• Title/Summary/Keyword: Railway safety experience center

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A Factor Analysis of Urban Railway Casualty Accidents and Establishment of Preventive Response Systems (도시철도 철도안전사상사고 원인분석 및 예방대응체계구축)

  • Kim, Si Gon;Park, Il Ha;Oh, Jae Kyung;Kim, Yeon Kyu
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.34 no.3
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    • pp.1017-1022
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    • 2014
  • Since the opening of Seoul Subway Line #1 in 1974, the number of passengers has been increasing. The possibility for passenger's accidents in railway stations has also increased. In order to decrease these kind of accidents, railway operation systems have been automated. Nevertheless, the possibility of a casualty accident in railway stations remains. This study analyzed the type of casualty accidents, casualty accidents by age, sex, pedestrian facility, and passenger type based on the internal data of Seoul Metro. The causes of casualty accidents are also found out. Finally, the establishment of railway safety education program and railway safety experience center are suggested in order to prevent the urban railway casualty accident in advance at railway stations.

Evaluation of Running Safety for Depressed Center Flat Car of 3-axle Bogie (3-축 대차 곡형평판차량의 주행안전성 평가)

  • Ham, Young-Sam;Seo, Jung-Won;Kwon, Seok-Jin;Lee, Dong-Hyung
    • Journal of the Korean Society for Precision Engineering
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    • v.28 no.5
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    • pp.559-564
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    • 2011
  • For the safety of railway, it should be evaluated for the running safety by measuring the derailment coefficient. Although railway has run the fixed and maintained rail, some of railway is derailed. This report shows the results that performed the static load test, main line running test on the basis of the derailment theory and experience. It is executed main line test into more than 90km/h for estimating the curving performance and running safety of depressed center flat car of 3-axle bogie. As the test results, could confirm the curving performance and running safety of depressed center fiat car of 3-axle bogie from the results of the wheel unloading, lateral force, derailment coefficient etc. Derailment coefficient was less than 0.6, and lateral force allowance limit and wheel load reduction ratio were enough safe.