• Title/Summary/Keyword: Accident Occurrence

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차량 롤전복의 과도거동에 관한 시험적 연구 (An Experimental Study on the Transient Behavior of Vehicle Rollover)

  • 이명수;김상섭
    • 한국자동차공학회논문집
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    • 제19권3호
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    • pp.113-121
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    • 2011
  • Rollover accident is one of the serious traffic accident and rollover accident takes high portion of all accident. The most common type of rollover is a tripped rollover which occupy 95% of all type of single-vehicle rollover. Tripped rollover occurs when a vehicle leaves normal road way and tripped by loose gravel, soil of fixed object such as guard rail, curbs and ditches. And the rest of the type of rollover is un-tripped rollover. An un-tripped rollovers that occurs during high-speed collision avoidance maneuvers. In this paper, presents the explanation of the un-tripped rollover test method and procedure, additionally this paper deals with various occurrence in the un-tripped test such as occurring excessive tire camber in the un-tripped test, tire side-wall contact with road surface and roll oscillation. And this paper analyzes the analysis of the roll rate amplitude in specific frequency through the FFT (Fast Fourier Transform) and the roll angle at the steering reverse timing which is the Fishhook test roll rate feedback time. Finally, this paper analyzes the relations between the estimated steady state roll gain and rollover stability.

한국형 실사고 심층조사 데이터베이스 질향상을 위한 차량속도(ΔV) 측정방법에 관한 연구 (Research on the Investigation of ΔV (Delta-V) for the Quality Improvement of Korean In-Depth Accident Study (KIDAS) Database)

  • 추연일;이강현;공준석;이희영;전준호;박종진;김상철
    • 자동차안전학회지
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    • 제12권2호
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    • pp.40-46
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    • 2020
  • Modern traffic accidents are a complex occurrence. Various indicators are needed to analyze traffic accidents. Countries that have been investigating traffic accidents for a long time accumulate various data to analyze traffic accidents. The Korean In-Depth Accident Study (KIDAS) database collected damaged vehicles and severity of injury caused by Collision Deformation Classification code (CDC code), Abbreviated Injury Scale (AIS), and Injury Severity Score (ISS). As a result of the investigation, data relating to the injuries of the occupants can be easily obtained, but it was difficult to analyze human severity based on the information of the damaged vehicle. This study suggests a method to measure the speed change at the time of an accident, which is one of the most important indicators in the vehicle crash database, to help advance KIDAS research.

액체로켓 시험설비에서의 위험감소 방법 (A Study on the Risk Reduction Method for Liquid Rocket Test Facility)

  • 이정호;김용욱;베르샤드스키;강선일;조상연;오승협
    • 한국추진공학회지
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    • 제9권3호
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    • pp.120-126
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    • 2005
  • 액체산소(LOx)와 케로신(Kerosene)을 연료로 사용하는 액체로켓엔진 시험설비에서 지상연소시험을 수행할 경우에 발생하는 위험도를 감소시키는 방법을 연구하였다. 본 방법은 잠재적인 사고 발생확률을 낮추고 그에 따른 발생 가능한 손실을 낮추기 위해서 사고 발생 가능한 한계선에 대한 연구와 기술적 해결방법을 바탕으로 하고 있다. 시험설비에서 사고 상황을 야기 할 수 있는 위험한 상황에 관한 개략도와 추진제 유출 사고시 발전 양상 및 발전 프로세스에 대한 도표, 기술적인 해결방법, 위험성 감소 평가 방법을 제시함으로써 기존의 확률적인 통계 값을 바탕으로 하는 것과는 또 다른 방법으로써 위험도 감소를 위한 대안으로 사용하고자 한다.

영국철도시스템에 적용된 리스크평가 사례 (Application Cases of Risk Assessment for British Railtrack System)

  • 이동하;정광태
    • 대한인간공학회지
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    • 제22권1호
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    • pp.81-94
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    • 2003
  • The British railway safety research group has developed a risk assessment model for the railway infrastructure and major railway accidents. The major hazardous factors of the railway infrastructure were identified and classified in the model. The frequency rates of critical top events were predicted by the fault tree analysis method using failure data of the railway system components and ratings of railway maintenance experts, The consequences of critical top events were predicted by the event tree analysis method. They classified the Joss of accident due to railway system into personal. commercial and environmental damages. They also classified 110 hazardous event due to railway system into three categories. train accident. movement accident and non-movement accident. The risk assessment model of the British railway system has been designed to take full account of both the high frequency low consequence type events (events occurring routinely for which there is significant quantity of recorded data) and the low frequency high consequence events (events occurring rarely for which there is little recorded data). The results for each hazardous event were presented in terms of the frequency of occurrence (number of events/year) and the risk (number of equivalent fatalities per year).

