• 제목/요약/키워드: high-speed rail vehicle

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주행 안전을 고려한 고속철도 자갈궤도 및 콘크리트궤도 레일패드의 강성 상한 결정 (Determination of Upper Limit of Rail Pad Stiffness for Ballasted and Concrete Track of High-Speed Railway Considering Running Safety)

  • 양신추;장승엽;김은
    • 한국철도학회논문집
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    • 제14권6호
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    • pp.526-534
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    • 2011
  • 본 연구에서는 고속철도의 자갈궤도와 콘크리트궤도에서 열차 주행 안전 측면에서 관리해야 할 레일패드 강성의 상한값을 차량 및 궤도의 동특성과 운영환경을 고려하여 결정하는 방법을 제시하였다. 차량-궤도의 상호작용해석의 중요 입력 파라메타인 궤도틀림과 관련하여 프랑스 및 독일에서 제시한 고저틀림 PSD(파워 스펙트럼 밀도)와 경부고속철도 1단계 구간 자갈궤도 및 콘크리트궤도에서 계측한 고저틀림 자료를 통하여 얻은 PSD를 기초로 하여 넓은 범위의 주파수 영역에서 적용할 수 있는 자갈궤도와 콘크리트궤도의 고저틀림 PSD를 제시하였다. 제시된 PSD 기준 모델을 사용하여 시간 영역에서의 고저틀림 입력을 난수 생성(random number generation)을 통하여 구한 후 차량-궤도 상호작용 해석기법을 사용하여 레일패드 강성에 따른 윤중 감소율을 산정하였다. 산정된 윤중 감소율에 대하여 국내 철도차량 안전기준에 관한 규칙의 탈선계수 규정을 적용하여 주행 안전 측면에서 허용할 수 있는 레일패드 강성의 상한값을 제시하였다.

Dynamics of high-speed train in crosswinds based on an air-train-track interaction model

  • Zhai, Wanming;Yang, Jizhong;Li, Zhen;Han, Haiyan
    • Wind and Structures
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    • 제20권2호
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    • pp.143-168
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    • 2015
  • A numerical model for analyzing air-train-track interaction is proposed to investigate the dynamic behavior of a high-speed train running on a track in crosswinds. The model is composed of a train-track interaction model and a train-air interaction model. The train-track interaction model is built on the basis of the vehicle-track coupled dynamics theory. The train-air interaction model is developed based on the train aerodynamics, in which the Arbitrary Lagrangian-Eulerian (ALE) method is employed to deal with the dynamic boundary between the train and the air. Based on the air-train-track model, characteristics of flow structure around a high-speed train are described and the dynamic behavior of the high-speed train running on track in crosswinds is investigated. Results show that the dynamic indices of the head car are larger than those of other cars in crosswinds. From the viewpoint of dynamic safety evaluation, the running safety of the train in crosswinds is basically controlled by the head car. Compared with the generally used assessment indices of running safety such as the derailment coefficient and the wheel-load reduction ratio, the overturning coefficient will overestimate the running safety of a train on a track under crosswind condition. It is suggested to use the wheel-load reduction ratio and the lateral wheel-rail force as the dominant safety assessment indices when high-speed trains run in crosswinds.

경량전철용 추진제어장치의 새로운 과변조 기법 (New Overmodulation strategy for Propulsion system of the Light Rail Transit)

  • 이은규;최재호
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2003년도 춘계학술대회 논문집 전기기기 및 에너지변환시스템부문
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    • pp.194-199
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    • 2003
  • The traction drive system for the urban transit Rubber-tire system is described in this paper. To control the magnitude and frequency of the output voltage of induction motor transiently, the vector control strategy is generally used. But in case of the traction drive system for the railway vehicle, it is difficult to use the vector control caused by the one-pulse mode in the high speed region. Therefore, this paper proposes the control strategy combined the vector control in the low speed region and the slip frequency control in the high speed region. And also, the overmodulation PWM method is discussed to make the change to the one-pulse mode softly. The performance of the Proposed traction drive system is verified by the MATLAB simulation results.

