Background: As the length of stay for rehabilitation and medical care services for occupational injury patients continues to increase, this study aims to explore alternative solutions that can support the corporation's efforts to develop rehabilitation treatment programs in response. Objectives: By analyzing the most frequent diseases among occupational injury patients over the past five years and comparing the average length of stay (LOS) for each disease by disease type, occupation, gender, and type of accident, it is expected that the necessity for developing rehabilitation treatment programs for occupational injury patients can be identified. Furthermore, when applying the developed treatment programs, a reasonable LOS can be derived. Design: Patient clinical data lab. Methods: From January 2017 to December 2021, data from 292,423 occupational injury patients who submitted their initial medical treatment applications to the Korea Workers' Compensation & Welfare Service (KWCWS) and received approval for their occupational injuries were de-identified. After data preprocessing, the cases were categorized by diagnosis, and statistical analysis was conducted using Excel ver. 21.0. Results: In the intensive rehabilitation treatment process, inpatient and outpatient care show a very strong correlation with r=0.8817, followed by the total number of treatment days (r=0.6431) and the number of treatment sessions (r=0.6441). Conclusion: It is necessary to establish application criteria for injury groups that significantly impact the average medical care days and medical care benefits of industrial accident patients. These criteria should consider factors such as exceeding the average length of medical care for specific injury groups (orthopedic/neurological), gender differences (female patient group), discrepancies in inpatient and outpatient medical care benefits, the proportion of high disability grades (Grade 1-3), common injury (accident) types, and the top 1/2/3 associated injury groups by occupation type. Based on these criteria, simultaneous management of the provision timing of rehabilitation service programs and the average medical care days for the 50 most common injury groups is required.
This study aims to model an accident that occurred at building demolition work sites in Gwangju in 2021 by using functional resonance analysis method(FRAM) and to understand a range of factors contributing to the accident based on the concepts and principles of FRAM and Safety-II. The nature of building demolition works needs to be understood from the viewpoint of socio-technical systems. Not only technical factors but also non-technical factors, including human, organizational, and political factors, and their complicated interrelationships should be considered in the modeling and analysis of accidents happening in the works. Because of the inherent complexity of a demolition works, it is unlikely to specify all of the necessary activities to be conducted in the works and their accountable actors. Additionally, unexpected situations are likely to happen and therefore some activity procedures cannot be followed in a prescribed way, which means that workers sometimes should conduct their activities in an improvisional way. Those characteristics of building demolition works indicate that a traditional accident analysis method based on a linear cause-effect relationship would be inadequate, and that more systemic approaches that can deal with the socio-technical complexities and characteristics of demolition works should be used. With this in mind, we applied FRAM to the accident happening in Gwangju in 2021 and attempted to understand the accident based on the concepts and principles of FRAM and Safety-II (e.g. a functional variablity and its propagation to another function). Lastly, we also suggested ways to enhance the safety of building demolition working sites.
This study focuses on analyzing the impact range of toxicity, overpressure and radiant heat (pool fire and boiling liquid expanding vapor explosion, BLEVE) resulting from a propylene oxide leakage accident and proposes mitigation strategies to minimize damage. A risk assessment was conducted by designing accident scenarios based on variables such as substance quantity and wind speed. The results indicated that toxicity and BLEVE were the primary risk factors, and the risk level increased as the substance quantity increased and wind speed decreased. For future mitigation strategies, it is suggested that a quantitative analysis of vapor dispersion rates and dilution and effects under various environmental conditions be conducted, along with preliminary research on optimizing absorbents and catalytic materials.
This study aims to utilize the AcciMap accident investigation method to compare and analyze the causes and mechanisms of chemical and laboratory accidents, ultimately proposing effective management strategies for accident prevention. Despite the establishment of safety management frameworks through the “Laboratory Safety Environment Creation Act” in South Korea, laboratory accidents continue to occur frequently due to the inherent variety and unpredictability of hazards in research environments, highlighting the need for mandatory root cause analysis. Accordingly, the analysis was conducted using the accident investigation method AcciMap and the software tool VOSviewer. Based on these findings, this study proposes tailored management strategies for chemical and laboratory accidents. For chemical accidents, strengthening safety systems and conducting regular maintenance are critical. For laboratory accidents, implementing safety education programs to enhance researchers’ safety awareness and providing appropriate equipment for experimental environments are essential. Moreover, the study emphasizes the necessity of mandating root cause analysis for laboratory accidents to systematically identify accident causes and develop effective preventive measures. Finally, leveraging the accident reporting system outlined in the Laboratory Safety Act is essential to ensure prompt, transparent responses and structured management in the event of accidents.
