• 제목/요약/키워드: earthquake-resistance

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Methodology for investigating the behavior of reinforced concrete structures subjected to post earthquake fire

  • Behnam, Behrouz;Ronagh, Hamid R.;Baji, Hassan
    • Advances in concrete construction
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    • 제1권1호
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    • pp.29-44
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    • 2013
  • Post earthquake fire (PEF) can lead to the collapse of buildings that are partially damaged in a prior ground-motion that occurred immediately before the fire. The majority of standards and codes for the design of structures against earthquake ignore the possibility of PEF and thus buildings designed with those codes could be too weak when subjected to a fire after an earthquake. An investigation based on sequential analysis inspired by FEMA356 is performed here on the Life-Safety performance level of structures designed to the ACI 318-08 code after they are subjected to two different earthquake levels with PGA of 0.35 g and 0.25 g. This is followed by a four-hour fire analysis of the weakened structure, from which the time it takes for the weakened structure to collapse is calculated. As a benchmark, the fire analysis is also performed for undamaged structure and before occurrence of earthquake. The results show that the vulnerability of structures increases dramatically when a previously damaged structure is exposed to PEF. The results also show the damaging effects of post earthquake fire are exacerbated when initiated from second and third floor. Whilst the investigation is for a certain class of structures (regular building, intermediate reinforced structure, 3 stories), the results confirm the need for the incorporation of post earthquake fire in the process of analysis and design and provides some quantitative measures on the level of associated effects.

소방배관 형상에 따른 배관 내진해석 (Seismic Analysis of Firefighting Pipe Networks)

  • 최호성;이재오
    • 한국화재소방학회논문지
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    • 제33권5호
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    • pp.149-154
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    • 2019
  • 지진 발생 시 소방배관의 안전성은 무엇보다 중요하다. 국내의 경우 국가화재안전기준(NFSC)에 따라 사양위주의 설계를 하고 있지만 특별한 성능이 요구되는 건물에는 공학적인 성능위주 설계를 적용하고 있다. 소방배관의 경우 트리방식을 적용하여 왔다. 하지만 여러 단점으로 인해 최근에는 그리드방식, 루프방식을 적용하고 있다. 국내 소방 배관 내진설계는 NFPA 13 의 cook book 방식을 적용하고 있지만, 신뢰성을 확보하기 위해서는 공학적인 해석이 필요하다. 국내에서 적용 중인 NFPA 13 기준은 ASCE 와 ASME 의 지침을 준용한 것으로 지진이나 배관의 공학적 해석이 부족한 기술자들이 사용하도록 만들어 놓은 설계방식이다. 국내 내진설계는 버팀대에 대한 검토만 진행되고 있다. 하지만 신뢰성 있는 해석을 위해서는 배관의 내압, 지속 하중에 의한 힘, 지진과 같은 하중 조건에서의 다양한 해석이 요구된다. 공학적 내진해석을 통해 트리방식 배관은 그리드나 루프 방식의 배관에 비해 안전성이 떨어지는 것을 알 수 있었으며, 응력 기반의 내진해석 방식과 변형률 기반의 해석방식을 비교한 결과 변형률 해석이 Over Stress 범위에서는 보수적인 결과 값을 보였다. 배관의 내진해석은 일률적인 계산을 통한 해석보다 공학적 해석을 통해 엔지니어가 본인의 의도에 맞게 해석을 하는 것이 좀 더 합리적이며, 여러 가지 해석조건을 고려하여 분석되어야 한다.

Strengthening methods for existing wall type structures by installing additional shear walls

  • Chung, Lan;Park, Tae Won;Hwang, Ji Hyun
    • Structural Engineering and Mechanics
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    • 제49권4호
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    • pp.523-536
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    • 2014
  • Before incorporating the earthquake-resistance design in design standard (1988) in South Korea, most of existing residential buildings were built without having lateral resistance capacity in addition to their structural peculiarity, such as exterior stair ways, exterior elevator room. For these reasons, the demands on retrofitting research for existing buildings arise recently and many retrofitting methods are proposed. These tasks are important to reduce the enormous economic loss and environmental issues. As the main purpose, this study was intended to examine the performance improvement in terms of ductility and strength in the wake of retrofitting and to suggest retrofitting details.

