• 제목/요약/키워드: Track stiffness

검색결과 281건 처리시간 0.031초

방진자갈매트구간 궤도지지계수 측정 및 분석 (Measurement and analysis of support stiffness of the track which rubber ballast-mat installed)

  • 양신추;이지하;김은
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2007년도 추계학술대회 논문집
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    • pp.1071-1076
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    • 2007
  • In high-speed line, at some part of the track which rubber ballast-mat installed, track irregularity grew rapidly and affected riding comfort and train running stability. It is urgently requested to establish counter-measures which can be applied to track under operation. To do this, it is very important to analysis the origin of that phenomenon before. Track support stiffness is an essential factor for evaluating track condition. Sudden changes of support stiffness along track occur instability of train and bad riding comfort. Preventing sudden changes of track support stiffness is a key technique in high-speed track maintenance. Besides the sudden changes, the magnitude itself also significantly affects track and train. Low stiffness of ballast-mat makes ballast acceleration area wider. And it may accelerate track irregularity growth. So, the stiffness should be limited. To calculate track stiffness, measuring load and displacement on track is needed. In this study, the behavior of the track which rubber ballast-mat installed was measured and analyzed to understand the origin of rapid growth of it.

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레일패드의 강성이 자갈궤도 침하에 미치는 영향 연구 (A study on the Settlement of Ballasted Track according to Various Rail-Pad Stiffness)

  • 최진유;김은;황만호;조수익
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2010년도 춘계학술대회 논문집
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    • pp.249-255
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    • 2010
  • Ballasted track is under the circumstance of repetition of deterioration and recovery. Track deterioration is presented as track irregularity or settlement, and dynamic force subjected to track is one of major cause of the deterioration. The dynamic force is determined from the dynamic interaction between track and vehicle. Rail-pad stiffness is one of the factor affects track dynamic property. In this study, the relationship between rail-pad stiffness and track settlement was investigated. Dynamic forces according to various rail-pad stiffness was obtained from the dynamic vehicle-track interaction analysis using DARTS-NL. Track settlement was calculated by substitution the dynamic forces into various formulas for track settlement. From the result of analysis, it was known that the track settlement is increased about 6% when the rail-pad stiffness rise about twice. And this result leads that there is only a little relationship between rail-pad stiffness and track settlement.

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도시철도 궤도구조별 궤도지지강성 평가를 위한 실험적 연구 (A Study on the Evaluation of Track Support Stiffness on the Various Track Type in Urban Transit)

  • 이동욱;박용걸;최정열
    • 한국철도학회논문집
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    • 제14권3호
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    • pp.262-270
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    • 2011
  • 궤도지지강성은 차량이 주행함에 있어 궤도와 차량에 매우 큰 영향을 미치며, 이는 궤도 파괴이론에 근거한 궤도유지관리와 승객의 승차감에 영향을 준다. 또한 궤도설계 시 고려되는 궤도지지강성은 이론에 근거한 계산치이며 이는 공용중인 궤도에서의 실제 궤도지지강성과는 상이하다. 따라서 본 연구에서는 현장측정을 통해 동적 윤중과 레일수직변위, 레일저부응력을 측정하여 궤도지지강성을 산출하였고 이를 이론 궤도지지강성과 비교 분석하였다. 현장측정결과 자갈도상궤도에서의 궤도지지강성은 자갈의 상태에 직접적인 영향을 받으며 콘크리트궤도의 경우 궤도구조별(일반적인 침목매입식, 레일플로팅, 침목플로팅) 궤도구조특성에 직접적인 영향을 받는 것으로 나타났다. 그러나 자갈 및 콘크리트궤도 모두 설계 시 적용되는 궤도지지강성이 측정된 궤도지지강성에 비해 과소평가되는 것으로 분석되었다. 이는 공용중인 궤도의 상태평가 시 현장의 궤도상태를 반영하지 못한 예측 및 평가가 될 소지가 있을 것으로 판단된다. 이에 본 연구에서는 궤도구조형식 및 궤도상태별 궤도지지 강성의 범위를 실험적으로 제시하였다.

도시철도 분기기 궤도구조의 궤도지지강성과 궤도충격계수의 상관관계에 관한 연구 (A Study on Relationship between Track Impact Factor and Track Support Stiffness of Turnout System on Urban Transit)

  • 최정열;박종윤;이규용;정지승
    • 문화기술의 융합
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    • 제6권2호
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    • pp.461-466
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    • 2020
  • 본 연구는 도시철도 콘크리트궤도에 적용된 침목플로팅궤도와 목침목 분기기 궤도의 궤도지지강성과 궤도충격계수의 상관관계분석을 위해 운행선 현장측정을 수행하여 분기기 궤도의 위치별 궤도지지강성과 궤도충격계수를 측정하였다. 본선의 일반 궤도구조인 침목플로팅궤도의 궤도지지강성은 침목방진패드의 스프링강성에 지배적인 영향을 받는 것으로 분석되었다. 일반궤도와 분기기 위치별 궤도지지강성의 차이는 궤도충격계수에 직접적인 영향을 미치는 것으로 분석되었다. 연구결과, 침목플로팅 궤도구조와 분기기 궤도구조의 궤도지지강성과 궤도충격계수는 위치별로 큰 차이를 나타내는 것으로 나타났다. 따라서 본선 일반구간과 분기기 궤도의 궤도지지강성의 편차를 최소화 하여 궤도충격을 저감시키는 방안이 필요한 것으로 분석되었다.