결빙(Black Ice)은 도로 포장체 표면의 균열 등에 스며든 습기나 눈, 그리고 차량 주행 중 발생하는 타이어 분진 및 배 기가스 등의 영향으로 인해 도로 표면과 유사한 색상의 얇은 얼음막이 형성되는 현상을 의미한다(Cho et al., 2021). 도로 노면이 결빙 상태일 경우, 평균 미끄럼 저항 계수는 건조 노면의 약 30% 수준으로 크게 낮아진다(Lee et al., 2024). 또 한, 결빙은 도로 표면과 색상이 유사하여 운전자가 노면 상태를 즉각적으로 인지하기 어렵고, 이에 따라 제동이나 회피 를 위한 충분한 시간을 확보하기 어렵다. 최근 5년간 발생한 서리·결빙 노면 교통사고의 치사율(사고 100건당 사망자 수) 은 2.69명으로, 이는 건조 노면 교통사고 치사율의 약 2배, 습윤 노면의 1.3배 수준에 해당한다(KoROAD, 2024). 이러한 위험성을 고려하여 국토교통부는 2020년 전국 고속국도 및 일반, 위임국도를 대상으로 403개 구간을 결빙 취약 구간으로 지정하였으며, 이후 464개소로 확대하여 자동염수분사시설, 그루빙(Grovving), 결빙주의표지판 등 안전시설을 확충하여 결빙사고를 집중적으로 관리하고 있다(MOLIT, 2020; BAI 2021). 하지만, 결빙사고 발생건수는 2020년 524건, 2021년 1,204건, 2022년 1,042건으로 증가추세를 보이고 있어, 결빙 취약 구간의 평가 적절성과 실효성에 대한 검토 필요성이 대 두되고 있다(KoROAD, 2024). 본 연구에서는 최근 10년 고속국도에서 발생한 결빙사고와 결빙사고 영향인자를 Random Forest Algorithm으로 분석하 여 도로 구간별 결빙사고 위험도를 평가하였다. 국가교통정보센터의 노드·링크(Node·Link) 체계를 기반으로 전국 고속국 도의 동절기 기상, 기하구조, 교통량 등 결빙사고 영향인자를 구간별로 수집하였다. 각 구간은 최근 10년 결빙사고 데이 터를 통해 결빙사고 발생구간과 비발생 구간으로 분류하였다. 구간별 수집한 결빙사고 영향인자를 독립변수, 사고발생유 무를 종속변수로하여 알고리즘 학습을 위한 데이터셋(Data Set)을 구성하고, 데이터불균형 문제를 해결하기 위해 오버샘 플링(OverSampling) 기법 중 하나인 SMOTE(Synthetic Minority Oversampling Technique)을 적용하였다. 최종적으로 Random Forest Classification Model을 학습하고, 모델의 하이퍼파라미터 조정(HyperParameter Tunning)을 거처 결빙사 고 발생구간 예측성능이 가장 높은 모델을 결정하였다. 이를 통해, 전국 고속국도의 구간별 결빙사고 발생 위험도를 평 가하고 각 결빙사고 영향인자의 변수중요도를 분석함으로써 결빙 취약구간 평가 방안의 신뢰성 제고를 기대한다.