화강토와 점토지반에 연직으로 타입된 PHC말뚝의 수평지지력에 관한 연구(지반공학) (A Study on Lateral Bearing Capacity of PHC Piles Driven Vertically in Decomposed Granite and Clayey Soil)

  • 문영민;이문수;이대재
    • 한국농공학회:학술대회논문집
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    • 한국농공학회 2000년도 학술발표회 발표논문집
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    • pp.466-470
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    • 2000
  • Recently, the calculation of horizontal bearing capacity of piles foundation has been considered very important for earthquake or wind resistant design in Korea. This study deals with the lateral resistance of PHC pile instead of vertical capacity for earthquake resistant design as well as wind. As case study, the prediction values were compared with measured ones based on ASTM. During this research, Matlock & Reese, Davisson & Gill, Broms and Chang's methods were selected in calculating prediction of lateral resistance of PHC piles. In decomposed granite and clayey soils, The result showed that prediction values proposed by Matlock & Reese(Davisson & Gill), Chang and Broms were smaller values than real values. four proposed methods by Matlock & Reese(Davisson & Gill) and Chang based on lateral deflection and Broms by ultimate lateral resistance turned out valid in view of engineering practice.

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Reliability analysis of tunnels with consideration of the earthquakes extreme events

  • Azadi, Mohammad;Ghasemi, S. Hooman;Mohammadi, Mohammadreza
    • Geomechanics and Engineering
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    • 제22권5호
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    • pp.433-439
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    • 2020
  • Tunnels are one of the most important constructions in civil engineering. The damage to these structures caused enormous costs. Therefore, the safe and economic design of these structures has long been considered. However, both applied loads on the tunnels as well as the resistance of the structural members are naturally uncertain parameters, hence, the design of these structures requires considering the probabilistic approaches. This study aims to determine the load and resistant factors of lining tunnels concerning the earthquake extreme events limit state function. For this purpose, tunnels that have been designed according to the previous design codes (AASHTO Tunnel LRFD 2017) and using reliability analysis, the optimum reliability of these structures for different loading scenarios is determined. In this paper, the tunnel is considered circular. Finally, the proper load and resistance factors are calculated corresponding to the obtained target reliability. Based on the performed calibration earthquake extreme events limit state function, the result of this study can be recommended to AASHTO Tunnel LRFD 2017.

중진지역에 적합한 액상화 평가 생략기준 및 지진규모 보정계수에 관한 연구 (A Study on Magnitude Scaling Factors and Screening Limits of Liquefaction Potential Assessment in Moderate Earthquake Regions)

  • 박근보;박영근;최재순;김수일
    • 한국지반공학회논문집
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    • 제20권7호
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    • pp.127-140
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    • 2004
  • 기존의 액상화 평가법은 대부분 미국, 일본, 그리고 유럽과 같이 지진 발생빈도가 높고 그로 인한 액상화 피해가 빈번한 국가에서 주도적으로 연구되어왔다. 이런 지역적 특성을 토대로 개발된 액상화 평가방법들은 높은 지진규모(M=7.5)에 바탕을 두고 있다. 국내의 경우, 1997년 실제적인 내진 연구가 시작된 이래 액상화 평가의 구체적 규정은 항만시설의 내진설계 표준서(1999)에 언급된 바 있으나 이는 문헌연구를 통해 제시된 것으로 실제적이지 못하다. 그러므로, 국내 적합한 설계기준을 작성하기 위해서는 지진피해자료의 부족을 국내 지반을 대상으로 한 동적실내시험을 통하는 것이 바람직하며, 일반적인 정현하중 진동시험 보다 실제 지진하중 재하 시험이 훨씬 효과적일 수 있다. 본 연구에서는 실제 지진파 고유의 특성을 적용한 진동삼축 시험을 통하여 상대밀도와 세립분함유량의 변화에 따른 액상화 저항강도를 산정하였다. 실험결과를 국내의 대표적인 항만지역의 지진응답 해석 결과와 비교 분석하고 중진지역에 적합한 액상화 평가의 생략기준을 제시하였다. 또한 실제 지진하중 삼축실험 결과를 이용하여 국내 여건에 적합한 지진규모 보정계수를 제안하였다.

