한국해양대학교

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接近手段 設置 規定을 考慮한 中型 油槽船의 中央 橫斷面圖 最適 構造 設計에 關한 硏究

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dc.contributor.author 신성광 -
dc.date.accessioned 2017-02-22T06:58:39Z -
dc.date.available 2017-02-22T06:58:39Z -
dc.date.issued 2006 -
dc.date.submitted 56822-12-26 -
dc.identifier.uri http://kmou.dcollection.net/jsp/common/DcLoOrgPer.jsp?sItemId=000002175788 ko_KR
dc.identifier.uri http://repository.kmou.ac.kr/handle/2014.oak/10094 -
dc.description.abstract Compulsory enforcement of double hull structure and a phase-out of single hull structure were introduced by IMO(International Maritime Organization) with the effectuation of OPA90(Oil Pollution Act 90) due to ocean pollution by marine accident of Exxon Valdez on Alaskan in 1989. After that, marine accident of Erika occurred in 1999. Under the circumstances, the plan to abolish single hull structure was advanced a date. Besides, SOLAS Reg.II-1/3-6 that includes reinforcement of installation of means of access for inspection as a part of ESP(Enhanced Survey Program) for bulk carrier and oil tanker was established, it has been applied to those vessels built since 01 of January in 2005. And IACS (International Association of Classification Societies) organized Joint Working Group with the classification society, shipping companies and shipyard of each country and developed the detail application standards for Technical Provision related to SOLAS Reg.II-1/3-6 In this study, Contents of the new compulsory SOLAS Reg.II-1/3-6 and Technical Provision have been investigated and applied to the double hull panamax oil tanker. For effective means of access, new conceptual midship section is developed from the improvements of structural shape for the primary structure as well as the modified structural arrangements. Additionally, structural stability for the developed midship section is carried out by SafeHull of ABS which is the program to calculate structure strength. The scantling and structure analysis for the midship section introduced in this paper is carried out by STX shipbuilding and ABS(American Bureau of Shipping) together. It is the first attempt that the above-mentioned midship section is applied to the panamax oil tanker with plane type bulkhead. Therefore the introduced midship section is expected that it is helpful for the design considered to install permanent means of access. -
dc.description.tableofcontents List of Table = ⅲ List of figures = iv Abstract = ⅵ 제1장 서론 = 1 제2장 검사용 접근설비(PMA, Permanent Means of Access) = 3 2.1 배 경 = 3 2.2 적용대상 및 적용시기 = 3 2.2.1 적용대상 = 3 2.2.2 적용시기 = 3 2.3 검사를 위한 접근수단에 대한 기술규정 = 4 2.4 유조선 밸러스트 탱크 및 화물 탱크의 접근수단 = 12 2.4.1 밸러스트 탱크, 화물유 탱크 갑판하 및 수직구조에 대한 접근 = 12 2.4.2 이중선측구조를 형성하는 폭 5m 미만인 선측 = 14 제3장 선체 중앙 단면의 구조설계 = 18 3.1 일반 배치 = 18 3.2 중앙 단면 형상 결정 = 19 3.2.1 이중선체규정 적용 = 19 3.2.2 주요 선체 구조부재 배치 = 20 3.2.3 격벽 구조형상 및 배치 = 23 3.3 선체 구조강도 결정 = 24 3.3.1 Scantling = 24 3.3.2 구조해석 = 25 제4장 접근수단 적용을 위한 최적설계 = 26 4.1 연구 배경 = 26 4.2 최적 구조형상 및 구조배치 특징 = 27 4.2.1 Double bottom 높이 및 Double side 폭 결정 = 27 4.2.2 Upper deck transverse web 구조배치 결정 = 27 4.2.3 Top side wing tank 구조형상 결정 = 29 4.2.4 중앙 종격벽 Vertical web의 구조형상 결정 = 30 4.2.5 Stringer 구조배치 결정 = 31 4.3 중앙 횡단면 최적 설계에 따른 기대효과 = 32 제5장 선급규칙에 의한 구조강도 평가 = 34 5.1 선급규칙에 따른 종강도(hull girder strength) = 34 5.1.1 Wave bending moment = 35 5.1.2 Hull girder section modulus = 35 5.1.3 Minimum section modulus = 35 5.1.4 Minimum moment of inertia = 35 5.1.5 SafeHull phase-A 결과 = 36 5.2 선급규칙에 따른 종강도부재의 치수 계산 = 37 5.2.1 종보강판의 치수 결정 = 37 5.2.2 종보강재의 치수 결정 = 39 5.3 선급규칙에 따른 구조해석 = 42 5.3.1 구조의 모델링 = 43 5.3.2 하중조건 = 43 5.3.3 경계조건 = 44 5.3.4 해석결과 = 45 제6장 결 론 = 54 참고문헌 = 56 부 록 = 57 -
dc.language kor -
dc.publisher 한국해양대학교 -
dc.title 接近手段 設置 規定을 考慮한 中型 油槽船의 中央 橫斷面圖 最適 構造 設計에 關한 硏究 -
dc.title.alternative A Study on the Optimum Structure Design of Midship Section for Panamax Oil Tanker considering the Regulation of Means of Access -
dc.type Thesis -
dc.date.awarded 2006-02 -
dc.contributor.alternativeName Shin -
dc.contributor.alternativeName Sung-Kwang -
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조선‧해양‧건축공학과 > Thesis
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