• 제목/요약/키워드: earthquake-resistant performance

검색결과 123건 처리시간 0.036초

지하 구조물 외벽에 적용되는 방수재료의 구조체 거동 및 진동 대응 성능 설계 제안 연구 (A Study on the Seismic Performance Design of Waterproofing Materials Applied Single-side Walls on Underground Structures)

  • 김수연;김명지;오상근
    • 한국구조물진단유지관리공학회 논문집
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    • 제24권1호
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    • pp.43-50
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    • 2020
  • 본 연구에서는 건설 구조물에 사용되는 건설 자재 중 콘크리트 구조체에 전면 부착 시공되어 건축물의 내외부로부터 스며들거나 넘쳐흐르는 물을 막을 수 있는 차단마감재인 방수재료에 있어 가속 환경 조건 속의 지하 외벽에서의 방수 성능 설계의 일환으로 내진 성능 설계가능성을 제안하고 그 품질검증 시험방법에 대해 검토하였다. 국내외 건설자재 내진설계 현황을 살펴보았을 때, 국내의 경우 아직까지 현행법상 건축 과정에서의 내진설계 규제는 있지만 자재에 대한 규제는 없어 내진용 제품군이 드물고 대부분 시공법에 의존하고 있는 상황이다. 국외의 경우 일본, 캐나다, 독일과 같이 비구조재에 내진성능을 부여한 다양한 건축자재가 개발되고 있음을 확일 할 수 있었고, 이러한 내진설계 개념은 앞장에서 살펴본 바와 같이, 지하 콘크리트 구조체에 전면접착 혹은 부분 부착되어 시공되는 선행 외방수재료에 있어 지진에 대한 보완 대응력을 가질 수 있다면 내진 설계된 구조체와 함께 누수 예방 및 방지 기술로서 그 적용성을 기대할 수 있을 것으로 판단된다.

지하역사의 내진성능평가를 위한 원심모형 진동대 시험 (Centrifuge-Shaking Table Test for Seismic Performance Evaluation of Subway Station)

  • 김진호;신민정
    • 한국구조물진단유지관리공학회 논문집
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    • 제15권3호
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    • pp.99-105
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    • 2011
  • 지하역사의 대부분은 지진에 대비한 내진설계가 거의 수행되지 않음으로 인하여 일정규모 이상의 지진이 발생할 경우 대규모 인명 및 재산피해가 우려된다. 지중구조물인 지하역사의 신뢰도 높은 내진성능 평가를 위하여 지진하중 재하 시 지반과 구조물의 상호작용이 고려된 거동의 고찰과 검증이 요구된다. 이에 본 연구에서는 수도권 소재의 실제 지하역사에 대하여, 상사비 1/60 스케일의 축소모형 지하역사 구조물 시험체에 장주기인 Kobe지진파와 단주기인 Northridge지진파를 적용한 원심모형 진동대 시험을 수행하였다, 원심모형시험결과와 응답변위법, 동일단면에 대해 SHAKE91에 의한 지반 및 구조물의 상대변위, 구조물의 모멘트에 대하여 비교 분석함으로써 지하역사의 내진성능을 평가하고자 하였다.

Review of seismic studies of liquid storage tanks

  • Zhao, Ming;Zhou, Junwen
    • Structural Engineering and Mechanics
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    • 제65권5호
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    • pp.557-572
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    • 2018
  • The academic research works about liquid storage tanks are reviewed for the purpose of providing valuable reference to the engineering practice on their aseismic design. A summary of the performance of tanks during past earthquakes is described in this paper. Next, the seismic response of tanks under unidirectional earthquake is reported, supplemented with the dynamic response under multidirectional motions. Then, researches on the influence of soil-structure interaction are brought out to help modify the seismic design approach of tanks in different areas with variable properties of soils. Afterwards, base isolation systems are reported to demonstrate their effectiveness for the earthquake-resistant design of liquid storage tanks. Further, researches about the liquid-structure interaction are reviewed with description of simplified models and numerical analytical methods, some of which consider the elastic effect of tank walls. Moreover, the liquid sloshing phenomenon on the hydrodynamic behaviors of tanks is presented by various algorithms including grid-based and meshfree method. And then the impact of baffles in changing the dynamic characteristics of the liquid-structure system is raised, which shows the energy dissipation by the vortex motion of liquid. In addition, uplifting effect is given to enhance the understanding on the capacity of unanchored tanks and some assessment of their development. At last, the concluding remarks and the aspects of extended research in the field of liquid storage tanks under seismic loads are provided, emphasizing the thermal stress analysis, the replaceable system for base isolation, the liquid-solid interaction and dynamic responses with stochastic excitations.

