• 제목/요약/키워드: steel-girder bridges

검색결과 448건 처리시간 0.024초

강박스거더 철도교량의 동적거동 및 진동저감 방안 분석 (Analysis of Dynamic Response and Vibration Mitigation for Steel Box Girder Railway Bridges)

  • 황의승;김도영;장성호
    • 한국강구조학회 논문집
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    • 제29권6호
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    • pp.487-495
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    • 2017
  • 최근 교통정체와 환경적 문제로 인하여 많은 개발도상국에서 고속철도 시스템이 많이 건설되고 있다. 철도교는 도로교와 비교하여 차이점이 많이 있으며 그중 주행안전성 및 승차감이 중요한 이슈 중의 하나이다. 반복되는 하중으로 인한 구조물의 처짐과 가속도는 열차주행시의 안전성과 사용자의 승차감에 큰 영향을 미친다. 특히 강철도교는 콘크리트교에 비하여 상대적으로 가벼운 중량으로 진동에 취약한 특징이 있다. 이 논문의 목적은 주행 중인 열차에 의한 강박스거더 철도교의 동적 거동을 분석하고 진동을 저감할 수 있는 합리적인 방안을 제안하는 것이다. 세 개의 강철도교에 대한 장기적 계측이 수행되었으며 주행중인 열차에 의한 교량의 동적거동을 해석할 수 있는 수치적인 모델이 개발되었다. 모델의 검증을 위하여 교량의 고유진동수가 비교되었다. 구조물의 진동 저감을 위한 방안으로 세 가지 방법에 대한 매개변수 연구가 수행되었으며, 이 분석 결과를 바탕으로 합리적인 진동 저감 방안이 제안되었다.

경량전철 강교량에 대한 이동하중하 동적거동 및 장대레일 축력의 해석적 평가 (Analysis of the Dynamic Behavior and Continuous Welded Rail of LRT Steel Bridge)

  • 성택룡;김철환
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 2005년도 춘계 학술발표회 논문집
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    • pp.564-571
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    • 2005
  • Two-plate girder bridge and narrow steel box girder bridge are suggested for the steel wheel AGT system. For these bridge system, rail-bridge interaction analysis was carried out and dynamic behavior of these bridges was investigated. The result shows that all the estimated parameters satisfy the criteria concerned. As a result these two suggested bridge systems have enough performance to be competitive for the LRT elevated structures.

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무도상 강판형 철도교의 지진 위험도 해석 (Seismic Risk Analysis of Track-on-Steel Plate Girder Railway Bridges)

  • 박주남;최은수;김성일;조성철
    • 한국강구조학회 논문집
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    • 제21권1호
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    • pp.45-53
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    • 2009
  • 우리나라 기존철도 교량의 40% 이상이 무도상 강판형교로 구성되어 있으며, 이들 중 대부분은 1970년대 이전에 건설되었기에 일반적으로 지진하중의 고려 없이 설계되었다. 이들 무도상 강판형 철도교의 내진성능을 향상시키기 위해서는 내진성능이 부족한 요소들에 대하여 여러가지 방법의 내진보강을 수행할 수 있는데, 내진보강의 적정수위를 정하기 위해서는 이에 대한 지진위험도 평가가 필수적이라 할 수 있다. 본 연구에서는 확률적 지진 위험도 해석과 확률적 손상해석을 통해서 무도상 강판형교에 대한 지진위험도 평가를 수행하였다. 먼저 받침 및 교각을 교량의 지진 응답에 주 영향을 미치는 주요 요소로 정의하고 각 요소 별로 지진취약도를 작성하였다. 그 후 작성된 취약도를 지진재해도함수와 결합하여 각 손상상태에 해당하는 연간 손상확률을 산정하였다. 지진 위험도 해석을 통하여 50년 초과손상확률을 계산한 결과, 무근콘크리트로 되어 있는 무도상 강판형 철도교의 교각은 우리나라의 지진상황에서 위험도가 매우 낮게 나타났다. 이는 무도상 강판형교의 특성 상 가벼운 상부구조로 인하여 지진 시 하부구조에 전달되는 횡하중이 상대적으로 적기 때문인 것으로 분석된다. 반면에 선받침으로 구성된 무도상 강판형교의 받침요소들의 50년 초과 손상확률은 상대적으로 크게 나타났는데, 그 중 자유단 받침의 경우 slight damage에 대한 초과손상확률이 12.78%로 고정단 받침의 4.23%보다 높게 나타난 반면 complete damage에 대해서는 자유단 받침과 고정단 받침 모두 비슷한 수준의 초과손상확률($0.18%{\sim}0.19%$)을 보였다. 본 연구에서 수행한 지진 위험도 평가는 추후 강판형 철도교의 내진보강을 수행함에 있어서 의사결정을 뒷받침할 수 있는 자료로 효과적으로 사용될 수 있을 것이다.

