• 제목/요약/키워드: Collision accident

검색결과 463건 처리시간 0.026초

한국형 고속전철 차체의 충돌안전도 평가 연구 (An Evaluation of Crashworthiness for the car-bodies of KHST)

  • 노규석;구정서;송달호
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2001년도 추계학술대회 논문집
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    • pp.223-228
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    • 2001
  • In this paper, crashworthiness of the KHST carbodies is evaluated by numerical simulation under the SNCF accident scenario (collision against a movable rigid mass of 15 ton at 110 kph) and the scenario of train-to-train collision at 30 kph. The numerical results of the several simulations, such as the accident collided against a deformable dump truck of 15 tons at 110 kph, the driver's dummy analysis using the integrated analysis method, and the accident of train-to-train collision for the first three units at 30 kph, show good performances in the viewpoint of energy absorption and survival space.

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자율주행자동차 정면충돌평가방안 마련을 위한 국내 정면충돌사고 심층분석 연구 (An In-depth Analysis of Head-on Collision Accidents for Frontal Crash Tests of Automated Driving Vehicles)

  • 박요한;박원필;김승기
    • 자동차안전학회지
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    • 제15권4호
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    • pp.88-94
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    • 2023
  • The seating postures of passengers in the automated driving vehicle are possible in atypical forms such as rear-facing and lying down. It is necessary to improve devices such as airbags and seat belts to protect occupants from injury in accidents of the automated driving vehicle, and collision safety evaluation tests must be newly developed. The purpose of this study is to define representative types of head-on collision accidents to develop collision standards for autonomous vehicles that take into account changes in driving behavior and occupants' postures. 150 frontal collision cases remained by filtering (accident videos, images, AIS 2+, passenger car, etc…) and random sampling from approximately 320,000 accidents claimed by a major insurance company over the past 5 years. The most frequent accident type is a head-on collision between a vehicle going straight and a vehicle turning left from the opposite side, accounting for 54.7% of all accidents, and most of these accidents occur in permissive left turns. The next most common frontal collision is the center-lane violation by drowsy driving and careless driving, accounting for 21.3% of the total. For the two types above, data such as vehicle speed, contact point/area, and PDOF at the moment of impact are obtained through accident reconstruction using PC-Crash. As a result, two types of autonomous vehicle crash safety test scenarios are proposed: (1) a frontal oblique collision test based on the accident types between a straight vehicle and a left-turning vehicle, and (2) a small overlap collision test based on the head-on accidents of center-lane violation.

해양사고조사를 위한 인적 오류 분석사례 (A Case Study of Marine Accident Investigation and Analysis with Focus on Human Error)

  • 김홍태;나성;하욱현
    • 대한인간공학회지
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    • 제30권1호
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    • pp.137-150
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    • 2011
  • Nationally and internationally reported statistics on marine accidents show that 80% or more of all marine accidents are caused fully or in part by human error. According to the statistics of marine accident causes from Korean Maritime Safety Tribunal(KMST), operating errors are implicated in 78.7% of all marine accidents that occurred from 2002 to 2006. In the case of the collision accidents, about 95% of all collision accidents are caused by operating errors, and those human error related collision accidents are mostly caused by failure of maintaining proper lookout and breach of the regulations for preventing collision. One way of reducing the probability of occurrence of the human error related marine accidents effectively is by investigating and understanding the role of the human elements in accident causation. In this paper, causal factors/root causes classification systems for marine accident investigation were reviewed and some typical human error analysis methods used in shipping industry were described in detail. This paper also proposed a human error analysis method that contains a cognitive process model, a human error analysis technique(Maritime HFACS) and a marine accident causal chains, and then its application to the actual marine accident was provided as a case study in order to demonstrate the framework of the method.