고무방진매트가 적용된 플로팅궤도시스템의 거동분석을 위한 실험적 연구 (Experimental Study on the Evaluation of Behavior for Floating Track System Using a Resilient Rubber Mat)

  • 이시용;정인철;최정열;박용걸
    • 한국철도학회논문집
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    • 제17권4호
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    • pp.281-288
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    • 2014
  • 본 연구는 고가정거장 구간에 부설된 고무방진매트 플로팅궤도시스템의 방진성능 및 적용효과를 실험적으로 입증하고자 고무방진매트가 적용되지 않은 개소와 비교 측정을 수행하였다. 또한 고무방진매트 플로팅 궤도시스템의 측정 궤도지지강성 및 궤도충격계수를 산출하고 이론 및 설계치와 비교하여 현재 시공된 고무방진매트 플로팅궤도시스템에 대한 궤도상태의 건전성 및 궤도 충격의 수준을 평가하였다.

궤도노반의 상태 및 품질평가에 관한 연구 (Evaluation on the condition and quality of railway track substructure)

  • 김대상;박태순
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2005년도 춘계 학술발표회 논문집
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    • pp.346-353
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    • 2005
  • Track substructure(ballast, subgrade) should have sufficient strength and adequate stiffness to fully support track superstructure(rail, fastener, sleeper). Vertical support stiffness of track comes from the sufficient thickness, adequate strength and stiffness of material of substructure layers. Since the vertical support stiffness of track substructure is closely related with the track geometry, the evaluation of the stiffness is very important to understand the track states. This paper introduces the system, which are composed of Ground Penetrating Radar(GPR), Portable Ballast Sampler(PBS), and Light Falling Weight Deflectometer(LFWD), to evaluate substructure condition and summarizes the field test results performed with the reliable system.

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레일응력을 고려한 레일패드강성 결정 (Evaluation of Rail pad Stiffness Considering Stress of Rail)

  • 박대근;김재학;손기준;김한종
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2007년도 추계학술대회 논문집
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    • pp.419-431
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    • 2007
  • The track and rail surface geometry is of prime importance on the requirement for track dynamic stiffness, particularly for the speed of 350 km/h, for which both the requirement for fatigue and tensile strength limits require a lower stiffness than 100 kN/mm, which is near the value for ballasted track. However, the track quality has been considered as being the same for 350 km/h as that for 300 km/h, and based on ballasted track, and the track geometry may be kept in better condition with a slab track(probably more similar to the medium quality track geometry of ballasted track). In conclusion, under the condition that the track geometry quality provided by the concrete slab system is fairly good, and that the required maintenance is applied to the rail surface, there would be no safety risk if the fastening system point stiffness reaches 160 kN/mm for 300 km/h operation, and 110 N/mm at 350 km/h.

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궤도구조를 고려한 철도교량의 동적거동 분석 (Dynamic Behavior Analysis of Railway Bridge considering Track Stiffness)

  • 강덕만;안해영;성덕룡;김성일;박용걸
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2009년도 춘계학술대회 논문집
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    • pp.55-65
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    • 2009
  • This study is objected by analyzing whether it is applied to the analysis model considering the track stiffness or not when the railway bridge is designed or reviewed for the dynamic stability. It is performed that the analysis model is verified by comparing the field test result with the analysis result. Also, The dynamic response of railway bridge through the existing analysis model is compared with the analysis model considered the track stiffness. In addition, it is performed by analyzing the model considering the stiffness of concrete track. Therefore, this study is suggested that the design of railway bridge apply to the existing analysis model considering the mass of track and the dynamic stability review of railway bridge apply to it considered the stiffness & mass of track. Also, it is suggested that the stiffness of concrete slab on the bridge must consider when it is designed or checked over the dynamic stability.

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접속구간 궤도강성변화 기준에 관한 연구 (The criteria for the change ratio of track stiffness along transition area)

  • 양신추;문제우;유진영
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2007년도 춘계학술대회 논문집
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    • pp.351-357
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    • 2007
  • The transition zone between railway embankment and structures, or different track types is known to be an area in which problems often arise and where extra care needs to be taken with maintenance. Differences in track stiffness have dynamic effects and these increase the force in the track and the extent of deformation. In this study, the criteria for the change ratio of track stiffness along transition area, and proper transition length are presented through train/track interaction analyses. Those are derived on the basis of permissible limitations of train and track performances such as rail stress, uplift force of fastener, reduction of dynamic wheel force, and acceleration of car body. A feasible method of evaluation of track stiffness which is necessary when a designer reviews whether the criteria are satisfied or not is also presented.

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Design Loads on Railway Substructure: Sensitivity Analysis of the Influence of the Fastening Stiffness

  • Giannakos, Konstantinos
    • International Journal of Railway
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    • 제7권2호
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    • pp.46-56
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    • 2014
  • The superstructure of the railway track undertakes the forces that develop during train passage and distributes them towards its seating. The track panel plays a key role in terms of load distribution, while at the same time it maintains the geometrical distance between the rails. The substructure and ballast undergo residual deformations under high stresses that contribute to the deterioration of the so-called geometry of the track. The track stiffness is the primary contributing factor to the amount of the stresses that develop on the substructure and is directly influenced by the fastening resilience. Four methods from the international literature are used in this paper to calculate the loads and stresses on the track substructure and the results are compared and discussed. A parametric investigation of the stresses that develop on the substructure of different types of railway tracks (i.e. balastless vs ballasted) is performed and the results are presented as a function of the total static track stiffness.