이 연구의 목적은 연안여객선의 운영실태와 문제점을 살펴보고, 사고 예방을 위한 효과적인 운영방안을 고찰하는 것이다. 일반 적으로 여객선 사고는 세월호·서해훼리호 사고 등에서 알 수 있듯이 인명·재산·해양환경 등에 막대한 피해는 물론 재난으로 확대되는 경 향이 있어 사고를 예방할 수 있는 근본적인 대책이 필요하다. 연안여객선 안전관리에 있어서 최대의 난제는 세월호 사고에서도 드러났듯 이 선박의 노후화와 선원의 열악한 근무환경이다. 이를 해결하기 위해 정부가 이차보전사업, 선박현대화 펀드, 보조항로 준공영제 도입 등의 정책을 추진하고 있으나, 제대로 실현되지 않고 있다. 이는 대다수 선사가 영세하고, 해상의 대중교통이 정책적 우선순위에서 육상 의 대중교통에 비해 소외되어 선체 노후화 심화, 여객 수요 감소, 선사의 재정 악화, 여객과 안전에 대한 재투자 감소, 다시 여건 악화로 이어지는 악순환이 반복되고 있기 때문이다. 이에 연안여객선 안전관리 현황 및 운영실태, 사고 현황 및 사례, 선원의 현황 및 실태, 국내 외 연안여객선 운영 사례, 연안여객선 종사자의 설문조사 및 인터뷰 등을 토대로 연안여객선의 공영제 실시, 여객선 안전관리 해양경찰청 으로 일원화 등의 연안여객선의 효과적인 운영방안을 제시한다.
This study collected video footage of accident-risk scenarios on actual roads using automobiles and motorcycles. A total of 191,500 km was driven with three vehicles and one motorcycle, capturing 6,550 near-miss accident videos. The footage was analyzed and categorized based on the 27 parameters of the iGLAD(Initiative for the Global Harmonization of Accident Data) accident categories. Parameters difficult to classify under iGLAD were localized to fit domestic conditions, and further analysis identified areas needing optimization. The categorized data was organized into a web-based database platform, providing statistical analysis and search functions for scenario development. Future use of this data will support the creation of safety evaluation scenarios for autonomous vehicles, enhancing traffic accident investigation and analysis systems. Expanding the database to include data from secondary roads and parking areas is expected to increase its applicability and value.
This study analyzed actual traffic accident data to select humans’ unavoidable accidents and to examine whether avoidance is possible after AEBS(Advanced Emergency Braking System) is applied to these accidents. In cases where avoidance is not possible with AEBS, those accidents were determined to be examples where V2X(Vehicle-to-Everything) technology is necessary. Subsequently, by applying V2V(Vehicle-to-Vehicle) and V2I(Vehicle-to-Infrastructure) communication technologies, this research analyzed the possibility of accident avoidance. The results confirmed that the application of V2X technology enables accident avoidance. Additionally, by applying various variables, it identified limitation scenarios that cannot be resolved by V2X technology, and discussed strategies for accident avoidance in such situations.
본 연구는 2024년 11월 제주 해상에서 발생한 금성 135호 침몰 사고를 중심으로 고등어 대형선망 어업에서의 침몰 사고 원인을 분석하고, 안전성 강화를 위한 개선 방안을 제시하고자한다. 국내 대형선망 어업은 대규모 어획 작업의 특성상 어획물 이동과 복원력 감 소의 위험이 내재되어 있으며, 이는 선박 침몰 사고의 주요 원인으로 작용할 수 있다. 금성 135호 사고는 대량 어획 작업 중 어획물 이동 과 복원력 상실이 복합적으로 작용했을 가능성이 제기되며, 사고 원인이 아직 명확히 규명되지 않았음에도 초기 정황과 분석을 통해 주 요 위험 요소를 파악할 수 있었다. 본 연구는 등선 위치 조정, 자동 장력 조절 장치 및 실시간 하중 모니터링 시스템 도입, 그리고 복원성 기준 개선과 같은 구체적인 개선 방안을 제안한다. 이러한 방안은 하중 이동과 복원력 저하로 인한 사고 위험을 효과적으로 줄이고, 대량 어획 작업의 안정성과 안전성을 동시에 강화할 수 있다. 결론적으로, 금성 135호 사고는 대형선망 어업의 특수성을 반영한 안전 기준 마 련과 기술적 개선의 필요성을 시사하며, 본 연구에서 제시한 개선 방안은 유사 사고를 예방하고 어업 현장의 안전성을 높이는 데 기여할 것으로 기대된다. 본 연구는 대형선망 어업의 작업 안정성을 향상시키기 위한 실질적인 정책적·기술적 대응책 마련에 중요한 자료를 제 공한다.