판형교의 가속도-임피던스 신호를 이용한 하이브리드 손상 모니터링 기법 (Hybrid Damage Monitoring Technique for Plate Girder Bridges using Acceleration-Impedance Signatures)

  • 홍동수;조현만;나원배;김정태;박규해
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 2008년도 정기 학술대회
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    • pp.197-202
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    • 2008
  • In this paper, a hybrid vibration-impedance approaches is newly proposed to detect the occurrence of damage, the location of damage, and extent of damage in steel plate-girder bridges. The hybrid scheme mainly consists of three sequential phases: 1) to alarm the occurrence of damage, 2) to classify the alarmed damage, and 3) to estimate the classified damage in detail. Damage types of interest include flexural stiffness-loss in girder and bolts-loose in supports. In the first phase, the global occurrence of damage is alarmed by monitoring changes in acceleration features. In the second phase, the alarmed damage is classified into subsystems by recognizing patterns of impedance features. In the final phase, the location and the extent of damage are estimated by using modal strain energy-based damage index method and root mean square deviation method. The feasibility of the proposed system is evaluated on a laboratory-scaled steel plate-girder bridge model for which hybrid vibration-impedance signatures were measured for several damage scenarios.

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횡방향 프리스트레스트 박스거더의 균열거동 연구 (Cracking behavior of transversely prestressed concrete box girder bridges)

  • 오병환;최영철
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2005년도 봄학술 발표회 논문집(I)
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    • pp.303-306
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    • 2005
  • The cracking behavior of prestressed concrete members is important for the rational design of prestressed concrete structures. However, the test data on the cracking behavior of prestressed concrete structures are very limited. The purpose of the present study is to investigate the crack spacing and crack width in transversely post-tensioned decks of concrete box girder bridges under applied loading. For this purpose, large scale test members of concrete box girder segments were fabricated and tested. The crack widths, crack spacings and crack patterns were investigated for various load levels. The crack widths and steel strains were continuously monitored during the loading process. To derive a rational predicton equation for crack width, the bond characteristics of post-tensioned steel and nonprestressed rebar in the PSC members were explored first. This was done by measuring the strains of prestressing steel and nonprestressed rebar in the test members under loading. A simple equation for the prediction of maximum crack width in transversely post-tensioned concrete one-way slabs is proposed by considering bond characteristic of prestressing steel and nonprestressed reinforcement. The comparison of proposed equation with experimental data shows good correlation. The present study indicates that ACI and CEB-FIP code equations exhibit rather large deviation from test data on prestressed concrete members.

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프리스트레스트 콘크리트 박스거더 교량 바닥판의 구조거동에 관한 실험 연구 (An Experimental Study on the Structure Behavior of Deck Slabs in PSC Box Girder Bridges)

  • 오병환;이성철;박성용;김성태;박성룡;김병석
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2002년도 가을 학술발표회 논문집
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    • pp.319-322
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    • 2002
  • In this paper, an experimental study is carried out to find out structural behavior of upper slab in concrete box girder bridges. The major variables in the tests are the cross-section of upper slab including haunch dimensions. The strains of concrete and steel bars and the deflections of slabs are measured automatically during the tests. The test results indicate that the size of haunches has much influence on the structural behavior of box girders. The appropriate haunch dimensions are suggested from the present study.

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LRFD에 의한 2경간 Preflex 합성형교에 관한 연구 (A Study on the two span preflex composite girder bridges with LRFD)

  • 구민세;박영제;오석태
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 1999년도 가을 학술발표회 논문집
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    • pp.95-102
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    • 1999
  • Preflex beams are prestressed by the predeflection technique, which enables the use of concrete-encased high strength steel beams where deflection or cracking of concrete, or both, would otherwise be excessive. This study presents the analysis of the two span preflex composite girder bridges with Load and Resistance Factor Design(LRFD), which is most widely used design nile in the advanced states. The results show that the comparison of LRR with Allowable Stress Design(ASD) according to span length.