정성적 추론을 이용한 자동차 충돌 사고 재구성의 검증 (Verification of Automobile Collision Accident Reconstruction Using Qualitative Reasoning)

  • 김현경;명한나;한인환
    • 인지과학
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    • 제10권4호
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    • pp.63-70
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    • 1999
  • 자동차 충돌 사고 재구성이란 사고 상황으로부터 가능한 모든 정보를 수집, 분석하여 충돌로 인한 사고 거동 및 원인을 규명하는 작업이다. 본 논문에서는 자동차 사고 재구성에 직접 적용이 가능하도록 개발된 충돌 재구성 시스템을 소개하고자 한다. 본 시스템은 정량적 충돌 재구성 시스템과 정성 적 충돌 추론 시스템을 통합하여, 상호 보완적 역할을 통해 기존의 단일 시스템이 갖는 제한점들을 극복할 수 있었다. 통합된 시스템은 충돌로 인한 거동에 대한 정확한 예측과 아울러 정성 적 충돌 거동 묘사를 제공한다. 강체 동역 학 이론에 기초한 충돌 역 해석 과정 시 정성 적 시뮬레이션을 통해 잘못된 가설을 검증하여, 모순되는 가설을 초기 단계에서 찾아낼 수 있게 하였다. 또한 이 과정에서 인과 관계에 근거한 정성 적 설명을 제공함으로써, 수치 모델에 의해 예측된 결과의 이해를 도울 수 있었다. 본 시스템은 자동차 충돌 사고의 충돌에 적용되어 유효성을 입증할 수 있었다.

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e-Navigation 서비스를 위한 충돌사고 평가지표 개발 (Development a Collision Accident Evaluation Indicator for an e-Navigation Service)

  • 김정호;배석한;장은규
    • 해양환경안전학회지
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    • 제27권1호
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    • pp.1-12
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    • 2021
  • IMO에서는 선박운항기술에 ICT기술을 융합하여 해양사고를 예방하는 e-Navigation의 도입을 추진하고 있다. 국내에서도 해양사고의 취약계층인 어선 및 연안을 항해하는 소형선박을 대상으로 한국형 e-Navigation을 개발하고 있다. 그러나 한국형 e-Navigation의 성공적인 개발을 위해서는 현재까지 진행된 개발성과를 평가하고 개발 방향성을 재정립할 수 있도록 개발성과를 평가할 수 있는 지표의 개발이 필요하다. 따라서 본 연구에서는 주요한 해양사고인 충돌사고를 중심으로 e-Navigation 서비스의 개발목표에 맞춘 평가지표를 개발하고자 하였다. 본 연구에서는 RCA기법과 FTA 기법을 활용해 해상 충돌사고 발생 근본원인을 도출하고 이를 정량화하여 e-Navigation 서비스를 위한 충돌사고 평가지표를 개발하였다. 해당지표는 e-Navigation의 개발지표 및 충돌사고 분석을 위한 지표로 활용되어 해양사고 저감에 도움이 될 것으로 사료된다.

사고유형에 따른 교통사고 심각도 모형 개발 (Developing the Traffic Accident Severity Models by Accident Type)

  • 김경환;박병호
    • 한국안전학회지
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    • 제26권6호
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    • pp.118-123
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    • 2011
  • This study deals with the traffic accidents of the arterial link sections. The purpose is to comparatively analyze the characteristics and models by accident type using the data of 24 arterial links in Cheongju. In pursuing the above, this study gives particular emphasis to modeling such the accidents as the side-right-angle collision, rear-end collision and side-swipe collision. The main results are the followings. First, six accident models are developed, which are all analyzed to be statistically significant. Second, the models are comparatively evaluated using the common and specific variables by accident type.

선박 충돌사고의 원인요소 간 상관관계 및 충돌시간에 따른 원인요소 분석 (Correlation Analysis of Cause factor through Ship Collision Accident, and Cause factor Analysis through Collision Time)

