• Title/Summary/Keyword: inside train

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Characteristics of High-Speed Railway Tunnel Entry Compression Wave (고속철도 터널입구에서 형성되는 압축파의 특성에 관한 연구)

  • Kim, Heuy-Dong;Kim, Tae-Ho;Lee, Jong-Su;Kim, Dong-Hyeon
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.23 no.2
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    • pp.234-242
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    • 1999
  • Flow phenomena such as the pressure transients Inside a high-speed railway tunnel and the Impulsive waves at the exit of the tunnel are closely associated with the characteristics of the entry compression wave, which is generated by a train entering the tunnel. Tunnel entrance hood may be an effective means for alleviating the Impulsive waves and pressure transients. The objective of the current work is to explore the effects of the train nose shape and the entrance hood on the characteristics of the entry compression wave. Numerical calculations using the method of characteristics were applied to one-dimensional, unsteady, compressible flow field with respect to high-speed railway/tunnel systems. Two types of the entrance hoods and various train nose shapes were employed to reveal their influences on the entry compression wave for a wide range of train speeds. The results showed that the entry compression wave length increases as the train nose becomes longer and the train speed becomes lower. The entry compression wave length in the tunnel with hood becomes longer than that of no hood. Maximum pressure gradient in the compression wavefront reduces by the entrance hood. The results of the current work provide useful data for the design of tunnel entrance hood.

Study on the Effect of Vibration Reduction Characteristics of Floors on the Inside Running Noise in Railway Vehicles (전동차 바닥구조의 진동절연특성이 실내소음에 미치는 영향)

  • Woo, Kwan-Je
    • Proceedings of the KSR Conference
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    • 2008.06a
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    • pp.908-912
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    • 2008
  • Structure-borne noise is known to dominate internal running noise levels in open field. In this paper vibration isolation characteristics of floors are investigated to see their effect on the internal running noise. By using the analysis and test results of test specimen of small size, internal running noise level of complete train is estimated. Analysis results show that soft rubber as a vibration isolator has the most favorable effect on the inside running noise.

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The study of the effects to the structure borne noise in terms of the Anti-Roll Bar's mounting position (앤티롤바의 취부위치에 따른 철도차량의 실내소음에 대한 연구)

  • Park, Hee-Jun;Woo, Kwan-Je
    • Proceedings of the KSR Conference
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    • 2008.11b
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    • pp.1794-1798
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    • 2008
  • Inside noise level of a running train in open field is the summation of air borne noise and structure-borne noise. Anti-roll bar is the major transmission path of vibration from bogie. And this vibration gives an effect to the structure borne noise. In this paper, the effect of anti-roll bar is investigated. Structure borne noise is analyzed in terms of changing the mounting position of anti-roll bar to reduce inside noise levels.

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The Passenger Evacuation Simulation Using Fluent and EXODUS (Fluent와 EXODUS를 이용한 승객피난 시뮬레이션)

  • Jang, Yong-Jun;Lee, Chang-Hyun;Park, Won-Hee;Jung, Woo-Sung
    • Journal of the Korean Society for Railway
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    • v.11 no.1
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    • pp.95-100
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    • 2008
  • The simulation analysis of fire-driven flow and passenger evacuation in Daegu subway station, Chung-Ang, have been performed. The first location of outbreak of fire is inside passenger car in the third basement in Chung-Aug station, The smoke flow in the second and third basement has been analyzed using FLUENT 6.2. The CO (carbon monoxide) and temperature distribution in the train units and station platform have been obtained and transferred to input data for evacuation simulation. The highest temperature in the train units was 1500k. For the simulation of passenger evacuation, EXODUS has been used for whole basements (level 1${\sim}$level 3) in the station. Total number of people was assumed to be one thousand and 640 were placed inside train and 360 were placed outside train. In evacuation simulation, an average of 135 passengers were killed and an average time to evacuate takes 10min 19sec. The main evacuation routes used by passengers were investigated and the cause of death was identified by evacuation simulation.

The Passenger Evacuation Simulation Using Fluent and EXODUS (Fluent 와 EXODUS를 이용한 승객피난 시뮬레이션)

  • Jang, Yong-Jun;Park, Won-Hee;Lee, Chang-Hyun;Jung, Woo-Sung
    • Proceedings of the KSR Conference
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    • 2007.11a
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    • pp.1346-1353
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    • 2007
  • The simulation analysis of fire-driven flow and passenger evacuation in Daegu subway station, Chung-Ang, have been performed. The first location of outbreak of fire is inside passenger car in the third basement in Chung-Ang station. The smoke flow in the second and third basement has been analyzed using FLUENT 6.2. The CO(carbon monoxide) and temperature distribution in the train units and station platform have been obtained and transferred to input data for evacuation simulation. The highest temperature in the train units was 1500K. For the simulation of passenger evacuation, EXODUS has been used for whole basements (level 1${\sim}$ level 3) in the station. Total number of people was assumed to be one thousand and 640 were placed inside train and 360 were placed outside train. In evacuation simulation, an average of 135 passengers were killed and an average time to evacuate takes 10min 19sec. The main evacuation routes used by passengers were investigated and the cause of death was identified by evacuation simulation.

