• Title/Summary/Keyword: Safety of passenger

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A Numerical Study on Passengers' Evacuation in a subway station in case of Fire Occurrence (화재 발생 지하철 역사에서의 여객 대피 해석에 관한 연구)

  • Kim, Chi-Gyeom;Lee, Sung-Won;Hur, Nahm-Keon;Nam, Seong-Won
    • Proceedings of the SAREK Conference
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    • 2009.06a
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    • pp.142-147
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    • 2009
  • In the present study, a numerical simulation of passenger evacuation in a subway station was performed. Algorithm for passenger flow analysis based on DEM(Discrete Element Method) has been improved to simulate passenger flow in detailed geometry. The effect of grid density was assessed in the present study to show the advantage of using finer grid in the simulation. The method of coupling passenger flow and fire simulation has also been investigated to analyze passenger evacuation flow under fire. In this method the CO distributions in the subway station was used to assess fire hazards of passenger by means of FED(Fractional Effective Dose) model. Using the coupled algorithm a simulation for passenger evacuation flow and fire analysis were performed simultaneously in the simplified subway station. This algorithm could be used in the design of subway station for the purpose of passengers' safety in case of fire.

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A Review on Passenger Crowdedness of Underground Stations (지하철 역사의 혼잡도 현황에 대한 고찰)

  • Kim, Jin-Ho;Han, Suk-Yoon;Lee, Woo-Dong
    • Proceedings of the KSR Conference
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    • 2008.06a
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    • pp.1827-1833
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    • 2008
  • Urban transit construction has increased since 1970, and the utilization of urban transit system also has sharply increased. However, the prediction for station scale was underestimated in design, eventually, passenger crowdedness of station, platforms and transfer pathways has got worse. Especially, safety for passenger is concerned for rush hour because of passenger crowdedness peak. Therefore, several stations, which service level is D, were investigated for passenger crowdedness. In this study, measures which are to mitigate passenger crowdedness for stations are indicated.

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A Study on the Countermeasure of the Security Threats for Coastal Passenger Ships (연안여객선의 보안위협 대응방안에 관한 연구)

  • Ju, Jong-Kwang;Lee, Eun-Kang
    • Journal of the Korean Society of Marine Environment & Safety
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    • v.13 no.3
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    • pp.199-206
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    • 2007
  • In analyzing the security threats and their management system and making questions on security awareness to the concerned parties in the field of coastal passenger ship, we draw its security vulnerability and the features of security threats. The countermeasures and security system are proposed in order to response the diverse security threats and to set up the security culture of coastal passenger ship.

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A Numerical Study on Effect of a Partition Wall Height on Wind Pressure Load when KTX passes through a Station (한국고속전철(KTX)이 역사를 통과할 때 격벽의 높이에 따른 풍하중의 변화에 대한 수치해석 연구)

  • Cho D.;Hur N.;Kim S. R.
    • Journal of computational fluids engineering
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    • v.6 no.1
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    • pp.56-62
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    • 2001
  • A high speed train passing through a station may have undesired effects to passengers on platform due to abrupt pressure transients. Therefore it is very important to reduce the possible degree of danger by installing partition walls in passing lanes in designing the stations having passing train. In the present study, a pressure load to a passenger on platform is studied for the cases of various heights of the partition wall to assess the effectiveness of the wall on the passenger safety. From the results, it is seen that the pressure load on a passenger may be largely reduced by the partition wall. The heights of the partition wall for various passing speed are also studied based on the safety regulation.

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Crashworthy Safety Assessment of High Speed Passenger Ship with Underwater Floating Matter (쾌속여객선의 수중부유물과의 내충돌 안전성 평가)

  • Lee, Sang-Gab;Lee, Jae-Seok;Baek, Yun-Hwa;Jun, Seung-Hwan
    • Proceedings of the Korean Institute of Navigation and Port Research Conference
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    • 2009.06a
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    • pp.30-31
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    • 2009
  • Through the full scale ship collision response analysis of high speed passenger ship with underwater floating matters, the objective of this study is to perform the crashworthy safety assessment of its hull and passengers. For this safety assessment, diverse collision scenarios could be established through the thorough understanding of damage mechanisms due to the collision of its hydrofoil system with underwater floating matter examining the damage informations of its hull and passengers from the collision accidents, and through the estimation of the damages of its hull and passenger. The next step, crashworthy safety assessment of its hull and passengers, was carried out by the collision response analyses of high speed passenger ship with underwater floating matter using Fluid-Structure Interaction(FSI) analysis technique of LS-DYNA code in consideration of surrounding water, and using local zooming analysis technique.