계측분석법에 의한 선박 접리안 안전성의 평가방안 (A Study on the evaluation of the safety of berthing maneuver by the Analytic Hierarchy Process)

  • 구자윤;이철영;우병구;전상엽
    • 한국항해학회지
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    • 제18권4호
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    • pp.33-47
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    • 1994
  • On developing port system, the performance tests of system in relation to ship maneuver generally consists of the three parts: the channel transit, the manoeuvring in a turning basin and the docking/undocking. The quantifications of risk of an accident has priviously been difficult due to the low occurrence of accidents relative to the number of transits. Additionally, accident statistics could not be related port system because of the large number of factors contributing to the accident. such as human error, equipment failure, visibility, light, traffic. etc. In case of the channel transit, "Relative Risk Factor(RRF)" or "Relative Risk Factor for Meeting Traffic" was proposed as the as the measures derived to quantify the relative risk of accident by M.W.Smith. This factor measure the tracking performance, the turning performance and the passing performance at meeting traffic. On the other hand, the safety of berthing maneuver is not measured with a few evaluating factors as controlled due to complex controllabilites such as steering, engine, side thrusters or tugs. This work, therefore, aims to propose the evaluating measure by the Analytic Hierarchy Process(AHP). Six experimental scenarios were establised under the various environmental conditions as independent variables. In every simulation, the difficulty of maneuver was scored by captain and compared with AHP scores. The results show almost same and from which the weights of eight evaluating factors could be fixed. Additionally, the limit value of relative factor in berthing safety to six scenarios could be estimated to 0.11.e estimated to 0.11.

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임업 안전사고 심층분석을 통한 재해 저감 방안에 관한 연구 (Study on risk reduction method in forestry using in-depth analysis)

  • 남기훈;조구현;김광일
    • 한국산업융합학회 논문집
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    • 제22권2호
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    • pp.95-103
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    • 2019
  • Safety and welfare of forestry is very poor because of poor working environment, decreasing workforce and budget, and aging. These have brought many accidents and casualties. The accident rate in the field of forestry were about 2.83 times higher than average of an entire industry and mortality rate were 1.84 times higher than it. The most reason among the mortality accident was caught in, under or between objects and struck by objects. In analysis of 60 serious accident cases, the number of occurrence s of caught in, under or between objects and struck by objects were the highest. We suggest education, engineering, environment, and enforcement methods which is first aid education and emergency response system, equipment of combined IoT technologies and sensors, and certification and career program on the basis of the results.

텍스트 마이닝 기법을 활용한 우리나라 산업재해의 원인분석 (Text-mining based Cause Analysis of Accidents at Workplaces in Korea)

  • 최기흥
    • 한국안전학회지
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    • 제37권3호
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    • pp.9-15
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    • 2022
  • The analysis of the causes of accidents in workplaces where machines and tools are used is essential to improve the effectiveness and efficiency of safety prevention policies in places of employment in Korea. The causes of workplace accidents are not fully understood mainly due to difficulties in analyzing available descriptive information. This study focuses on the automated accident cause analysis in workplaces based on the accident abstracts found in industrial accident reports written in an unstructured descriptive format. The method proposed in this paper is based on text data mining and uses the keyword search function of Excel software to automate the analysis. The analysis results indicate that the primary reason for the frequency of accidents is related to technical aspects at a stage in which dangerous situations occur in the workplace. Accidents due to managerial causes are typically observed when danger exists in the workplace; however, managerial actions play a more important role in reducing accident severity. A small company tends to use unsafe machines and devices, leading to further accidents due to technical causes, whereas managerial causes are more conspicuous as the company grows. To preclude the occurrence of accidents due to inadequate knowledge, the implementation of safety management and the provision of safety education to elderly workers at the early stage of their employment are particularly important for small companies with less than 100 workers.

