정부 재난관리 기관들을 보조만 해 왔던 것이 현실이었다. 우리나라도 이젠 지진 안전지대라고 할 수는 없다. 지진에 대비한 효과적인 재난관리체계의 확립을 위하여 현재 우리나라의 지진대비 재난관리 운영상의 문제점이 매우 시급하며, 이를 개선하기 위한 정책적 대안을 모색하려는 학문적 노력은 시기적으로 또 내용적으로 필요성이 매우 크다고 할 수 있다. 본 연구는 2016년에서부터 2019년 사이에 일어난 지진에 대해 통계청 자료를 근거로 하여 분석해 보았다. 먼저 연구문제 1: 포항지진에 대한 정부의 대책은 어떠했는가?에 대한 결과에서는 포항지진에서는 주민대피도 중요했지만, 일주일 연기된 수능 일에는 학생들 안전을 위하여 직접 고사장에 배치되어 직접 현장에서 긴급 상황에 대비하여 수능에 차질없이 대처하였다. 따라서 연구 분석 결과 우리나라는 이러한 국가적 재해에 대비하여 앞으로도 재난 현장에서 피해 원인과 대응에 대하여 고민하고 피해를 최소화 시킬 수 있는 기술과 방법을 개발하기 위하여 끊임없이 노력해야 할 것이다.

지진에 의한 산사태 위험도 평가방안에 관한 연구 (A Study on Risk Assessment Method for Earthquake-Induced Landslides)

  • 서준표;유송;이기환;이창우;우충식
    • 한국재난정보학회 논문집
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    • 제17권4호
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    • pp.694-709
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    • 2021
  • 연구목적: 지진에 의한 산사태 위험도 평가를 통하여 지진발생 전에는 산사태 예방사업, 지진발생 후에는 피해지 예측 및 복구 우선순위 선정으로 지진유발 산사태 피해저감을 효율적·선제적으로 하기 위한 기초자료를 제공하고자 수행하였다. 연구방법: 국외 선행연구를 분석하여 평가 방법론 검토와 평가 인자를 도출하고 국내 산사태 위험지도 활용성을 검토하였다. 또한 지진동 감쇠식을 이용하여 포항지역의 단층대 및 진앙지 기준으로 지진에 의한 산사태 위험지도를 시범 구축하였다. 연구결과: 지진에 의한 산사태 위험도 평가 연구는 중국이 전체의 44%, 이탈리아 16%, 미국 15%, 일본 10%, 대만 8% 순으로 나타났다. 평가 방법론으로 통계적 모형이 59%로 가장 많았고, 물리적 모형이 23%로 나타났다. 통계적 모형에 많이 사용된 인자는 고도, 단층대와의 거리, 경사도, 사면방향, 모암, 지형곡률로 나타났다. 현재 국내의 산사태 위험지도는 지형·지질·임상이 반영되는데 이를 활용한 지진에 의한 산사태 위험도 평가는 합리적인 것으로 나타났다. 포항지역에 단층대 및 진앙지 기준으로 산사태 위험도를 평가한 결과 기존의 낮은 등급이 높은 등급으로 변화하는 등 지진의 영향이 고려되었다. 결론: 광역 단위의 지진유발 산사태 위험도 평가를 위해서는 산사태 위험지도를 활용하는 것이 효율적이다. 단층대 기준의 위험지도는 지진에 의한 산사태 피해방지를 위한 예방사방사업 대상지 선정에 활용하고, 진앙지 기준의 위험지도는 지진이 발생한 이후 산사태 피해 현황을 조사하거나 피해지 복구 등 피해방지 대책 우선순위 선정의 효율적 사후관리에 활용할 수 있다.