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온-섀시 방식의 고속 컨테이너 하역시스템 개발 (Development of The High-Speed Container Handling System with On-Chassis Type)

  • 최국진
    • 한국산업융합학회 논문집
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    • 제23권2_2호
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    • pp.323-332
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    • 2020
  • Container ships are getting bigger due to the increase in global cargo volume. Therefore, it needs to increase the speed for loading and unloading of containers at the quayside. Traditionally, only one container is handled at once at the quayside due to it's heavy weight. In this paper, a method of handling multiple containers at once using chassis is proposed. Proposed system is consists of a container chassis that can hold three layer stacked containers, transport system that can handle the container chassis including rail-based or vehicle-based roll-on roll-off systems, and dedicated crane system. The conceptual design of crane and transport system that can handle three stacked containers is carried out and verified. The proposed system can be adopted for real quayside container handling system with high speed.

실제 선로조건에서의 레일 경좌 변화에 따른 철도차량의 주행안전성 해석 (Running Safety Analysis of Railway Vehicle Depending on Railway Inclination Change Under Actual Track Conditions)

  • 김문기;엄범규;이희성
    • 대한기계학회논문집A
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    • 제37권11호
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    • pp.1437-1443
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    • 2013
  • 현재 국내선로에서 운전규정에 따른 곡선반경별 속도제한을 실행하고 있으나 기존선 속도 향상과 관련하여 실제로 탈선 발생 없이 운행 가능한 곡선부 최대 통과속도에 대한 연구가 필요하다. 또한, 철도차량의 주행안전성에 영향을 미치는 요인으로서는 차량측면과 궤도측면으로 나눠질 수 있는데, 본 연구에서는 탈선 안전도 향상에 영향을 미치는 매개변수 중 레일 경좌 변화에 따른 주행안전성을 해석하고자 하였다. 탈선의 위험도가 높은 곡선부 통과하는 열차의 고속향상을 도모하기 위하여 실제 선로조건인 남성현${\leftrightarrow}$청도 상 하행 구간의 곡선부 구간별 통과시 레일 경좌와 주행속도 변화에 따른 주행안전성 해석을 수행하였다.

독립차륜형 초고속 열차 개념 설계안의 동특성 해석 (Analysis of Dynamic Characteristics for Concept Design of Independent-Wheel Type Ultra-High-Speed Train)

  • 이진희;김남포;심경석;박태원
    • 한국철도학회논문집
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    • 제17권1호
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    • pp.28-34
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    • 2014
  • 본 논문에서는 레일형 초고속 열차의 개념 설계안을 제안하고 동역학 해석을 통해 주행 동특성을 예측하고자 한다. 초고속 열차에는 단일 윤축세트가 포함된 새로운 형태의 대차가 적용되었으며, 기존의 일체형 차축 대신 독립차륜이 적용되었다. 초고속 열차의 동특성을 파악하기 위하여 먼저, 차량에 대한 동역학 수치해석모델을 개발하고 고유치 해석을 통해 해석 모델의 기본적인 타당성을 검증하였다. 또한, 임계속도 해석을 통하여 기존 고속철도 HEMU-430X 차량에 비해 향상된 성능을 확인하였으며, 7000R 곡선선로에서 550km/h 주행해석을 통하여 횡압, 탈선계수 등을 예측하고 초고속 열차 개념 설계안의 적용 가능성을 파악하였다.

PSC 박스거더 교량의 상호작용에 의한 KTX 동력차의 윤하중 분포 해석 (A Dynamic Analysis of Wheel Forces distribution of KTX locomotive for Interaction of PSC box Girder Bridge)

