• 제목/요약/키워드: seismic design regulations

검색결과 39건 처리시간 0.022초

비보강 조적조 건축물의 외부 보강에 따른 내진성능 연구 (A Study on Seismic Performance of External Reinforcement for Unreinforced Masonry Buildings)

  • 김종연;강종
    • 한국구조물진단유지관리공학회 논문집
    • /
    • 제28권2호
    • /
    • pp.43-52
    • /
    • 2024
  • 내진설계 되지 아니한 조적조 건축물의 내진성능을 평가하고 건축물의 외부에 내진 보강 공법을 채택하여 내진성능을 향상시키고자 하였다. 내진성능을 평가하기 위해 건축물 내진설계 기준 및 해설(KDS 41 17 00 : 2019)과 기존 시설물(건축물) 내진성능 평가요령을 적용하였으며 비선형 정적해석으로 pushover해석을 수행하였다. 해석결과, 우리나라 주택의 내진설계 보급 비율이 낮고 주택의 많은 비중을 차지하고 있는 것이 조적조 건축물임을 고려하면 내진보강이 시급한 것으로 판단되었다. 조적조 건축물에 철골 보-기등+가새 프레임을 보강할 경우 층간 변형각은 X방향 0.043%이며 Y방향 0.047%로 나타나 규정을 만족하였다. 성능 수준별 중력하중 저항능력은 X, Y방향 모두 거주가능으로 판정되어 안전한 것으로 판단되었다. 건축물의 외부에 보강함으로써 주택의 거주성과 편의성을 확보하면서 공사가 가능할 것으로 보여지며 지진성능과 구조물의 거동을 보다 명확하게 예측할 수 있을 것으로 사료 되었다.

경계요소 횡보강근의 상세와 배근간격에 따른 특수전단벽의 내진성능 (Seismic Performance of Special Shear Wall with the Different Hoop Reinforcement Detail and Spacing in the Boundary Element)

  • 천영수
    • 토지주택연구
    • /
    • 제6권1호
    • /
    • pp.11-19
    • /
    • 2015
  • 이 논문에서는 최근 강화된 내진규정에 의하여 현장에서 시공에 어려움을 겪고 있는 특수전단벽의 배근상세를 완화할 목적으로 제안된 경계요소 횡보강상세에 대하여 횡보강근의 형태와 배근간격에 따른 실험결과를 제시하고 있다. 실험결과, 제안된 횡보강 상세를 채용한 실험체의 균열 및 파괴양상은 폐쇄형 후프를 사용한 실험체와 유사한 경향을 나타내었으며, 최대강도도 예상값을 모두 상회하는 것으로 나타났다. 또한, 에너지 소산능력을 비교한 결과, 완화된 배근상세를 따르는 실험체(SSWR2)의 경우 기존 설계기준의 특수전단벽 실험체(SSW2)와 유사한 내진성능을 가지고 있는 것으로 나타났으며, 설계기준에서 제시하고 있는 1.5% 수준의 변형각 조건을 충분히 만족하고 있어 구조물의 주요 횡력저항 요소로서 사용될 수 있을 것으로 판단된다.

지반 종류에 따른 고정식 해상 풍력발전기 지진 하중 영향 연구 (Study on the Effect of Earthquake Loads for Fixed Offshore Wind Turbines According to Soil Type)

  • 오용운;김정기;김미선;정종훈;방조혁
    • 풍력에너지저널
    • /
    • 제14권1호
    • /
    • pp.14-20
    • /
    • 2023
  • In this study, using the commercial software Bladed developed by DNV for integrated load calculation of wind turbines, the generation of seismic waves according to soil type based on Korea's domestic regulations, and load calculation considering earthquake conditions were performed according to the IEC standard, and load in the main coordinate system of the fixed offshore wind turbine was calculated. By comparing the calculated load with the design load of the fixed offshore wind turbine, the effect of earthquake loads according to soil type on the main components of fixed offshore wind turbines was evaluated. As a result of the evaluation, when an earthquake load on a wind turbine is considered, the effect of the earthquake load is related to the natural frequency of the major components and the magnitude of the adjacent acceleration in the earthquake response spectrum, and the earthquake load differs according to soil type and may exceed the design load.