감쇠시스템을 적용한 라멘조 아파트의 내진성능평가 (Seismic Performance of the Framed Apartment Building Structure with Damping System)

  • 천영수;이범식;박지영
    • 토지주택연구
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    • 제8권3호
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    • pp.181-187
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    • 2017
  • To proactively respond to internal and external changes such as the recent demographic change and rising demand for diversified housing types, this study investigated the framed-structure free plan public house model proposed by the LH to look at the seismic performance of framed-structure apartment according to damper system use through non-linear analysis. The effectiveness thereof was also examined in terms of performance and economy. As a result, the proposed damper system application method to framed-structure free plan public house model was found to meet the performance requirements of the present earthquake-resistant design (KBC2016) and effective to apply to designs. The max response displacement and max response acceleration were compared based on the nonlinear analysis. As a result, the building with damper system showed better earthquake resistance performance than earthquake-resistant structure thanks to the damper system, although the base shear of earthquake-resistant system was reduced by 20% in design. The damper system is expected to help reduce building damage while ensuring excellent earthquake resistance performance. In addition, the framework quantities of earthquake-resistant structure and structure with damping system were compared. As a result, columns were found to reduce concrete amount by about 3.9% and rebar, by about 7.3%. Walls showed about 12.6% reduction in concrete and about 10.7% in rebar. In terms of cost, framework construction cost including formwork and foundation expenses was expected to drop by about 5~6%.

액상화 방지를 위한 진동쇄석말뚝에 관한 기초적 연구 (A Fundamental Study on Vibrated Crushed-stone Pile for the Improvement of Liquefaction Resistance)

  • 천병식
    • 한국지진공학회:학술대회논문집
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    • 한국지진공학회 2000년도 춘계 학술발표회 논문집 Proceedings of EESK Conference-Spring
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    • pp.105-111
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    • 2000
  • If a saturate sand is subjected to ground vibrations it tends to compact and decrease in volume. if drainage is unable to occur the tendency to decrease in volume results in an increase in pore water pressure and if the pore water pressure build up to the point at which it is equal to the overburden pressure the effective stress becomes zero the sand loses its strength completely. This phenomenon is called "Liquefaction" It is associated primarily but not exclusively with saturated cohesion soils. The attention and study on liquefaction have been growing since the earthquake in Niigita Japan in 1964. Many researchers on liquefaction effect have been carried out in many countries under the potential influence of earthquake including Japan. However little research on liquefaction has been reported in Korea because Korea has been considered to be safe from earthquake. The term "liquefaction" is only known among geotechnical engineers,. In this paper overview of liquefaction and the evaluation on the applicability of vibrated crushed-stone pile as a liquefaction prevention method are presented.ethod are presented.

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지진진동수에 따른 콘크리트 중력댐의 내진성능에 대한 해석적 사례연구 (Numerical Study on Earthquake Performance of Gravity Dam Considering Earthquake Frequencies)

  • 채영석;민인기
    • 한국안전학회지
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    • 제31권4호
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    • pp.64-74
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    • 2016
  • Recently, the seismic stability evaluation of concrete gravity dams is raised due to the failure of dams occurred by the Izmit, Turkey and JiJi, Taiwan earthquake in 1999. Dams failure may incur loss of life and properties around the dam as well as damage to dam structure itself. Recently, there has been growing much concerns about "earthquake - resistance" or "seismic safety" of existing concrete gravity dams designed before current seismic design provisions were implemented. This research develops three evaluation levels for seismic stability of concrete gravity dams on the basis of the evaluation method of seismic stability of concrete gravity dams in U.S.A., Japan, Canada, and etc. Level 1 is a preliminary evaluation which is for purpose of screening. Level 2 is a pseudo-static evaluation on the basis of the seismic intensity method. And level 3 is a detail evaluation by the dynamic analysis. Evaluation results on existing concrete gravity dams on operation showed good seismic performance under designed artificial earthquake(KHC earthquake).

진동대 실험을 통한 전단벽 구조물의 층응답 특성 평가 (In-structure Response Evaluation of Shear Wall Structure via Shaking Table Tests)

  • 정재욱;하정곤;함대기;김민규
    • 한국지진공학회논문집
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    • 제25권3호
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    • pp.129-135
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    • 2021
  • After the manual shutdown of the Wolseong nuclear power plant due to an earthquake in Gyeongju in 2016, anxiety about the earthquake safety of nuclear power plants has become a major social issue. The shear wall structure used as a major structural element in nuclear power plants is widely used as a major structural member because of its high resistance to horizontal loads such as earthquakes. However, due to the complexity of the structure, it is challenging to predict the dynamic characteristics of the structure. In this study, a three-story shear wall structure is fabricated, and the in-structure response characteristics of the shear wall structure are evaluated through shaking table tests. The test is performed using the Gyeongju earthquake that occurred in 2016, and the response characteristics due to the domestic earthquake are evaluated.