시계열분석을 통한 산업재해율 예측 (The Prediction of Industrial Accident Rate in Korea: A Time Series Analysis)

  • 최은숙;전경숙;이원기;김영선
    • 한국직업건강간호학회지
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    • 제25권1호
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    • pp.65-74
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    • 2016
  • Purpose: The purpose of this study is to predict industrial accident rate using time series analysis. Methods: The rates of industrial accident and occupational injury death were analyzed using industrial accident statistics analysis system of the Korea Occupational Safety and Health Agency from 2001 to 2014. Time series analysis was done using the most recent data, such as raw materials of Economically Active Population Survey, Economic Statistics System of the Bank of Korea, and e-National indicators. The best-fit model with time series analysis to predict occupational injury was developed by identifying predictors when the value of Akaike Information Criteria was the lowest point. Variables into the model were selected through a series of expertises' consultations and literature review, which consisted of socioeconomic structure, labor force structure, working conditions, and occupational accidents. Results: Indexes at the meso- and macro-levels predicting well occurrence of occupational accidents and occupational injury death were labor force participation rate for ages 45-49 and budget for small scaled workplace support. The rates of industrial accident and occupational injury death are expected to decline. Conclusion: For reducing industrial accident continuously, we call for safe employment policy of economically active middle aged adults and support for improving safety work environment of small sized workplace.

ECCAIRS 5 Data를 활용한 최근 10년간 항공 사고·준사고 사례분석 (Case Analysis of the Aviation Accident·Incident During the Last 10 Years Using the ECCAIRS 5 Data)

  • 홍승범;최연철
    • 한국항행학회논문지
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    • 제18권4호
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    • pp.334-340
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    • 2014
  • 최근 항공 안전의 발전에도 불구하고, 항공기 사고의 뚜렷한 감소 추세 없이 유지되고 있다. 따라서 국제적인 항공안전관리의 방향은 기존의 항공안전 방식을 탈피하여 자료에 근거하여 분석된 요소들을 통하여 사고예방을 위한 위험요소를 제거하는 것에 관심을 가지고 있다. 본 논문은 전 세계적으로 항공안전 데이터의 보고와 교환을 위한 표준이 되고 있는 ECCAIRS를 소개한다. 또한 최근 10년간의 국내 항공사고 데이터를 활용하여 항공기 분류별(고정익과 회전익)로 항공기 사고와 준사고의 분포, 연도별 및 월별 사고 분포, 비행 단계 분포, 그리고 분류체계 분포 등에 대한 경향을 분석한다. 본 논문의 항공기 사고와 준사고의 추세 분석은 향후 추구해야 할 정량적인 안전관리의 유용한 방향이 될 것이다.

인적오류가 관여된 철도 사고의 체계적 분석을 위한 FRAM의 활용 (A FRAM-based Systemic Investigation of a Rail Accident Involving Human Errors)

  • 최은비;함동한
    • 대한안전경영과학회지
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    • 제22권1호
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    • pp.23-32
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    • 2020
  • There has been a significant decline in the number of rail accidents in Korea since system safety management activities were introduced. Nonetheless, analyzing and preventing human error-related accidents is still an important issue in railway industry. As a railway system is increasingly automated and intelligent, the mechanism and process of an accident occurrence are more and more complicated. It is now essential to consider a variety of factors and their intricate interactions in the analysis of rail accidents. However, it has proved that traditional accident models and methods based on a linear cause-effect relationship are inadequate to analyze and to assess accidents in complex systems such as railway systems. In order to supplement the limitations of traditional safety methods, recently some systemic safety models and methods have been developed. Of those, FRAM(Functional Resonance Analysis Method) has been recognized as one of the most useful methods for analyzing accidents in complex systems. It reflects the concepts of performance adjustment and performance variability in a system, which are fundamental to understanding the processes of an accident in complex systems. This study aims to apply FRAM to the analysis of a rail accident involving human errors, which occurred recently in South Korea. Through the application of FRAM, we found that it can be a useful alternative to traditional methods in the analysis and assessment of accidents in complex systems. In addition, it was also found that FRAM can help analysts understand the interactions between functional elements of a system in a systematic manner.