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        검색결과 6

        1.
        2024.05 KCI 등재 구독 인증기관 무료, 개인회원 유료
        This study aimed to quantitatively analyze the risk using data from 329 safety accidents that occurred in aquaculture fisheries management vessels over the recent five years (2018-2022). For quantitative risk analysis, the Bayesian network proposed by the International Maritime Organization (IMO) was used to analyze the risk level according to the fishing process and cause of safety accidents. Among the work processes, the fishing process was analyzed to have the highest risk, being 12.5 times that of the navigation, 2.7 times that of the maintenance, and 8.8 times that of the loading and unloading. Among the causes of accidents, the hull and working environment showed the highest risk, being 1.7 times that of fishing gear and equipment, 4.7 times that of machinery and equipment, and 9.4 times that of external environment. By quantitatively analyzing the safety accident risks for 64 combinations of these four work processes and four accident causes, this study provided fundamental data to reduce safety accidents occurring in aquaculture fisheries management vessels.
        4,000원
        2.
        2022.12 KCI 등재 구독 인증기관 무료, 개인회원 유료
        이 연구의 목적은 해양안전을 위해 해양수산부와 KCG 등에 분산되어 있는 해양안전 집행업무를 효율적으로 운영하는 방안을 살펴보는 것이다. 일반적으로 해양사고는 세월호 사고, 서해훼리호 사고, 태안 허베이 스피리트 오염사고 등에서 알 수 있듯이 인명, 재 산, 해양환경 등에 막대한 피해는 물론 재난으로 확대되는 경향이 있어 사고를 예방하는 근본적인 대책이 필요하다. 그런데 우리나라는 대형사고가 발생하면 단편적인 땜질식 처방만 해 왔으며, 세월호 사고 이후에도 관계자 처벌을 위한 후속조치에만 치중하고, 주요 해양선 진국에서는 당연시 되고 있는 ‘해양안전 집행업무 일원화’ 같은 근본적인 대책은 거론조차 제대로 되지 않고 있다. 이에 크고 작은 후진 성 사고는 끊이지 않고 있으며, 선박의 대형화·고속화·노후화, 선원의 자질저하, 선박통항량의 증가, 해양레저의 발달, 해양안전업무의 이 원화로 인한 비효율성 등으로 대형 해양사고, 후진성 사고의 개연성은 더욱 높아지고 있는 것이다. 따라서 해양안전 관련 선행연구 검토, 주요 해양선진국의 사례 및 VTS의 일원화 사례 등을 토대로 해양안전과 직결되는 내항선 안전관리·PSC·항로표지관리 등의 해양안전 집 행업무의 효율적인 운영방안을 제시한다.
        4,000원
        5.
        2016.12 KCI 등재 구독 인증기관 무료, 개인회원 유료
        The analysis on the international safety management code (ISM Code) and case of foreign national safety management for fishing vessel was conducted to serve as a basic data on the introduction of safety management system (SMS) for a deep-sea fishing vessel in Korea. As a result, Maritime New Zealand (MNZ) has managed operations of SMS in the maritime rules according to the Maritime Transport Act since 1994. MNZ underwent a safe ship management (SSM), which includes elements applied to shipping companies, ship and verification of the ISM Code for ships, except ISM Code application since 1998. In 2014 the introduction of the advanced maritime operator safety system (MOSS) superior to the SSM by MNZ was promoted actively switch and enforcement. Meanwhile, the safe operation manual of Japanese fishing vessel includes large part of the contents of the ISM Code, and voluntary implementation to fit the realities of the fishing vessel. The law application of SMS for a deep-sea fishing vessel after the newly establishment of the Ocean Industry Development Act to SMS would be advantageous to the schematic management, supervision, maintenance and application and, in 2016 from the implementation of maritime safety supervisor for a deep-sea fishing vessel that the management and supervision through the fishing vessel will be the efficient operation. The configuration of the safety management system in a deep-sea fishing vessel should be included as an element of ISM Code. The introduction of such a system is gradually applicable, such as nationality overseas vessel case study of the ISM Code, and vessels that are excluded from the application will be implemented as autonomous as Japan. The results are expected to contribute to sustainable development in the ocean industry safety culture spread throughout the ocean industry through the enhancement of safety fishing competency and safety management responsibility of fisher.
        4,000원