설계기준초과지진 하의 원전 배관 구조건전성 평가를 위한 변형률 기반 방법 (Strain-Based Structural Integrity Evaluation Methods for Nuclear Power Plant Piping under Beyond Design Basis Earthquake)

  • 이대영;박흥배;김진원;류호완;김윤재
    • 한국압력기기공학회 논문집
    • /
    • 제12권2호
    • /
    • pp.66-70
    • /
    • 2016
  • Following the 2011 Fukushima Nuclear Power Plant accident, the IAEA has issued a revised version of the Nuclear Safety Standard for beyond design basis earthquake to consider the core meltdown accident. In Korea, relevant laws and regulations were also revised to consider beyond design basis earthquake to nuclear components. In this paper, CAV, an seismic damage factor that determines the restart of nuclear power plant after operating breakdown earthquake, is proposed for extension to the beyond design basis earthquake. For pipings not satisfying the beyond design basis earthquake condition, several evaluation methods are suggested, such as strain-based evaluation methods, simple nonlinear analysis method and cumulative damage evaluation method.

Earthquake performance of FRP retrofitting of short columns around band-type windows

  • Kocak, Ali
    • Structural Engineering and Mechanics
    • /
    • 제53권1호
    • /
    • pp.1-16
    • /
    • 2015
  • Due to design codes and regulations and the variety of building plans in Turkey, it is very often seen that band-type windows are left for ventilation and lightening of the basements of buildings which are used for various purposes such as workplaces and storage. Therefore when the necessary support measures cannot be given, short columns are subjected to very high shear forces and so damage occurs. One of the precautions to avoid the damage of short column mechanisms in buildings where band-type windows are in the basement is to strengthen the short columns with fiber reinforced polymer (FRP). In this study, the effect of the FRP retrofitting process of the short columns around band-windowed structures, which are found especially in basement areas, is analyzed in accordance with Turkish Seismic Code 2007 (TSC 2007). Three different models which are bare frame, frame with short columns and retrofitted short columns with FRP, are created and analyzed according to TSC 2007 performance analysis methods to understand the effects of band windows in basements and the effect of FRP retrofitting.

Numerical evaluating for the rigid and semi-rigid connection of I-Shaped beams to tubular columns

  • Shohreh Sohaei;Mehrzad TahamouliRoudsari;Parham Memarzadeh
    • Steel and Composite Structures
    • /
    • 제51권3호
    • /
    • pp.305-323
    • /
    • 2024
  • Previous experimental studies have effectively demonstrated the remarkable efficiency of the stiffened channel link in connecting circular columns and I-shaped beams. This research aims to present design criteria and assess the seismic properties of this specific connection type through numerical modeling. Various parameters, including stiffener type and geometric properties of the stiffened channel element, were duly taken into account. The findings from over 136 nonlinear finite element analyses (FEAs) reveal that the recommended detailing scheme reliably satisfies all the regulations specified for rigid beam-to-column connections in special moment frames.

Differences on specified and actual concrete strength for buildings on seismic zones

  • De-Leon-Escobedo, David;Delgado-Hernandez, David Joaquin;Arteaga-Arcos, Juan Carlos;Flores-Gomora, Jhonnatan
    • Earthquakes and Structures
    • /
    • 제12권3호
    • /
    • pp.349-357
    • /
    • 2017
  • The design of reinforced concrete structures strongly depends on the value of the compression concrete strength used for the structural components. Given the uncertainties involved on the materials quality provided by concrete manufacturers, in the construction stage, these components may be either over or under-reinforced respect to the nominal condition. If the structure is under reinforced, and the deficit on safety level is not as large to require the structure demolition, someone should assume the consequences, and pay for the under standard condition by means of a penalty. If the structure is over reinforced, and other failure modes are not induced, the builder may receive a bonus, as a consequence of the higher, although unrequested, building resistance. The change on the building safety level is even more critical when the structure is under a seismic environment. In this research, a reliability-based criteria, including the consideration of expected losses, is proposed for bonification/penalization, when there are moderated differences between the supplied and specified reinforced concrete strength for the buildings. The formulation is applied to two hypothetical, with regular structural type, 3 and 10 levels reinforced concrete buildings, located on the soft soil zone of Mexico City. They were designed under the current Mexican code regulations, and their responses for typical spectral pseudoaccelerations, combined with their respective occurrence probabilities, are used to calculate the building failure probability. The results are aimed at providing objective basis to start a negotiation towards a satisfactory agreement between the involved parts. The main contribution resides on the explicit consideration of potential losses, including the building and contents losses and the business interruption due to the reconstruction period.

