• 제목/요약/키워드: seismic design code

검색결과 480건 처리시간 0.026초

Ground-motion prediction equation for South Korea based on recent earthquake records

  • Jeong, Ki-Hyun;Lee, Han-Seon
    • Earthquakes and Structures
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    • 제15권1호
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    • pp.29-44
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    • 2018
  • A ground-motion prediction equation (GMPE) for the Korean Peninsula, especially for South Korea, is developed based on synthetic ground motions generated using a ground motion model derived from instrumental records from 11 recent earthquakes of $M_L$>4.5 in Korea, including the Gyeongju earthquake of Sept. 12. 2016 ($M_L$5.8). PSAs of one standard deviation from the developed GMPE with $M_W$ 6.5 at hypocentral distances of 15 km and 25 km are compared to the design spectrum (soil condition, $S_B$) of the Korean Building Code 2016 (KBC), indicating that: (1) PSAs at short periods around 0.2 sec can be 1.5 times larger than the corresponding KBC PSA, and (2) SD's at periods longer than 2 sec do not exceed 8 cm. Although this comparison of the design spectrum with those of the GMPE developed herein intends to identify the characteristics of the scenario earthquake in a lower-seismicity region such as South Korea, it does not mean that the current design spectrum should be modified accordingly. To develop a design spectrum compatible with the Korean Peninsula, more systematic research using probabilistic seismic hazard analysis is necessary in the future.

Predictions of curvature ductility factor of doubly reinforced concrete beams with high strength materials

  • Lee, Hyung-Joon
    • Computers and Concrete
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    • 제12권6호
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    • pp.831-850
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    • 2013
  • The high strength materials have been more widely used in reinforced concrete structures because of the benefits of the mechanical and durable properties. Generally, it is known that the ductility decreases with an increase in the strength of the materials. In the design of a reinforced concrete beam, both the flexural strength and ductility need to be considered. Especially, when a reinforced concrete structure may be subjected an earthquake, the members need to have a sufficient ductility. So, each design code has specified to provide a consistent level of minimum flexural ductility in seismic design of concrete structures. Therefore, it is necessary to assess accurately the ductility of the beam sections with high strength materials in order to ensure the ductility requirement in design. In this study, the effects of concrete strength, yield strength of reinforcement steel and amount of reinforcement including compression reinforcement on the complete moment-curvature behavior and the curvature ductility factor of doubly reinforcement concrete beam sections have been evaluated and a newly prediction formula for curvature ductility factor of doubly RC beam sections has been developed considering the stress of compression reinforcement at ultimate state. Based on the numerical analysis results, the proposed predictions for the curvature ductility factor are verified by comparisons with other prediction formulas. The proposed formula offers fairly accurate and consistent predictions for curvature ductility factor of doubly reinforced concrete beam sections.

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
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    • 제12권3호
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    • pp.349-357
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    • 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.

600 MPa 휨 철근을 사용한 특수 모멘트 골조의 보-기둥 접합부의 내진성능 (Seismic Performance of Beam-Column Connections for Special Moment Frame Using 600 MPa Flexural Reinforcement)

  • 황현종;박홍근;최원석;정란;김진근
    • 콘크리트학회논문집
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    • 제23권5호
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    • pp.591-601
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    • 2011
  • 보 휨 철근으로 600 MPa 철근을 사용한 콘크리트 보-기둥 접합부의 내진성능을 평가하기 위하여 실험 연구를 수행하였다. 세 개의 내부 보-기둥 접합부 실험체와 두 개의 외부 보-기둥 접합부 실험체를 주기하중 하에서 실험하였다. 실험체는 현행 기준에 따라 특수 모멘트 골조로 설계하였다. 600 MPa 철근을 사용한 실험체의 구조 성능을 400 MPa 철근을 사용한 실험체의 구조 성능과 비교하였다. 실험 결과 600 MPa 철근을 사용한 실험체에서 보-기둥 접합부에서 부착 미끄러짐이 증가하였으나, 하중 재하 능력과 변형 능력, 에너지 소산 능력이 우수한 것으로 나타났다.

