• Title/Summary/Keyword: Passing Train

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Study on the Dynamic Characteristics of Rolling Stocks Passing on the High Speed Turnout System (고속용 분기기를 통과하는 철도차량의 동특성 예측연구)

  • 정우진;신정렬;양신추;김남포
    • Proceedings of the KSR Conference
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    • 2000.05a
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    • pp.226-233
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    • 2000
  • This study has been performed to develop the practical method to estimate the change of dynamic characteristics of rolling stocks passing on the high speed turnout system. Each part of turnout system are modeled in consideration of alignment, enter angle and amount of deflection and they are used to achieve dynamic analysis with a train model. Analysis results are compared with test results to confirm its validation

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Test results of small scale changeover system using in neutral section for AC feeding system (축소형 교류급전시스템 절연구간 자동절체장치 성능시험)

  • Jang, Dong-Uk;Han, Moon-Seob
    • Proceedings of the KSR Conference
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    • 2011.05a
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    • pp.948-953
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    • 2011
  • In AC railway feeding system, three phase received from the network is changed to two phase power sources with different phases. The main circuit breaker installed train is automatically open by track signal when the train passes the neutral section. In order to continuously supply power source to train, the changeover system was used in Japan. Therefore, the train is able to operate under powering condition when it was passing through the neutral section. We investigated the control method to reduce the inrush current flowing main transformer in train. To examine the inrush current and operate the static semiconductor switch such as thyristor, we manufactured the small scale the changeover system and carried out performance tests.

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Measurement and analysis of Pressure fluctuation by high speed train passing through tunnels in conventional line (기존선 터널 주행시의 고속열차 차체가 받는 압력변동 계측 및 분석)

  • Lee Uk-Jae;Park Choon-Soo;Seo Sung-Il
    • Proceedings of the KSR Conference
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    • 2004.06a
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    • pp.883-888
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    • 2004
  • Pressure waves are generated when high speed train runs through the tunnels. These pressure waves not only affect passenger's health, but also can cause fatigue failures on the vehicle structure. The current high speed train should run on the conventional lines. In this study, pressure fluctuations by the high speed trains such as G7 Korea High Speed Train and Korea Train eXpress are measured in the cabin and the carbody surface when they pass through the tunnels. The measured results are analyzed and the related parameters are investigated.

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Parametric Study of the Effects of Train Wind on Running Stability (열차풍 효과가 고속열차 주행안정성에 미치는 파라메타 연구)

  • Nam, Seong-Won
    • Proceedings of the KSME Conference
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    • 2008.11b
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    • pp.2519-2523
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    • 2008
  • When constructing a high-speed railroad, the reduction of the distance between track centers and the width of track bed will save the construction cost. However the shortening the distance between track centers may cause the stability problems due to higher wind pressure. Therefore the extensive technical review and aerodynamical study should be performed to determine the adequate distance between track centers. In this study, the impact that the increase in wind pressure due to the change of aerodynamic phenomena with the change of the distance between track centers may have on two trains passing by each other was predicted, and the stability of train operation was analyzed in order to review the distance between track centers suitable to Honam HSR trains. We conducted the parametric study of the effects of train wind on the running stability.

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Assessment of the Pressure Transient Inside the Passenger Cabin of High-speed Train Using Computational Fluid Dynamics (전산유체역학을 이용한 고속철도차량 객실 내 압력변동 평가)

  • Kwon, Hyeok-Bin;Nam, Sung-Won;Kwak, Jong-Hyun
    • Journal of the Korean Society for Railway
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    • v.12 no.1
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    • pp.65-71
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    • 2009
  • The pressure transient inside the passenger cabin of high-speed train has been assessed using computational fluid dynamics (CFD) based on the axi-symmetric Navier-Stokes equation. The pressure change inside a train have been calculated using first order difference approximation based on a linear equation between the pressure change ratio inside a train and the pressure difference of inside and outside of the train. The numerical results show that the pressure change inside the new Korean high-seed train passing through a tunnel of Seoul-Busan high-speed line at the speed of 330km/h satisfied well the Korean regulation for pressure change inside a passenger cabin if the train is satisfying the train specification for airtightness required by the regulation.

