• 제목/요약/키워드: Additional rail stress

검색결과 23건 처리시간 0.029초

교량설계를 위한 장대레일 축력 특성 분석 (Characteristics of the stress on CWR for railway bridge design)

  • 최일윤;조현철;최진유;양신추
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2007년도 추계학술대회 논문집
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    • pp.1395-1400
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    • 2007
  • Characteristics of the stress on Continuous Welded Rail(CWR) were investigated to apply to design procedure for railway bridge design. Actions due to change in temperature, braking/traction and bending of the deck were considered in this interaction analysis between CWR and bridge deck. The bridge parameters such as static arrangement of the deck and support stiffness were taken into consideration to examine the influence of the parameters on the additional rail stress. The final results of this study, which include the displacement as well as the stress will be presented in the form of the design chart in future.

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대만 고속전철 교량의 레일-구조물 상호작용 평가

  • Gwon Gi-Jun;Kim Yong-Gil;Park Byeong-Gi
    • 한국산업안전학회:학술대회논문집
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    • 한국안전학회 2000년도 추계 학술논문발표회 논문집
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    • pp.442-449
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    • 2000
  • In railway structure, long rail causes the increase of stress. Especially, additional stress and displacement are caused by the discontinuity and variations of the stiffness of substructures in the section of bridges. In the other words, binding forces like the connection strengths and friction force between ties and ballasts play the role of resistance forces.(omitted)

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콘크리트궤도에 고속분기기 설치를 고려한 교량설계 및 시공기법 (Design and Construction Method Considering Turnout for High-speed on The Bridge with Concrete Track)

  • 김인재;오세영;주환중
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2008년도 춘계학술대회 논문집
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    • pp.71-79
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    • 2008
  • The concrete track is being used at the Phase II of the Kyeongbu High Speed Railway and New Constructed Honam High Speed Railway. When it makes a decision of bridge type, It has to consider about longitudinal forces of Continuous Welded Rail, Displacement at the end of bridges, Up-lift forces for fastener on the track. If it is installed turnout on the bridge, There is likelihood of the deck twist by applying the each difference longitudinal forces at the 4 each rails and the buckling by concentration of rail stress at the turnout. Moreover, If it is installed turnout on the continuous bridge and REJ(Rail Expansion Joint) on the main track or turnout track. It is hard to keep a safety for rail because of coming to twist or folding at the expansion of deck on the turnout track. Therefore when it is a design of bridge with turnout. It need to take bridge type to minimize an additional axial force and a displacement at the turnout. This paper makes a study of the composite steel arch bridge that is able to resolve criteria requirements of safety for track with turnout and suggest a helpful design method for bridge considering track with turnout by being based on design and construction method of Eonyang Bridge at the north part of Ulsan Station in Phase II of the Kyeongbu High Speed Railway.

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장경간 철도 교량에 적용된 슬라이딩 궤도와 레일신축이음장치의 궤도-교량 상호작용 비교 (Comparative Analysis of Track-Bridge Interaction of Sliding Slab Track and Rail Expansion Joint for Long-Span Railway Bridge)

  • 이경찬;장승엽;이정휘;최현성
    • 한국전산구조공학회논문집
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    • 제29권2호
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    • pp.169-177
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    • 2016
  • 슬라이딩 궤도는 콘크리트 궤도와 교량 바닥판 사이에 저마찰 슬라이드층을 두어 레일신축이음장치와 같은 특수 장치를 적용하지 않고도 궤도-교량 상호작용 효과를 효과적으로 저감시킬 수 있는 새로운 궤도 시스템으로 개발되고 있다. 이 논문에서는 장경간 교량에 슬라이딩 궤도와 레일신축이음장치를 각각 적용한 경우에 대하여 궤도-교량 상호작용해석을 수행하고 그 결과를 비교 검토하였다. 대상교량은 상호작용 효과를 극대화하기 위하여 9경간 연속 PSC교와 2경간 연속 강합성교를 포함하며, 총 연장 1,205m, 최대 고정지점간 거리 825m인 장경간 교량을 선정하였다. 해석결과 슬라이딩 궤도는 레일신축이음장치를 적용한 경우보다 레일 부가 축력이 더 작은 것은 물론, 지점부에 재하되는 수평 반력 또한 작게 나타나 궤도-교량 상호작용 저감 효과가 뛰어난 것으로 확인되었다. 반면 슬라이딩 궤도는 온도하중에 의해 높은 슬래브 축력이 발생되므로, 궤도 설계 시 슬래브 축력에 대한 단면 설계에 주의를 기울일 필요가 있다.