원심모형 실험을 통한 궤도지지말뚝구조의 동적 거동 평가 (Dynamic Behavior Evaluation of Pile-Supported Slab Track System by Centrifuge Model Test)

  • 유민택;이명재;백민철;추연욱;이일화
    • 한국지반공학회논문집
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    • 제35권2호
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    • pp.5-17
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    • 2019
  • 철도하중 및 지진하중 재하 시 궤도지지말뚝 구조의 동적 거동 평가를 위해 동적원심모형 실험을 수행하였다. 실험의 변수는 연약지반의 깊이와 성토체의 높이로 결정하였으며, 총 4가지 경우에 대해 실험을 수행하였다. 연약지반 깊이는 실제 연약지반층에 고속철도를 부설한 호남고속철도의 익산-정읍 구간의 시추주상도를 분석하여 결정하였으며, 성토체의 높이는 일반적인 고속철도의 성토체 높이 범위의 하한 값과 상한 값으로 결정하였다. 실험 결과, 연약지반 깊이 대비 성토체 높이 비율이 높을 수록 말뚝에 작용하는 최대 휨모멘트 값이 크게 평가되었다. 또한, 실험조건 내에서 부설되는 궤도지지말뚝 구조는 단주기 지진파에 대해서는 국내 내진설계 기준의 최대 지진하중인 0.22g에 대해서까지 안전한 것으로 확인되었다. 그러나, 장주기 지진파에 대해서는 재현주기 2400년 지진인 0.22g로 가진시 말뚝의 균열 모멘트가 초과되었다. 일련의 실험결과를 바탕으로, 본 논문에 기술된 연약지반 깊이와 성토체 높이 범위 내에서 궤도지지말뚝 일반 단면에 대한 연약지반 대비 성토체 높이 비율 기준을 제시하였다.

천장 브래킷을 이용한 완전강접합 모듈러 시스템의 구조성능 (Structural Performance of the Modular System with Fully Restrained Moment Connections using Ceiling Bracket)

  • 이승재;곽의신;박재성;강창훈;손수덕
    • 대한건축학회논문집:구조계
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    • 제33권12호
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    • pp.37-44
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    • 2017
  • Due to structural characteristics, construction costs and duration of a modular system would be saved by minimizing the schedule on the job site. As such, it is crucial to develop a connection that can guarantee stiffness while allowing for simple assembling. Particularly, the mid- to high-rise construction of the modular system necessitates the securing of the structural stability and seismic performance of multi-unit frames and connections, and thus, the stiffness of unit-assembled structures needs to be re-evaluated and designed. However, evaluating a frame consisting of slender members and reinforcing materials is a complicated process. Therefore, the present study aims to examine the structural characteristics of a modular unit connection based a method for reinforcing connection brackets and hinges while minimizing the loss of the cross section. Toward this end, the study modeled the beam-to-column connection of a modular system with the proposed connection, and produced a specimen which was used to perform a cycling loading test. The study compared the initial stiffness, the attributes of the hysteretic behavior, and the maximum flexural moment, and observed whether the model acquired the seismic performance, compared to the flexural strength of the steel moment frame connection that is required by the Korean Building Code. The test results showed that the proposed connection produced a similar initial stiffness value to that of the theoretical equation, and its maximum strength exceeded the theoretical strength. Furthermore, the model with a larger ceiling bracket showed higher seismic performance, which was further increased by the reinforcement of the plate.

Seismic behavior of steel truss reinforced concrete L-shaped columns under combined loading

  • Ning, Fan;Chen, Zongping;Zhou, Ji;Xu, Dingyi
    • Steel and Composite Structures
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    • 제43권2호
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    • pp.139-152
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    • 2022
  • Steel-reinforced concrete (SRC) L-shaped column is the vertical load-bearing member with high spatial adaptability. The seismic behavior of SRC L-shaped column is complex because of their irregular cross sections. In this study, the hysteretic performance of six steel truss reinforced concrete L-shaped columns specimens under the combined loading of compression, bending, shear, and torsion was tested. There were two parameters, i.e., the moment ratio of torsion to bending (γ) and the aspect ratio (column length-to-depth ratio (φ)). The failure process, torsion-displacement hysteresis curves, and bending-displacement hysteresis curves of specimens were obtained, and the failure patterns, hysteresis curves, rigidity degradation, ductility, and energy dissipation were analyzed. The experimental research indicates that the failure mode of the specimen changes from bending failure to bending-shear failure and finally bending-torsion failure with the increase of γ. The torsion-displacement hysteresis curves were pinched in the middle, formed a slip platform, and the phenomenon of "load drop" occurred after the peak load. The bending-displacement hysteresis curves were plump, which shows that the bending capacity of the specimen is better than torsion capacity. The results show that the steel truss reinforced concrete L-shaped columns have good collapse resistance, and the ultimate interstory drift ratio more than that of the Chinese Code of Seismic Design of Building (GB50011-2014), which is sufficient. The average value of displacement ductility coefficient is larger than rotation angle ductility coefficient, indicating that the specimen has a better bending deformation resistance. The specimen that has a more regular section with a small φ has better potential to bear bending moment and torsion evenly and consume more energy under a combined action.

