• Title/Summary/Keyword: accident database

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The Accident Hazard and Material Analysis of Power Cable due to Thermal Stress under PL System (PL법 환경하에서 열 충격에 따른 전력케이블의 재료분석 및 사고위험성)

  • Kim, Young-Seok;Shong, Kil-Mok;Jung, Jin-Su;Jung, Jong-Wook;Kim, Sun-Gu;Kim, Sang-Hyun
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.57 no.1
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    • pp.82-87
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    • 2008
  • It is impossible to database(DB) the patterns of power cable events and cause analysis of faulted cable because the product liability(PL) law have been enforced in Korea, since 2002. In additions, simulation and pattern of power cable events are needed for DB system under accelerated deterioration. In this paper, we tested for resistance to cracking of cable below the 22.9kV class due to thermal stresses. This method of exam is following IEC 60811-3-1(Common test methods for insulating and sheathing materials of electric cables). From the results, The 22.9kV calss A power cable was discolored on the surface and significantly reduced in the longitudinal direction. As the thermal weight properties of A power cable was definitely varied, we are able to guess the problem of manufacture. If the cable was defect by the manufacture, the victims would be able to claim for damage in the PL system.

A Study on the Application of Operational Experience in the Stage of Aircraft System Design and Safety Assessment (항공기 시스템 설계와 안전성평가에 운영경험 반영 사례 연구)

  • Koo, Min-Sung
    • Journal of the Korean Society for Aviation and Aeronautics
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    • v.22 no.2
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    • pp.34-39
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    • 2014
  • Airworthiness authorities specify the technical standards of airworthiness that propose minimum requirement of the commercial transport category and apply the rules in the certification process to ensure the safety of the aircraft. The Federal Aviation Administration and other national airworthiness authorities define the fatal accident risk levels for the safety assessment of the aircraft system and establish standard procedures to apply both qualitative and quantitative analysis techniques. However, an accident or incident may occur by the combination of various factors, although the aircraft is designed in accordance with the strict standards and approval by the Airworthiness Authorities. There are some key factors, such as human error, unpredictable complex system failures, degradation of the components reliability, improper maintenance task and intervals. Risk can be reduced by reflecting aircraft operational experience with similar types of aircraft in the process of aircraft development and safety assessment. Result of the root cause analysis for the Airbus A300-600 incident in which the aircraft engine reverser was deployed in the air have been introduced to reflect the design of system and related components. Also, this paper suggests to create a big-database in order to provide a feed-back to the FAR Part 25 transport category design and safety assessment of the operational experience.

A Case study on the plan for the ESC integrating optimized train operation system for Fire & power failure accident in subway (도시철도 화재$\cdot$단전시 최적 열차운행을 위한 통합운영체계 구축방안에 관한 연구)

  • Kim Young-Wook;Choi Se-Wan;Kim Young-Kyu
    • Proceedings of the KSR Conference
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    • 2004.10a
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    • pp.1185-1192
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    • 2004
  • Recently heavy traffic is getting worse because increasing population of transportation in urban area. In order to solve this problem. subway is realized with high speed, high density, highly efficiency. When fire accident happened in Dae-Gu subway in February 2003, there happened loss of people and lots of damage because of not being able to control even though fire alarm which was set up in the station rang. This thesis has constructed a simulation integrating operation system using a Database construction, operating program analysis in order to build up the most efficient train operation system. The result of simulation integrating operation system with emergency virtual situation like station and train fire, train failure, power line failure, all trains running on the rail were secured safety by train operation control system. With integrating operation of each train control system, train system, power system, machine facility system, the most efficient integrating operation system should have been constructed at the time the subway fire and power failure broke out.

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A Study of Methods on Safety Checklist Improvement and Integrated Operation with Schedule for Construction Accident Prevention (건설공사 안전사고 예방을 위한 안전관리 체크리스트 개선과 공정관리와의 연계운영 방법)

  • Yang Yong-Cheol;Choi Hoon;Kim Jae-Jun
    • Korean Journal of Construction Engineering and Management
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    • v.5 no.2 s.18
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    • pp.123-135
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    • 2004
  • Construction accident have been increasing in despite of safety management activities and education in construction site. This study surveyed safety organization, education, safety management, scheduling, safety checklist with construction firms in order to grasp the actual condition. A improved method is suggested that safety checklist is supplemented with various safety materials and then stored as database. Furthermore, safety checklists are connected and operated with schedule in ender to more efficiently prevent construction accidents.