고속철도교량의 온도신축길이 변화를 고려한 교량상 장대레일의 거동 해석 (Analysis of CWR track on the High-Speed Railway Bridges considering the Expansion Length of Bridge Deck)

  • 강재윤;김병석;곽종원;최은석;진원종
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2004년도 추계학술대회 논문집
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    • pp.806-811
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    • 2004
  • Currently, in the design criteria for the high speed railway bridges, the maximum distance between bridge expansion joint is limited to 80m using a continuous welded mil, in order to limit the additional stress in the rail due to the rail-bridge interaction. In the past study on the resonance effect of HSR train, it is known that the reduction of resonance and dynamic responses of bridge deck occurs at the specific expansion length of 28.05m and 46.75m. In this study, the stability of track structure on the HSR bridges with expansion length of 90m has checked by finite element method. And the track behavior including mil stresses and relative displacements are compared to the current state of track structures on the bridge system with 80m long expansion length.

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교량신축과 분기기의 이격거리에 따른 교량상 분기기 축력특성 연구 (A Study on the axial force in CWR with Turnout according to Distance between Bridge Expansion Joint and Turnout)

  • 최진유;이현정;양신추;정장용;유진영
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2008년도 추계학술대회 논문집
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    • pp.1050-1055
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    • 2008
  • The demand on a turnout layed on a bridge is rising owing to the increasing number of stations on the viaduct. And also the demand on a turnout with CWR is rising to upgrade running speed of the passing train. A CWR with turnout is subjected to additional axial force induced by the thermal expansion of bridge as well as lead rail of turnout. The additional axial force is closely related with the distance between bridge expansion joint and turnout when it is located near the movable bearing of bridge, and it is required to keep some distance to prevent excessive axial stress in CWR. But, there is no guideline in specification for the proper distance from E.J. to turnout, and it caused problem in planning turnout or bridge. So, it this study, the parametric study to investigate the effect on axial stress in CWR with turnout according to span length and distance between bridge expansion joint and turnout was performed. From the results of numerical analysis, it was found out that $5{\sim}30m$ distance is required to prevent excessive axial in CWR for span length less 90m.

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플로팅 슬래브궤도 슬래브 연결부에서의 차량 및 궤도의 동적 거동 (Dynamic Behavior of Train and Track at Slab Joints of Floating Slab Track)

  • 장승엽;양신추;황성호;안미경;최원일
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2011년도 춘계학술대회 논문집
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    • pp.993-997
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    • 2011
  • Highlighted is significance of the floating slab track for mitigating vibrations induced by train, together with the recent trends towards speed-up of railways. In the design of the floating slab track, it is more beneficial to increase the slab length since a significant impact can be induced on the train and track at the discontinuous points between slabs with the finite slab length. However, if the slab length is too long, the tensile stress of slab concrete and the additional stress on rail due to the temperature change and shrinkage of concrete slab. Thus it is of great importance to relevantly determine the slab length. In this study, to understand these phenomena and establish the countermeasures, the dynamic behaviors of train and track at the inter-slab discontinuous points have been explored and the effect of dowel joints as one of countermeasures has been analytically investigated.

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지반운동을 공간변화를 고려한 고속철도 장대레일의 응력해석 (Rail-Stress of High-Speed Railway Bridges using tong Rails and subjected to Spatial Variation of Ground Motion Excitations)