The effect of mass eccentricity on the torsional response of building structures

  • Georgoussis, George K.;Mamou, Anna
    • Structural Engineering and Mechanics
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    • 제67권6호
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    • pp.671-682
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    • 2018
  • The effect of earthquake induced torsion, due to mass eccentricities, is investigated with the objective of providing practical design guidelines for minimizing the torsional response of building structures. Current code provisions recommend performing three dimensional static or dynamic analyses, which involve shifting the centers of the floor masses from their nominal positions to what is called an accidental eccentricity. This procedure however may significantly increase the design cost of multistory buildings, due to the numerous possible spatial combinations of mass eccentricities and it is doubtful whether such a cost would be justifiable. This paper addresses this issue on a theoretical basis and investigates the torsional response of asymmetric multistory buildings in relation to their behavior when all floor masses lie on the same vertical line. This approach provides an insight on the overall seismic response of buildings and reveals how the torsional response of a structure is influenced by an arbitrary spatial combination of mass eccentricities. It also provides practical guidelines of how a structural configuration may be designed to sustain minor torsion, which is the main objective of any practicing engineer. A parametric study is presented on 9-story common building types having a mixed-type lateral load resisting system (frames, walls, coupled wall bents) and representative heightwise variations of accidental eccentricities.

웹 GIS 기반 철도 지반정보 관리프로그램의 개발 (Development of the Railroad Geotechnical Information Management System Using Web GIS)

  • 황선근;이성혁;김현기;김정무
    • 한국철도학회논문집
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    • 제7권1호
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    • pp.20-25
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    • 2004
  • Railroad geotechnical information management system was developed by using Web GIS and DB in this study. The standardization of railroad geotechnical information is progressed by classifying three groups as like basic informations, vibration informations along railway lines and design drawings. The basic informations consisted of basic and dynamic properties of soils, geophysical exploration and seismic survey/exploration. And the specification for 'human exposure to whole-body vibration' was adopted to construct the vibration informations along railway lines. The informations as like drawings and photographs were saved by changing to graphic files in the standardization of design drawings. In the case of standardization of geographical information, the topographical maps(NGIS, 1:5000) were primarily used as digital maps. Another digital maps(KRRI, 1:5000) and their geographical DB based on NGI code system were added on this maps. The standardized informations were used to construct their database. And railroad information management system was developed using Entity-Relation(ER) model which had a good feasibility for expansion and transition to other system in designing stage of database. This system consisted of layer selection, search and analysis of geotechnical informations and Zeus DB was adopted for GIS operating and user interface. This system could be a good tool for saving, searching and analyzing the geotechnical and geophysical informations. These DB systems would offered the basic informations to plans, design and construction of railroad lines etc. in practical use.

약진지역에 있어서의 시간이력 해석과 UBC 규준 해석의 비교 (A Comparison of Time History Analysis to UBC-88 Requirements in a Low Seismic Zone)

  • 김희철
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 1991년도 가을 학술발표회 논문집
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    • pp.90-95
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    • 1991
  • The Uniform Building Code (UBC) is the most widely used requirements for earthquake resistant design in the United States. In this paper, a mid-rise steel building is analyzed by applying 12 sets of actual strong-motion earthquake data that have been scaled to acne 2B levels. The simply extrapolated ground motion displacements are used for the dynamic loads. The results of dynamic analyses for a 10-story steel building are compared with the static and dynamic analysis requirements of UBC-88. It was found that computed lateral fortes using UBC-88 static procedure differed by about 60 percent depending on whether the natural period was computed using the UBC empirical method or the UBC recommended Rayleigh's method. The lateral fortes computed from the UBC response spectra were more than 10 times greater than those computed by UBC static procedures. The lateral forces obtained from both linear and nonlinear analyses using 1989 Loma Prieta ground mot ions compared very well with UBC response spectra results.

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