  • 윤동협;신일식
    • 해양환경안전학회지
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    • 제23권1호
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    • pp.26-32
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    • 2017
  • 선박의 대형화, 고속화 및 선종의 다양화는 운송수단 중 해양 운송수단의 비중을 크게 증가시켰다. 선박사고 유형 중 기관손상 다음으로 충돌이 사고발생 빈도가 높았으며, 인적 요인에 의한 사고비율이 높은 것으로 보고되고 있다. 선박 충돌사고는 한 가지 원인요소로 발생하는 경우보다 복합적인 원인요소로 발생하게 되며 여러 개의 원인요소를 재결서를 통하여 원인요소를 조사할 필요가 있다. 본 연구에서는 해양안전심판원에서 제공하는 재결서 중 선박 충돌사고에 대해서 인적 요인을 바탕으로 선박 충돌사고의 원인요소를 도출하였으며, 상관관계분석을 통하여 원인요소들을 규명하였다. 또한, 선박충돌을 인지한 시점에서부터 충돌이 일어난 시점까지 걸린 시간을 바탕으로 충돌을 피할 수 없는 충돌시점에서의 발생되는 주요 원인요소와 20분 내에 발생하는 선박 충돌사고의 원인요소를 분석하여 선박 충돌사고를 예방하고자 하였다. 상관분석은 상용소프트웨어인 Statistical Package for Social Sciences(SPSS Ver21.0)을 사용하였다. 시간 분석은 재결서를 바탕으로 상대방 선박을 인지한 시점에서부터 충돌이 일어난 시점까지 걸린 시간을 분석하였다. 선박 충돌사고의 원인요소는 2가지 이상에 의해 발생한 사고가 많았으며, 상대선박 감시소홀은 항해업무 외 다른 작업과 높은 상관관계가 있었다. 충돌을 피할 시간 여력이 없는 경우(0분)이 36.1 %이며, 경계 또는 상대 선박 감시소홀과 졸음항해 또는 음주가 원인요소이었다.

A Study on the Installation of a Barrier to Prevent Large-Scale Traffic Accidents in Tunnel

  • Baek, Se-Ryong;Yoon, Jun-Kyu;Lim, Jong-Han
    • International journal of advanced smart convergence
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    • 제8권4호
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    • pp.161-168
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    • 2019
  • Traffic accidents in tunnel can lead to large traffic accidents due to narrow and dark road characteristics. Therefore, special care of the driver is required when is driving in a tunnel. However, accidents can happen at any time. In the event of an accident, a narrow road structure may lead to a second accident. Therefore, all facilities installed inside the tunnel should be allowed to minimize damage in the event of an accident. We confirmed the safety of the collision target through the action of the sedan, Sport Utility Vehicle (SUV) and truck when the vehicle crashed into a stairway installed on the tunnel emergency escape route, and when a concrete barrier or guard rail was installed in front of the stairway. The behavior of the vehicle has resulted in a total of three results: rollover or rollover, change of speed and angle of the vehicle after collision. The sedan and SUV were the most secure when colliding with the guardrail, but considering the truck as a whole, concrete barriers were judged to be the most suitable for minimizing damage from the first accident and reducing the risk of the second accident.

차체의 변형상과 변형정도에 의한 자동차 충돌상황의 재구성 (Collision Configurations Reconstruction Using Deformation Shape and Deformation Severity of Car Body)

  • 장인식;채덕병
    • 한국자동차공학회논문집
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    • 제9권1호
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    • pp.171-180
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    • 2001
  • Collision accident reconstruction algorithm are developed based on the deformation shape and severity of a car body. At first, the body stiffness equation representing the force-deformation relationship is derived using finite element analysis for head on collision of two cars. The database of deformation shapes and energies is constructed for five different collision configurations; each configuration contains three velocity conditions. Deformation shapes are obtained using a curve fitting method and result in cubic polynomials. Deformation energies are calculated using a stiffness equation and deformation data. Three algorithms are developed to reconstruct collision configuration compared with constructed database. The developed algorithms show reasonably good performance to find collisions conditions for some test problems.

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자동차 충돌해석에 의한 단순화된 차체 강성 방정식의 유도 (The Derivation of Simplified Vehicle Body Stiffness Equation Using Collision Analysis)

  • 장인식;채덕병
    • 한국자동차공학회논문집
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    • 제8권4호
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    • pp.177-185
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    • 2000
  • The deformation characteristics is one of the major factors to resume the crash configuration in collision accident reconstruction. Crash analysis are carried out using finite element method and body stiffness equations representing force-deformation relationship are derived, Two different crash conditions : 1) frontal barrier impact 2) frontal impact between cars are given for the derivation of the equations. The stiffness coefficient of equation by method 2) is larger than that by method. 1). Crash analysis between two vehicles is accomplished with three crash angles and three velocities for each angle condition. The deformations are measured for six selected points and deformation energies are calculated using the derived equations. Equation by method 2) results in better estimation of deformation energy than that by method 1) for all crush configurations. The estimated energies can be utilized as one of indices to identify the type of the collision accident result.

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