에스컬레이터는 공공시설과 다중이용시설에서 필수적인 이동 수단으로 사용되며, 특히 고령 인구 증가와 함께 사고 발생률이 꾸준히 증가하고 있다. 이에 따라 공공시설의 안전 관리를 강화하고 중대한 시민 재해를 예방하기 위한 사고 예측 기술의 필요성이 대두되고 있으며, 본 연구는 2010년부터 2022년까지 13년간의 에스컬레이터(무빙워크 포함) 사고 데이터를 활용하여 다중선형회귀분석과 로지스틱 회귀분석을 기반으로 사고 예측 모델을 개발하였다. 다중선형회귀분석을 통해 사고 발생 건수 예측 모델을 구축하였고, 로지스틱 회귀분석을 통해 전도사고의 발생 확률을 분석하여 주요 변수와 영향을 도출하였다. 연구 결과, 이용자 과실과 같은 요인이 사고 발생과 피해 심각성에 가장 큰 영향을 미치는 변수 로 확인되었다. 본 연구에서 제시된 예측 모델은 사고 예방을 위한 체계적인 안전 관리 및 정책 수립에 유용한 자료로 활용될 수 있으며, 공공 및 민간 영역에서의 ESG 활동에도 기여할 수 있을 것이다.
PURPOSES : Recently, interest in radioactive accidents has increased due to domestic and international nuclear power plant accidents. In particular, local residents' concerns are increasing due to safety issues such as radioactive leaks at the Hanbit Nuclear Power Plant in South Korea. As Gwangju Metropolitan City is not included in the emergency planning area set by the Nuclear Safety and Security Commission, there are significant limitations to establishing disaster prevention measures for nuclear power plant accidents. Considering the Fukushima and Hanbit nuclear power plant accidents, the improvement of Gwangju Metropolitan City's radioactive leak accident response manual is urgently required. This study aimed to establish disaster prevention measures to respond to nuclear power plant accidents in Gwangju Metropolitan City in the event of a Hanbit Nuclear Power Plant accident and to improve resident protection measures by estimating the arrival time of radioactive materials and radiation dosage through a nuclear power plant accident simulation. Additionally, we aimed to supplement the on-site action manual for radioactive leaks at the Hanbit Nuclear Power Plant. METHODS : This study focused on establishing disaster prevention measures centered on Gwangju Metropolitan City in the event of a major accident such as a radioactive leak at the Hanbit Nuclear Power Plant. Simulations were conducted assuming a major accident such as a radioactive leak, measures to improve resident protection were established by calculating the arrival time of radioactive materials and radiation dosage in the Gwangju area in the event of a nuclear power plant accident, and on-site response action manuals were supplemented in response to a radioactive leak. RESULTS : This study considered the concerns of local residents due to the Fukushima nuclear power plant accident and the Hanbit nuclear power plant failure, conducted a simulation to derive the impact on Gwangju Metropolitan City, and examined the effectiveness of an on-site response manual for radioactive leaks to derive improvement measures. CONCLUSIONS : In the event of an accident at the Hanbit Nuclear Power Plant in Gwangju Metropolitan City, insufficient portions of the on-site response action manual should be supplemented, and close cooperation with local governments within the emergency planning area should be ensured to respond to radioactive disasters. Therefore, based on the revised on-site response action manual for radioactive leaks, close cooperation and a clear division of roles among local governments will enable effective resident protection measures to be implemented in the event of a radioactive disaster.