지진발생 대응을 위한 상하수도시설 관리 및 기술 현황에 대한 고찰 (A review on recent advances in water and wastewater treatment facilities management for earthquake disaster response)

  • 박정수;최준석;김극태;윤영한;박재형
    • 상하수도학회지
    • /
    • 제34권1호
    • /
    • pp.9-21
    • /
    • 2020
  • The proper operation and safety management of water and wastewater treatment systems are essential for providing stable water service to the public. However, various natural disasters including floods, large storms, volcano eruptions and earthquakes threaten public water services by causing serious damage to water and wastewater treatment plants and pipeline systems. Korea is known as a country that is relatively safe from earthquakes, but the recent increase in the frequency of earthquakes has increased the need for a proper earthquake management system. Interest in research and the establishment of legal regulations has increased, especially since the large earthquake in Gyeongju in 2016. Currently, earthquakes in Korea are managed by legal regulations and guidelines integrated with other disasters such as floods and large storms. The legal system has long been controlled and relatively well managed, but technical research has made limited progress since it was considered in the past that Korea is safe from earthquake damage. Various technologies, including seismic design and earthquake forecasting, are required to minimize possible damages from earthquakes, so proper research is essential. This paper reviews the current state of technology development and legal management systems to prevent damages and restore water and wastewater treatment systems after earthquakes in Korea and other countries. High technologies such as unmanned aerial vehicles, wireless networks and real-time monitoring systems are already being applied to water and wastewater treatment processes, and to further establish the optimal system for earthquake response in water and wastewater treatment facilities, continuous research in connection with the Fourth Industrial Revolution, including information and communications technologies, is essential.

국민안전처 통합관리시스템 연계 가능한 시설물 진동 감지 및 분석 시스템 개발 (A Development of Real-time Vibration Monitoring and Analysis System Linked to the Integrated Management System of Ministry of Public Safety and Security)

  • 임지훈;정진우;문대중;최동호
    • 한국구조물진단유지관리공학회 논문집
    • /
    • 제20권3호
    • /
    • pp.130-139
    • /
    • 2016
  • 국내의 지진 발생 추이가 증가세를 보이고 있으며, 이에 따라 시설물 피해를 주고 큰 인명 피해를 초래하는 지진재해에 대한 대비의 중요성이 대두되고 있다. 지진재해에 대비하기 위해서는 지진 또는 진동가속도에 대한 실시간 계측을 하는 것이 중요하다. 일본과 미국의 경우 중요 시설물에 대하여 이미 실시간 지진가속도계측을 시행하고 있으며 계측된 지진가속도데이터는 데이터베이스화되어 관리되고 있다. 이를 이용해 내진설계기준 개정시 또는 지진으로 인한 피해 예측시 활용하고 있다. 국내의 경우, 최근 지진재해대책법 및 시행규칙이 개정되어 공포되었으며, 국민안전처에서 지진가속도계측자료 통합관리시스템을 구축해 나가고 있는 상황이다. 본 연구의 목적은 국민안전처 통합관리시스템에 연계가 가능한 시설물 실시간 진동 감지 및 분석 시스템을 개발 하는 것이다. 이 시스템은 지진가속도계측데이터 모니터링 기능을 포함하며, 또한 고속푸리에변환, 고유진동수 추출, 응답스펙트럼, 파워스펙트럼, 진도 표출, 시설물 건전도 평가 등 다양한 가속도데이터 분석 기능을 갖추고 있을 뿐만 아니라 국민안전처 지진가속도계측자료 시스템에 연계가 가능하도록 설계되었다. 개발된 시스템은 시설물의 안전관리 네트워크 구축, 지진 또는 진동으로 인한 시설물의 피해에 대한 대비, 유지관리 비용의 최소화에 긍정적인 효과가 있을 것이라고 판단된다.