  • 오순택;이동준;심영우;윤준관;김한수
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2011년도 춘계학술대회 논문집
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    • pp.680-689
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    • 2011
  • A dynamic analysis procedure is developed to provide a comprehensive estimation of the dynamic response spectrum for locomotive's wheels running over a Pre-Stressed Concrete (PSC) box girder bridge on the Korea high speed railway. The wheel force spectrum with the bridge behavior are analyzed as the dynamic procedure for various running speeds (50~450km/h). The high-speed railway locomotive (KTX) is used as 38-degree of freedom system. Three displacements(vertical, lateral, and longitudinal) and three rotational components (pitching, rolling, and yawing). For one car-body and two bogies as well as five movements except pitching rotation components for four wheel axes forces are considered in the 38-degree of freedom model. Three dimensional frame element is used to model of the PSC box girder bridges, simply supported span length of 40m. The irregulation of rail-way is derived using the exponential spectrum density function under assumption of twelve level tracks conditions based on the normal probability procedure. The dynamic responses of bridge passing through the railway locomotive with high-speed analyzed by Newmark-${\beta}$ method and Runge-Kutta method are compared and contrasted considering the developed models of bridge, track and locomotive comprehensively. The dynamic analyses of wheel forces by Runge-Kutta method which are able to analyze the forces with high frequency running on the bridge and ground rail-way are conducted. Additionally, wheel forces spectrum and three rotational components of vehicle body for three typical running speeds is also presented.

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알루미늄 압출재의 붕괴 특성 및 축소모형을 이용한 충격 해석 기법 연구 (Collapse Characteristics of Aluminum Extruded Sections and Crash Analysis Using Half Scale Model)

  • 김범진;허승진;구정서;송달호
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2001년도 추계학술대회 논문집
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    • pp.229-234
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    • 2001
  • The aluminum extruded sections are used to the light construction of the high speed rail vehicle structures. However, the research works on the crashworthy design of aluminum extruded sections are not published sufficiently. In this paper, the collapse characteristics of aluminum extruded sections are investigated by crush test and simulation. The scale model studies are also performed to predict the impact energy absorption characteristics of full scale model through axial crush test and simulation.

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A framework for carrying out train safety evaluation and vibration analysis of a trussed-arch bridge subjected to vessel collision

  • Xia, Chaoyi;Zhang, Nan;Xia, He;Ma, Qin;Wu, Xuan
    • Structural Engineering and Mechanics
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    • 제59권4호
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    • pp.683-701
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    • 2016
  • Safety is the prime concern for a high-speed railway bridge, especially when it is subjected to a collision. In this paper, an analysis framework for the dynamic responses of train-bridge systems under collision load is established. A multi-body dynamics model is employed to represent the moving vehicle, the modal decomposition method is adopted to describe the bridge structure, and the time history of a collision load is used as the external load on the train-bridge system. A (180+216+180) m continuous steel trussed-arch bridge is considered as an illustrative case study. With the vessel collision acting on the pier, the displacements and accelerations at the pier-top and the mid-span of the bridge are calculated when a CRH2 high-speed train running through the bridge, and the influence of bridge vibration on the running safety indices of the train, including derailment factors, offload factors and lateral wheel/rail forces, are analyzed. The results demonstrate that under the vessel collision load, the dynamic responses of the bridge are greatly enlarged, threatening the running safety of high-speed train on the bridge, which is affected by both the collision intensity and the train speed.

도시형 전동차를 위한 능동조향대차시스템의 적용가능성 고찰 (Possibility Investigation of the Active Steering Bogie System for a Urban Railway Vehicle)

  • 박준혁;유원희
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2007년도 춘계학술대회 논문집
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    • pp.715-721
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    • 2007
  • On a conventional rail vehicle, passive primary suspensions stabilize wheelsets in the longitudinal and yaw direction. However, these suspensions reduce the natural curving ability due to the profile of the wheels. Stabilizing and steering of the wheelsets generate the conflict problems in design process. Therefore, most systems are designed to guarantee the stability in spite of decreased curving performance. As a result, severe wear of the wheels and rails occur on tight curves and squeal noise on curving is high. Active steering has been proposed to satisfy stabilizing and steering performance simultaneously. This paper describes the possibility investigation about the application of the active steering bogie for a urban railway vehicle. Vehicles run on an amount of tight curves at mid or low speed in urban railways. Thus, it is important to reduce the wear and squeal noise between wheels and rails. Simulations show that active steering can be reduce the wear and squeal noise significantly compared to conventional systems.

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