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Development of the Design Technology for the Pressurization Equipments of High Speed Train (고속전철용 압력완화장치 설계기술 개발)

  • Yeom, Han-Gil;Park, Seong-Je;Go, Deuk-Yong
    • 연구논문집
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    • s.28
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    • pp.21-37
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    • 1998
  • Atmospheric pressure in a tunnel rises in proportion to the square of train’s speed as it enters a tunnel. This pressure difference propagates into the train and cause aural discomfort to the passengers. In order to alleviate the aural discomfort of them. a new ventilation system has been designed and tested. This system controls the charged and discharged by flow rate by detecting the air pressure generated outside and inside of the train. Test to confirm the fundamental performance of the system was carried out. Consequently, this system was found to be able to alleviate the aural discomfort effectively. Application of the system to TGV-K running in the speed range of 350km/h is considered to have good propospect.

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WIND PRESSURE TRANSIENTS ON PLATFORM SCREEN DOOR OF SIDE PLATFORMS IN A SUBWAY STATION CAUSED BY PASSING TRAINS (상대식 승강장에서 열차 운행에 의한 지하철 승강장 스크린 도어 풍압해석)

  • Lee, Myung-Sung;Lee, Sang-Hyuk;Hur, Nahm-Keon
    • Journal of computational fluids engineering
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    • v.12 no.4
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    • pp.1-6
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    • 2007
  • In the present study, the wind pressure transients on platform screen door in side platforms caused by passing trains have been investigated numerically. The transient compressible 3-D full Navier-Stokes solution is used with actual operational condition of subway train by adopting the moving mesh technique considering the train movement. To achieve more accurate analysis, the entrance and exit tunnel connecting the stations are included in a computational domain with modeling the detailed shape of the train. Numerical analyses are conducted on five operational conditions which include the variation of the train speed, case with or without the train stopped in the other track, and case for two trains passing each other inside the station. The results show that pressure load on platform screen door is maximized when the two trains are passing each other. It is also seen from the computational results that the maximum pressure variation for the cases considered in the present study is found to be satisfactory to various foreign standards.

Development of Lavatory Emergency Detection System using Sensors in Train (센서를 활용한 열차 화장실 내 응급상황 감지에 관한 연구)

  • Song, Dahl-Ho;Chang, Duk-Jin;Kang, Song-Hee
    • Journal of the Korean Society for Railway
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    • v.14 no.4
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    • pp.341-347
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    • 2011
  • In this paper, studied was the application of IT and sensor technology to trains in order to provide safety and convenience for passengers. One of applications is Lavatory Emergency Detection System in a train. Since a lavatory in a train is securely separated space, it is hard to notice an emergency inside of it unless a user sends a request for help. A system that can detect an emergency by using sensors was presented. System requirements were analyzed to design and implement a system. Prototype of the system was made. Then, tests in a laboratory were carried out based on a set of test plan to verify the system functions. Performance was turned out to be very successful. The system developed may have a chance to be installed according to the requirements of specifications of the train to be ordered.

Simulation of Fluid Flow Inside the Subway Station with PSD (PSD 설치에 따른 지하철 내부 유동장 계산)

  • Jeong, Hae-Kwon;Ha, Man-Yeong;Kim, Kyung-Chun;Jeon, Chung-Hwan;Choi, Ho-Jin;Joo, Jae-Chun;Mun, Jeong-Man;Hwang, Seong-Ki
    • Proceedings of the KSME Conference
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    • 2004.11a
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    • pp.1430-1435
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    • 2004
  • According to the development of the economy and to the improvement in life quality, it is increased for the desire for the comfortable circumstance in the underground subway station. And recently, an accident, fire, suicide and so on have been risen. An advanced countries have introduced PSD, and they satisfies with the effect of PSD. The optimum design standard to set up PSD have to satisfy the by train wind beyond the maximum static pressure. This paper includes the maximum static pressure what can be applied to the PSD installation design.

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A Study on The Effect of Power conversion system for De-wiring Trolley wire by Electric Railway System (전기철도 전차선 이선이 전력변환장치에 미치는 영향 연구)

  • Shin, Seung-Chul;Kim, Jae-Chul;Han, Seong-Ho;Lee, Su-Gil
    • Proceedings of the KIEE Conference
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    • 2006.11a
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    • pp.381-383
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    • 2006
  • A de-wiring trolley wire usually makes the electrical system complex and may have an adverse effect on the electrical system inside the train. It is important to analyze the effect on trains in de-wiring trolley wire. we accomplished an equivalent model of the electric train system. We used PSCAD/EMTDC, an electromagnetic transient program. The result of this study can be used as a facility design to use a power conversion system filter and needs to prove through actual field data in the main circuit of an electric train for a precise analysis about effect of de-wiring.

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