An Experimental Study on the Aerodynamic Effects Generated by a Train Passing near by Platform(Conventional Railway Station Field Test) (철도차량의 승강장 통과 시 발생하는 공기역학적 영향에 대한 실험적 연구(기존철도역 현장 시험))

  • 김동현;권혁빈;김문헌;송문석;김도훈
    • Journal of the Korean Society for Railway
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    • v.7 no.2
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    • pp.137-141
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    • 2004
  • A series of filed tests have been performed to investigate the aerodynamic effects on platform of the railway station during the passage of train that can be unpleasant and even dangerous to the pedestrians. To assess the aerodynamic effects on the platform, two aerodynamic properties has been measured; one is the wind gust induced by the train and the other is the pressure pulses generated when the nose and the tail of train passes. To measure these aerodynamic properties during the train passage, an array of hot-wire type anemometers and several sets of pressure transducers have been used, respectively. This paper deals with the filed test on conventional railway at about 100km/h operational speed, in which total 34 measurements has been made at the Bugok station in Seoul-Busan line for Saemaul-ho and Mugungwha-ho train. The results showed dramatic differences in the aerodynamic features between the two trains that are supposed to originate from the contrasting nose shapes of the trains.

A Study on the Window Glass Pressure for High-speed Train (고속철도차량의 유리창 압력에 관한 연구)

  • Kwon, Hyeok-Bin;Chang, Dae-Sung
    • Journal of the Korean Society for Railway
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    • v.13 no.4
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    • pp.371-375
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    • 2010
  • In order to decide the strength requirement of the window glass for the high-speed train, the pressure change during the passage of the EMU type high-speed train has been numerically simulated. Based on the calculation results, the pressure difference between the inner and outer pressure of the cabin has been calculated to yield the amount of load acting on the window glass of the cabin. To simulate the pressure field generated by the high-speed train passing through the tunnel, computational fluid dynamics based on the axi-symmetric Navier-Stokes equation has been employed. The pressure change inside a train has been calculated using first order difference approximation based on a linear equation between the pressure change ratio inside a train and the pressure difference of inside and outside of the train.

Analysis on the Noise Levels of the Passing Train in the High Speed Train Terminals (고속철도역사 통과구간의 소음도 분석)

  • 한찬훈
    • Proceedings of the Acoustical Society of Korea Conference
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    • 1998.06c
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    • pp.427-430
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    • 1998
  • 본 논문은 고속철도 역사의 통과구간 설계에 있어서 소음방지에 효과적인 설계안을 검토하기 위하여 7가지의 다양한 대안의 모델을 시뮬레이션하여 그 결과를 비교 분석하였다. 고속열차의 최대 운영속도 300 km/h 기준시 승강장의 허용소음도는 약 91 dB(A) 일 때 이를 만족하는 설계안은 통과구간의 양쪽에 설치하는 방음벽으로는 부족하며 통과구간을 곡면유리로 폐쇄한 터널식의 설계가 허용소음도를 만족하는 것으로 나타났다.

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Noise Test of High-speed Train at 300km/h (경부고속철도 300km/h 주행시 소음 평가)

  • 나희승;김준엽
    • Proceedings of the KSR Conference
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    • 2002.05a
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    • pp.452-457
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    • 2002
  • High speed railroad noise is one of the main causes of environmental impact. An estimate of the relevant noise levels is usually required in order to evaluate the noise barrier and the anti-noise trailer. This paper introduce the test procedure and the estimate for HST noise. The aim of this is to measure, by means of a test, the level of acoustic pressure present during the passing of a KTX(Korea Train Express), in order to satisfy the contractual requirements and the noise criteria. A number of measurements are carried out in order to estimate noise impact by HST along test track.

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