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Hybrid damage monitoring of steel plate-girder bridge under train-induced excitation by parallel acceleration-impedance approach

  • Hong, D.S.;Jung, H.J.;Kim, J.T.
    • Structural Engineering and Mechanics
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    • 제40권5호
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    • pp.719-743
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    • 2011
  • A hybrid damage monitoring scheme using parallel acceleration-impedance approaches is proposed to detect girder damage and support damage in steel plate-girder bridges which are under ambient train-induced excitations. The hybrid scheme consists of three phases: global and local damage monitoring in parallel manner, damage occurrence alarming and local damage identification, and detailed damage estimation. In the first phase, damage occurrence in a structure is globally monitored by changes in vibration features and, at the same moment, damage occurrence in local critical members is monitored by changes in impedance features. In the second phase, the occurrence of damage is alarmed and the type of damage is locally identified by recognizing patterns of vibration and impedance features. In the final phase, the location and severity of the locally identified damage are estimated by using modal strain energy-based damage index methods. The feasibility of the proposed scheme is evaluated on a steel plate-girder bridge model which was experimentally tested under model train-induced excitations. Acceleration responses and electro-mechanical impedance signatures were measured for several damage scenarios of girder damage and support damage.

접속부의 강성완화를 위한 Approach zone의 매개분석 (Approach zone of parametric analysis for hardness mitigation of connection)

  • 손지현;최진유;오지택;황원섭
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2006년도 추계학술대회 논문집
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    • pp.558-564
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    • 2006
  • When vehicles pass the connection between the bridge and earthwork, the difference of both sections' stiffness produces an increasing wheelload. As a consequence, it results in the excessive vibration of vehicles and the damage of bearing system. In general, steel plate girder railway bridges without ballast track have larger stiffness than the bridge with ballast, and produces larger impulse on the bridge superstructure. Thus, it is necessary to reduce the differences of both stiffness. This study presents parametric studies on the behavior of plate girder bridges and their tracks by means of various stiffnesses and the length of approach zone. The results of numerical study showed that the smaller the stiffness of both sides and the longer the length of approach zone, the variation of wheelload becomes smaller. Hence, it gives less burden into the plate girder bridges and their tracks. It is expected that the results of parametric study can be used as a preliminary data for the determination of economical length on the approach zone and the stiffness of both sides.

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Experimental and numerical study on shear studs connecting steel girder and precast concrete deck

  • Xia, Ye;Chen, Limu;Ma, Haiying;Su, Dan
    • Structural Engineering and Mechanics
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    • 제71권4호
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    • pp.433-444
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    • 2019
  • Shear studs are often used to connect steel girders and concrete deck to form a composite bridge system. The application of precast concrete deck to steel-concrete composite bridges can improve the strength of decks and reduce the shrinkage and creep effect on the long-term behavior of structures. How to ensure the connection between steel girders and concrete deck directly influences the composite behavior between steel girder and precast concrete deck as well as the behavior of the structure system. Compared with traditional multi-I girder systems, a twin-I girder composite bridge system is more simplified but may lead to additional requirements on the shear studs connecting steel girders and decks due to the larger girder spacing. Up to date, only very limited quantity of researches has been conducted regarding the behavior of shear studs on twin-I girder bridge systems. One convenient way for steel composite bridge system is to cast concrete deck in place with shear studs uniformly-distributed along the span direction. For steel composite bridge system using precast concrete deck, voids are included in the precast concrete deck segments, and they are casted with cast-in-place concrete after the concrete segments are erected. In this paper, several sets of push-out tests are conducted, which are used to investigate the heavier of shear studs within the voids in the precast concrete deck. The test data are analyzed and compared with those from finite element models. A simplified shear stud model is proposed using a beam element instead of solid elements. It is used in the finite element model analyses of the twin-I girder composite bridge system to relieve the computational efforts of the shear studs. Additionally, a parametric study is developed to find the effects of void size, void spacing, and shear stud diameter and spacing. Finally, the recommendations are given for the design of precast deck using void for twin I-girder bridge systems.