Seismic behavior of steel column-base-connection equipped by NiTi shape memory alloy

  • Jamalpour, Reza;Nekooei, Masoud;Moghadam, Abdolreza Sarvghad
    • Structural Engineering and Mechanics
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    • 제64권1호
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    • pp.109-120
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    • 2017
  • The behavior of moment resistant steel structures depends on both the beam-column connections and columns foundations connections. Obviously, if the connections can meet the adequate ductility and resistance against lateral loads, the seismic capacity of these structures will be linked practically to the performance of these connections. The shape memory alloys (SMAs) have been most recently used as a means of energy dissipation in buildings. The main approach adopted by researchers in the use of such alloys is firstly bracing, and secondly connecting the beams to columns. Additionally, the behavior of these alloys is modeled in software applications rarely involving equivalent torsional springs and column-foundation connections. This paper attempts to introduce the shape memory alloys and their applications in steel structural connections, proposing a new steel column-foundation connection, not merely a theoretical model but practically a realistic and applicable model in structures. Moreover, it entails the same functionality as macro modeling software based on real behavior, which can use different materials to establish a connection between the columns and foundations. In this paper, the suggested steel column-foundation connection was introduced. Moreover, exploring the seismic dynamic behavior under cyclic loading protocols and the famous earthquake records with different materials such as steel and interconnection equipment by superelastic shape memory alloys have been investigated. Then, the results were compared to demonstrate that such connections are ideal against the seismic behavior and energy dissipation.

Pseudo-dynamic and cyclic loading tests on a steel-concrete vertical hybrid structure

  • Wang, Bo;Wu, Tao;Dai, Huijuan;Bai, Guoliang;Wu, Jian
    • Earthquakes and Structures
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    • 제17권4호
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    • pp.399-409
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    • 2019
  • This paper presents the experimental investigations on the seismic performance of a peculiar steel-concrete vertical hybrid structural system referred to as steel truss-RC tubular column hybrid structure. It is typically applied as the supporting structural system to house air-cooled condensers in thermal power plants (TPPs). Firstly, pseudo-dynamic tests (PDTs) are performed on a scaled substructure to investigate the seismic performance of this hybrid structure under different hazard levels. The deformation performance, deterioration behavior and energy dissipation characteristics are analyzed. Then, a cyclic loading test is conducted after the final loading case of PDTs to verify the ultimate seismic resistant capacity of this hybrid structure. Finally, the failure mechanism is discussed through mechanical analysis based on the test results. The research results indicate that the steel truss-RC tubular column hybrid structure is an anti-seismic structural system with single-fortification line. RC tubular columns are the main energy dissipated components. The truss-to-column connections are the structural weak parts. In general, it has good ductile performance to satisfy the seismic design requirements in high-intensity earthquake regions.

Seismic response of current RC buildings in Kathmandu Valley

  • Chaulagain, Hemchandra;Rodrigues, Hugo;Spacone, Enrico;Varum, Humberto
    • Structural Engineering and Mechanics
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    • 제53권4호
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    • pp.791-818
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    • 2015
  • RC buildings constitute the prevailing type of construction in earthquake-prone region like Kathmandu Valley. Most of these building constructions were based on conventional methods. In this context, the present paper studied the seismic behaviour of existing RC buildings in Kathmandu Valley. For this, four representative building structures with different design and construction, namely a building: (a) representing the non-engineered construction (RC1 and RC2) and (b) engineered construction (RC3 and RC4) has been selected for analysis. The dynamic properties of the case study building models are analyzed and the corresponding interaction with seismic action is studied by means of non-linear analyses. The structural response measures such as capacity curve, inter-storey drift and the effect of geometric non-linearities are evaluated for the two orthogonal directions. The effect of plan and vertical irregularity on the performance of the structures was studied by comparing the results of two engineered buildings. This was achieved through non-linear dynamic analysis with a synthetic earthquake subjected to X, Y and $45^{\circ}$ loading directions. The nature of the capacity curve represents the strong impact of the P-delta effect, leading to a reduction of the global lateral stiffness and reducing the strength of the structure. The non-engineered structures experience inter-storey drift demands higher than the engineered building models. Moreover, these buildings have very low lateral resistant, lesser the stiffness and limited ductility. Finally, a seismic safety assessment is performed based on the proposed drift limits. Result indicates that most of the existing buildings in Nepal exhibit inadequate seismic performance.