Analysis of Fatal Accidents in Different Project Types (프로젝트 유형별 중대재해 발생현황 비교분석)

  • Choi, Seung-Mo;Lee, Dong-Eun;Son, Chang-Baek
    • Proceedings of the Korean Institute Of Construction Engineering and Management
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    • 2007.11a
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    • pp.714-717
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    • 2007
  • This paper presents the findings that may be useful for establishing safety policies involved with safety plan, program, and control relative to fatal accidents in construction job site. The fatal accident investigation database maintained by Korean Production Household Mascot Safety Industrial Complex is accessed. The 5 years fatal accidents occurred in 2002 to 2006 were analyzed. The statistic relative to the fatal accidents in different project types is obtained using different classifications such as occupation, years of experience, accident type, and time in a day. This research would contribute to ensure the effectiveness of safety policy so as to enhance worker safety.

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The Development of a Risk Management System in the Field of Industrial Safety in the Republic of Kazakhstan

  • Kudryavtsev, Sergey S.;Yemelin, Pavel V.;Yemelina, Natalya K.
    • Safety and Health at Work
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    • v.9 no.1
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    • pp.30-41
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    • 2018
  • Background: The purpose of the work is to develop a system that allows processing of information for analysis and industrial risk management, to monitor the level of industrial safety and to perform necessary measures aimed at the prevention of accidents, casualties, and development of professional diseases for effective management of industrial safety at hazardous industrial sites. Methods: Risk assessment of accidents and incidents is based on expert evaluations. Based on the lists of criteria parameters and their possible values, provided by the experts, a unified information and analytical database is compiled, which is included in the final interrogation questionnaires. Risk assessment of industrial injuries and occupational diseases is based on statistical methods. Results: The result of the research is the creation of Guidelines for risk management on hazardous industrial sites of the Republic of Kazakhstan. The Guidelines determine the directions and methods of complex assessment of the state of industrial safety and labor protection and they could be applied as methodological basis at the development of preventive measures for emergencies, casualties, and incidents at hazardous industrial sites. Conclusion: Implementation of the information-analytical system of risk level assessment allows to analyze the state of risk of a possible accident at industrial sites, make valid management decisions aimed at the prevention of emergencies, and monitor the effectiveness of accident prevention measures.

Multi-scale simulation of wall film condensation in the presence of non-condensable gases using heat structure-coupled CFD and system analysis codes

  • Lee, Chang Won;Yoo, Jin-Seong;Cho, Hyoung Kyu
    • Nuclear Engineering and Technology
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    • v.53 no.8
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    • pp.2488-2498
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    • 2021
  • The wall film-wise condensation plays an important role in the heat transfer processes of heat exchangers, refrigerators, and air conditioner. In the field of nuclear engineering, steam condensation is often utilized in safety systems to remove the core decay heat under both transient and accident conditions. In particular, passive containment cooling system (PCCS), are designed to ensure containment safety under severe accident conditions. A computational fluid dynamics (CFD) scale analysis has been conducted to calculate the heat transfer rate of the PCCS. However, despite the increase in computing power, there are challenges in the long-term transient simulation of containment using CFD scale codes. In this study, a heat structure coupling between the CFD and system analysis codes was performed to efficiently analyze PCCS. In addition, the component unstructured program for interfacial dynamics (CUPID) was improved to analyze the condensation behavior of ternary gas mixtures. Thereafter, the condensation heat transfer on the primary side was calculated using the improved CUPID and CFD code, whereas that on the secondary side was simulated using MARS. Both the coupled codes were validated against the CONAN facility database. Finally, conjugate heat transfer simulations with wall condensation in the presence of non-condensable gases were appropriately performed.