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Regulatory Aspects of Passenger and Crew Safety: Crash Survivability and the Emergency Brace Position

  • Davies, Jan M.
    • The Korean Journal of Air & Space Law and Policy
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    • v.33 no.2
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    • pp.199-224
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    • 2018
  • Aviation's safety record continues to improve yearly, especially with respect to passenger and crew injuries and deaths. However, although the number of accidents has decreased over the decades, there are still many events, such as landings short of the runway and runway excursions, both of which pose threats to passenger and crew safety. Surviving any kind of aviation accident depends on the physiological threat and stress of the impact(s), the extent to which the physical structure surrounding the passengers and crew remains intact, and the ability of the passengers and crew to be able to escape the wreckage. The one action that both passengers and crew can carry out to help decrease the likelihood of crash-related injury or death is to assume an emergency brace position. Doing so has been demonstrated over several decades to improve survivability. While cabin crew are taught (and then might have to teach passengers in an emergency about the emergency brace position), passengers in many parts of the world never learn about the brace position unless they are involved in an emergency in which there is time to prepare for the landing. This lack of provision of information is related to the fact that most airlines do not provide information in the preflight safety briefing and some do not even provide the information in the passenger safety cards. Many countries do not require their airlines to do so, a fact, which in turn, is related to the lack of mention of the brace position in ICAO's Annex 6. Until standards and recommended practices are changed at the highest world level, passengers will continue to be deprived of this vital, life-saving information that they can use, potentially to help save their own lives.

A Study on the Improvement Methods on Cabin Safety Actions in Aircraft Accidents -Focused on Cabin Crew Safety Performances & Passenger Perceptions of Cabin Safety Information - (항공기 비상사태에 대한 객실안전조치에 관한 연구 -객실승무원의 안전업무와 승객의 객실안전정보 인식을 중심으로-)

  • Yoo, Kyung-In;Yoo, Kwang-Eui;Lee, Chun-Ki
    • Journal of the Korean Society for Aviation and Aeronautics
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    • v.21 no.4
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    • pp.126-136
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    • 2013
  • Aircraft accidents these days, following the mega sizing trend of the aircraft, result in enormous losses of human lives apart from those of property, which cannot be replaced by any means. As most recently, in April 20, 2012, a Boeing 737 passenger plane departed Karachi on an augural flight to Islamabad, Pakistan, crashed close to an express highway on final approach, all 121 passengers and 6 crew members were killed. As such a large number of fatalities have been recorded in aircraft accidents while accident investigation results show that more than 95% of aircraft accidents are now survivable. There are three basic stages in surviving the aircraft accident: surviving the crash impact, the evacuation process and the hostile post evacuation environmental elements. These stages require the cabin crew's expeditious and appropriate actions on the basis of systematic and thorough cabin safety training in order to increase occupants' survivability, along with the passengers' preparedness. In this aspect, this paper examines the issues acting as the impediments to the passenger survival in inflight emergency situations, that are the deficiencies with cabin crew safety training, related performances and the shortcomings in passengers' knowledge on inflight safety information, leading to their inappropriate responses to emergency situations. These issues are analyzed and the root causes are identified, suggesting the resolving countermeasures.

Algorithm development of a body pressure detection sensor for the occupant classification system (고안전 에어백의 승객 분류를 위한 체압감지 센서를 위한 알고리즘 개발)

  • Yun, Duk-Sun;Oh, Seong-Rok;Song, Jeong-Hoon;Kim, Byeong-Soo;Boo, Kwang-Suck
    • Journal of Sensor Science and Technology
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    • v.18 no.5
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    • pp.385-392
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    • 2009
  • This paper describes the algorithm development of a new body pressure detection sensor for occupant classification system. U.S. Government has required that advanced airbag system should be installed to every automobiles after 2006 according to FMVSS 208 regulation. Therefore, Occupant Classification System should be provided the passenger with safety in order to protect the infants or children that sit in the front passenger seat. When an occupant sits on the chair of the vehicle, deployment of the airbag depends on passenger's weigh distribution and postures. Authors have been developed a new pattern recognition of passenger and weight distribution at the same time by Force Sensing Resistor for the safety.

IoT Bus System for Passenger Safety and Convenience Service Improvement (승객 안전과 편의 서비스 개선을 위한 IoT 버스 시스템)

  • Heo, Seong Su;Heo, Tae Sung;Park, Yoo Hyun
    • Journal of Korea Multimedia Society
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    • v.21 no.10
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    • pp.1203-1210
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    • 2018
  • As the use of public transportation is increasing, a service considering the convenience of passengers is being launched utilizing the Internet (IoT) data collected through the bus information system. However, the bus information system only provides limited information such as the current location of the bus (GPS) and the expected arrival time at the stop. Additional IoT sensor information is needed to provide various services for the safety and convenience of passengers. In this paper, to improve the safety and convenience of passengers, we have added the boarding doors imaging sensor, temperature and humidity sensors, and sensor for measuring the number of passengers. The proposed IoT bus system can attach various sensors to buses to provide high-quality safety services to passengers.