섬유강화플라스틱과 연성재 적층복합체로 구성된 내진성능보강재의 개발 (Development of Seismic Performance Evaluation Reinforcement by FRP and Ductile Material Layered Composites)

  • 장준호;장광석;김기홍;주치홍
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2010년도 춘계학술대회 논문집
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    • pp.1486-1491
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    • 2010
  • 최근 국내에서도 지진의 발생 가능성이 증가하는 추세이며 교량, 터널 등과 같은 공공이용시설의 안전에 대한 우려도 증가하고 있다. 특히 1988년 이전 건설된 도시철도 시설물의 대부분은 내진설계가 반영되지 않아 내진안전성에 대한 검토와 보강이 요구되고 있다. 최근 가장 많이 연구되는 내진보강법인 섬유보강공법은 섬유의 특성은 우수하나 내진구조물의 취약점인 취성적이라는 것이 단점이다. 본 연구에서는 도시철도 개착식 터널의 내진성능 향상을 도모하기 위하여 FRP에 연성재료인 스틸과 알루미늄을 적층하여 새로운 FRP-연성재 적층 복합체를 제안하였다. FRP-연성재 적층 복합체의 인장 시험결과, 알루미늄 연성재를 사용한 경우 기존의 FRP 보강재보다 최대강도는 비슷하였으나 최대변형률이 증가하였다. 본 연구에서 제안한 FRP-알루미늄의 적층복합체는 연성이 요구되는 도시철도 개착식 터널에 적용할 경우 내진성능 향상에 효과적일 것으로 판단된다.

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셀프센터링 가새골조의 지진응답 (Seismic Response of Self-Centering Energy Dissipative Braced Frames)

  • 최현훈;;김진구
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 2008년도 정기 학술대회
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    • pp.331-336
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    • 2008
  • An self-centering energy-dissipative (SCED) bracing system has recently been developed as a new seismic force resistant bracing system. The advantage of the SCED brace system is that, unlike other comparable advanced bracing systems that dissipate energy, such as the buckling restrained brace system, it has a self-centering capability that reduces or eliminates residual building deformations after major seismic events. In this study seismic performance of SCED braced frames is evaluated for a set of 20 design level earthquake records. According to analysis results the SCED systems showed more uniform interstory drift demand for buildings with 8 story or fewer. The residual deformation in SCED buildings turned out to be much less than that of moment-resisting frames.

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Seismic design and assessment of steel-concrete frame structures with welded dissipative fuses

  • Calado, Luis;Proenca, Jorge M.;Sio, Joao
    • Steel and Composite Structures
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    • 제35권4호
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    • pp.527-544
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    • 2020
  • This research presents the design and numerical assessment of composite steel-concrete frame structures with welded dissipative fuses. The assessment has been carried out based on linear response spectrum, nonlinear static pushover and time history procedures. The analytical expressions which define the envelope of the nonlinear response of the dissipative fuses are first presented and calibrated against experimental results available in literature. The assessment is then carried out according to a design methodology proposed herein. Outcomes of the numerical assessment indicate that the use of welded dissipative fuses successfully limited damage within the replaceable parts. Furthermore, although structures with dissipative fuses present lower strength and, generally, lower displacement capacity, their displacement ductility and global dissipative performance are generally higher than conventional structures, especially when the structure with dissipative fuses presents a dissipative configuration adjusted to the bending moment distribution diagram calculated for the applied seismic action.

Seismic Performance and Vibration Control of Urban Over-track High-rise Buildings

  • Ying, Zhou;Rui, Wang;Zengde, Zhang
    • 국제초고층학회논문집
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    • 제11권3호
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    • pp.207-219
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    • 2022
  • During the structural design of urban over-track high-rise buildings, two problems are most likely encountered: the abrupt change of story stiffness between the podium and the upper towers, as well as the demand for train-induced vibration control. Traditional earthquake-resistant structures have to be particularly designed with transfer stories to meet the requirement of seismic control under earthquakes, and thus horizontal seismic isolation techniques are recommended to solve the transfer problem. The function of mitigating the vertical subway-induced vibration can be integrated into the isolation system including thick rubber bearings and 3D composite vibration control devices. Engineering project cases are presented in this paper for a more comprehensive understanding of the engineering practice and research frontiers of urban over-track high-rise buildings in China.