FIRST ATLAS DOMESTIC STANDARD PROBLEM (DSP-01) FOR THE CODE ASSESSMENT

  • Kim, Yeon-Sik;Choi, Ki-Yong;Kang, Kyoung-Ho;Park, Hyun-Sik;Cho, Seok;Baek, Won-Pil;Kim, Kyung-Doo;Sim, Suk-K.;Lee, Eo-Hwak;Kim, Se-Yun;Kim, Joo-Sung;Choi, Tong-Soo;Kim, Cheol-Woo;Lee, Suk-Ho;Lee, Sang-Il;Lee, Keo-Hyoung
    • Nuclear Engineering and Technology
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    • v.43 no.1
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    • pp.25-44
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    • 2011
  • KAERI has been operating an integral effect test facility, ATLAS (Advanced Thermal-Hydraulic Test Loop for Accident Simulation), for accident simulations of advanced PWRs. Regarding integral effect tests, a database for major design basis accidents has been accumulated and a Domestic Standard Problem (DSP) exercise using the ATLAS has been proposed and successfully performed. The ATLAS DSP aims at the effective utilization of an integral effect database obtained from the ATLAS, the establishment of a cooperative framework in the domestic nuclear industry, better understanding of thermal hydraulic phenomena, and an investigation of the potential limitations of the existing best-estimate safety analysis codes. For the first ATLAS DSP exercise (DSP-01), integral effect test data for a 100% DVI line break accident of the APR1400 was selected by considering its technical importance and by incorporating comments from participants. Twelve domestic organizations joined in this DSP-01 exercise. Finally, ten of these organizations submitted their calculation results. This ATLAS DSP-01 exercise progressed as an open calculation; the integral effect test data was delivered to the participants prior to the code calculations. The MARS-KS was favored by most participants but the RELAP5/MOD3.3 code was also used by a few participants. This paper presents all the information of the DSP-01 exercise as well as the comparison results between the calculations and the test data. Lessons learned from the first DSP-01 are presented and recommendations for code users as well as for developers are suggested.

Analysis of Cultivator-related Trauma Cases in a Regional Trauma Center in the Rural Area of Gyeongbuk Province

  • Hwang, Ui Kang;Youn, Seok Hwa;Park, Chan Yong
    • Journal of Trauma and Injury
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    • v.30 no.3
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    • pp.80-86
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    • 2017
  • Purpose: To analyze the data of patients who suffered trauma in a cultivator accident and visited the trauma center in rural Gyeongbuk Province. Methods: We retrospectively reviewed the medical records and Korean Trauma Data Bank data of 120 patients who suffered cultivator-related traumas and visited the rural regional trauma center in Gyeongbuk Province from January to December 2015. Results: The age of the patients ranged from 35 to 96 years (mean, 70 years). Ninety-one (75.8%) patients were men, and twenty-nine (24.2%) were women. Most of the patients were in their 70s (46 men [50.5%] and 13 women [44.8%]). In total, 113 patients (94.1%) arrived at the regional trauma center by ground transport and 7 (5.9%) arrived by air transport. Ninety-eight patients (81.7%) were transported to the regional trauma center directly from the scene of the accident, and twenty-two (18.3%) were transferred from another medical institute. The mean time from the accident to arrival at the emergency department was 139 minutes, and only 46 patients (38.3%) arrived within 1 hour. Twelve (10.0%) patients died, including two deaths on arrival and two post- cardiopulmonary resuscitation deaths in the emergency department. All deaths were of male cultivator operators. The causes of death were shock (hypovolemic, traumatic, or septic), subdural hematoma (open), hemothorax, rhabdomyolysis, and pneumonia. Conclusions: As the government - led regional trauma center project is on process, it would be clinically important to summarize the initial outcome of cultivator injuries, which are characteristically found more in regional trauma centers in the rural area, and have high mortality. Based on this study, in the future, it will be necessary to follow up and analyze more number of patients and to construct accurate database about trauma cases related to cultivator in Gyeongbuk region.

Development of a Accident Frequency Prediction Model at Rural Multi-Lane Highways (지방부 다차로 도로구간에서의 사고 예측모형 개발 (대도시권 외곽 및 구릉지 특성의 도로구간 중심으로))

  • Lee, Dong-Min;Kim, Do-Hun;Seong, Nak-Mun
    • Journal of Korean Society of Transportation
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    • v.27 no.4
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    • pp.207-215
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    • 2009
  • Generally, traffic accidents can be influenced by variables driving conditions including geometric, roadside design, and traffic conditions. Under the circumstance, homogeneous roadway segments were firstly identified using typical geometric variables obtained from field data collections in this study. These field data collections were conducted at highways located in several areas having various regional conditions for examples, outside metropolitan city; level and rolling rural areas. Due to many zero cells in crash database, a Zero Inflated Poisson model was used to develop crash prediction model to overestimated results in this study. It was found that EXPO, radius, grade, guardrail, mountainous terrain, crosswalk and bus-stop have statistically significant influence on vehicle to vehicle crashes at rural multi-lane roadway segments.