  • Ki-Jun Kwon;Yong-Gil Kim
    • 한국안전학회지
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    • 제18권2호
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    • pp.132-138
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    • 2003
  • 고속철도교량에서 장대레일의 사용은 연결부 근처에서 레일과 교량상판사이의 비선형 거동으로 인하여 부가적인 응력을 유발한다. 고속철도 교량의 지진응답해석에서, 구조물응답은 지반운동특성에 매우 영향을 많이 받으므로, 지반운동의 위치에 따른 변화가 구조물의 응답에 영향을 미치게 되고, 그 결과는 레일에 응력을 유발하게 된다. 또한 고속철도에서 사용지진 수준의 지진발생 시에 열차의 긴 제동거리가 필요하므로 열차의 안전한 정지를 확보하는 것이 요구된다. 이러한 관점에서 장대레일에 의해 부가적으로 발생하는 응력, 지반운동의 공간변화에 대한 구조물 응답의 영향, 그리고 안전하게 정지하기 위해 필요한 열차의 제동거리 등의 사항이 레일의 응력해석에 고려될 필요가 있다. 본 논문에서는 지진하중을 받는 고속철도교량의 장대레일 응력해석을 위하여 제동하중, 지반운동의 공간적 변화, 그리고 레일의 재료 비선형을 고려한 시간영역에서의 비선형 동적해석방법을 개발하고 적용하였다. 제시된 방법을 한국고속철도의 특정부지에 적용하여 지반운동의 공간변화에 따른 응답의 타당성을 보였다.

A comprehensively overall track-bridge interaction study on multi-span simply supported beam bridges with longitudinal continuous ballastless slab track

  • Su, Miao;Yang, Yiyun;Pan, Rensheng
    • Structural Engineering and Mechanics
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    • 제78권2호
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    • pp.163-174
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    • 2021
  • Track-bridge interaction has become an essential part in the design of bridges and rails in terms of modern railways. As a unique ballastless slab track, the longitudinal continuous slab track (LCST) or referred to as the China railway track system Type-II (CRTS II) slab track, demonstrates a complex force mechanism. Therefore, a comprehensive track-bridge interaction study between multi-span simply supported beam bridges and the LCST is presented in this work. In specific, we have developed an integrated finite element model to investigate the overall interaction effects of the LCST-bridge system subjected to the actions of temperature changes, traffic loads, and braking forces. In that place, the deformation patterns of the track and bridge, and the distributions of longitudinal forces and the interfacial shear stress are studied. Our results show that the additional rail stress has been reduced under various loads and the rail's deformation has become much smoother after the transition of the two continuous structural layers of the LCST. However, the influence of the temperature difference of bridges is significant and cannot be ignored as this action can bend the bridge like the traffic load. The uniform temperature change causes the tensile stress of the concrete track structure and further induce cracks in them. Additionally, the influences of the friction coefficient of the sliding layer and the interfacial bond characteristics on the LCST's performance are discussed. The systematic study presented in this work may have some potential impacts on the understanding of the overall mechanical behavior of the LCST-bridge system.

사용지진을 고려한 고속철도 연속교 장대레일의 응력 해석 (Long-Rails Stress Analysis of High-Speed Railway Continuous Bridges Subject to Operating Basis Earthquake)

  • 김용길;권기준;고현무
    • 한국지진공학회논문집
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    • 제6권5호
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    • pp.59-66
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    • 2002
  • 철도나 고속철도에서 사용되는 장대레일은 연결부 근처에서 상부구조물간의 변위불일치로 인하여 부가적인 응력이 발생되게 되는데, 이 현상은 단순교에서보다 연속교에서 더 현저하게 나타난다. 철도는 가속과 정지 시의 안전뿐만 아니라 지진상태에서도 탈선이 일어나지 않고 안전하게 정지할 수 있도록 철도구조물의 응력과 변위에서 안전을 보장할 수 있어야 한다. 철도의 안전도를 확보하기 위해 시-제동하중, 온도하중에 의한 레일의 응력에 대한 해석방법은 많은 연구가 이루어져 왔으나, 그 방법이 정적 비선형해석을 바탕으로 하고있어 동적 비선형해석을 필요로 하는 지진하중은 고려되지 못하였다. 그러나, 철도교량의 장대레일과 같이 비선형 거동을 보이는 시스템에서는 교량상판의 상대변위와 레일의 응력과는 선형적인 관계가 정립되지 못하므로, 지진시 열차의 안전한 정지를 확인 하기 위해서는 지진에 대한 영향이 제대로 반영되도록 정적하중인 제동하중과 동적하중인 지진하중을 동시에 재하하여 레일의 응력을 계산하는 동적해석 방법이 요구된다. 본 연구에서는 장대레일을 사용할 때 문제가 되는 레일의 응력을 해석하기 위해 대만고속철도 설계시방서 기준을 만족하는 재료비선형이 고려된 동적해석방법을 개발하였으며 그 방법을 현재 대만에서 연약부지 위에 건설중인 고속철도 연속교에 대한 해석에 적용하였다.