PURPOSES : According to government data, the Black Spot Program has resulted in an average 28.8% reduction in traffic accidents within one year of project implementation in areas where road conditions improved. However, there has been a lack of in-depth analysis of the midto- long-term effects, with a predominant focus on short-term results. This study aimed to analyze the mid-to-long-term effects of the Black Spot Program to assess the sustainability of its reported short-term impact. Additionally, the differences in the mid-to-long-term effects were investigated based on the scale of traffic accidents at intersections and the characteristics of these effects are revealed. METHODS : The mid-to-long-term effects of the Black Spot Program were analyzed at 122 intersections in Seoul, Korea, where the program was implemented between 2013 and 2017, using traffic accident data spanning five years before and after implementation. Additionally, the differences in the program's effects were analyzed at the top-100 intersections with the highest traffic accident concentration in Seoul using the chi-square test to identify these differences. To theoretically validate these differences, the Hurst exponent, commonly used in economics, was applied to analyze the regression to the mean of the intersections and reveal the correlation with improvement. RESULTS : Through the Black Spot Program at 122 intersections, a 33.3% short-term accident reduction was observed. However, the midto- long-term effect analysis showed a 25.8% reduction, indicating a slightly smaller effect than previously reported. Specifically, the top-100 intersections exhibit a 15.4% reduction. A chi-square test with a 95% confidence level indicated significant differences in the program’s effects based on the scale of traffic accidents at intersections. The Hurst index (H ) was measured for the top-100 intersections, yielding H = 0.331. This is stronger than the overall H = 0.382 for all intersections in Seoul, suggesting that the regression to the mean is more pronounced, which may lead to a lower effectiveness of the improvement. CONCLUSIONS : The mid-to-long-term effects of the Black Spot Program were relatively lower than its short-term effects, with larger differences in effectiveness observed based on the scale of traffic accidents at intersections. This indicates the need to redefine the criteria for selecting project targets by focusing on intensive improvements at intersections, where significant effects can be achieved.
고주파 흡수제(Accusorb MRI)를 이용한 자기공명영상 검사 중 화재가 발생했다. 다행히 환자는 화상을 입지는 않았 지만 스트랩과 4채널 코일의 케이블, Accusorb MRI가 녹아서 탄 흔적이 발견되었다. 자기공명영상 검사에 사용되 는 도구의 안전 지침을 준수해야 하지만 이를 지키지 않으면 화상, 열상, 장비 손상의 위험이 있다. 사고를 방지하기 위해서는 철저한 사전 점검을 해야 하고 모든 기기, 물품들이 자기공명영상 검사 시 사용 가능한 제품인지 확인하고 사용법을 정확하게 숙지하여야 한다.
Human stampedes were a major hazard that could occur during mass gatherings, but they have received limited attention in korea. However, after the 10.29 Itaewon disaster, this atmosphere has turned around. The cause of such an accident and how to prevent it should be considered. The main aim of this study is to identify the reason why did the accident happen at that time, the root cause, and the triggering cause with Delphi-AHP survey method. In addition, various preventive measures were investigated by experts to prevent accidents similar to 10.29 Itaewon disaster. Problems and solutions were presented by collecting expert opinions on the causes and preventive measures of the 10.29 Itaewon disaster. However, the opinion of the experienced peoples who experienced the risk at the Itaewon was not included, so further investigation is considered necessary.
PURPOSES : This study analyzes the accident damage scale of hazardous material transportation vehicles not monitored in real time by the Hazardous Material Transportation Safety (HMTS) management center. METHODS : To simulate hazardous-material transportation vehicle accidents, a preliminary analysis of transportation vehicle registration status was conducted. Simulation analyses were conducted for hazardous substance and flammable gas transportation vehicles with a high proportion of small- and medium-sized vehicles. To perform a spill accident damage-scale simulation of hazardous-substance transportation vehicles, the fluid analysis software ANSYS Fluent was used. Additionally, to analyze explosion accidents in combustible gas transportation vehicles, the risk assessment software Phast and Aloha were utilized. RESULT : Simulation analysis of hazardous material transportation vehicles revealed varying damage scales based on vehicle capacity. Simulation analysis of spillage accidents showed that the first arrival time at the side gutter was similar for various vehicle capacities. However, the results of the cumulative pollution analysis based on vehicle capacity exhibited some differences. In addition, the simulation analysis of the explosion overpressure and radiant heat intensity of the combustible gas transportation vehicle showed that the difference in the danger radius owing to the difference in vehicle capacity was insignificant. CONCLUSIONS : The simulation analysis of hazardous-material transportation vehicles indicated that accidents involving small- and medium-sized transportation vehicles could result in substantial damage to humans and ecosystems. For safety management of these small and medium-sized hazardous material transportation vehicles, it is expected that damage can be minimized with the help of rapid accident response through real-time vehicle control operated by the existing HMTS management center.