• 제목/요약/키워드: watertight bulkhead

검색결과 14건 처리시간 0.027초

강제어선(鋼製漁船)의 수밀격벽(水密隔璧) 방요재(防撓材)에 관(關)한 연구(硏究) (A Study on the Stiffener of the Watertight Bulkhead of the Fishing Boat.)

  • 김창렬
    • 대한조선학회지
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    • 제2권1호
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    • pp.3-8
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    • 1965
  • The objects of this paper are to stimulated discussion of the criteria used for deciding the scantling of watertight bulkhead stiffener of steel fishing boats ranged of length of 20 meters to 80 meters and to suggest a method of calculation based on beam theory. Present knowledge is examined and it appears that failure of a bulkhead stiffener is comparatively rare. Regarding its structure bulkhead does not contribute on longitudinal strength of a ship. The strength of a bulkhead stiffener can be treated locally. Assuming bulkhead stiffeners are free ends and fixed ends theoretical required section modulus are calculated and compared with classification societies' rule. Welding effect of a bulkhead stiffener to bulkhead plate and a bracket to stiffener and deck plate are considered. On various conditions of joints are suggested.

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격벽판(隔壁板)의 두께에 관한 각선급협회규칙(各船級協會規則)의 비교연구(比較硏究) (A Study of the Classificationa Society Rules on The Thicknesses of The Bulkhead Platings.)

  • 황종흘;임상전
    • 대한조선학회지
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    • 제1권1호
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    • pp.3-8
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    • 1964
  • The classification society rules [1], [2], [3], [4] on the thicknesses of the bulkhead platings are represented graphically. Fig. 1 shows that every rule value for the thickness of the ordinary watertight bulkhead plating is than theoretical value calculated by Timoshenko's formula (1) for ${\sigma}_y=35,000$ psi and k=0.4998. When a flooding due to damage occurred, however, the stiffened edges would yield and clamped edges would change to plastic hinges. In such case, the maximum bending stress at the clamped edges are reduced considerably. The rule values, therefore, are supposed to be acceptable in spite of their insufficient scantlings compared with the values calculated by (2). In the ordinary watertight bulkhead platings A.B.S. Rules give the largest scantlings of all. Fig. 2 shows that A.B.S. Rules and K.R.-N.K. Rules give larger values than the calculated by (2) for deep tank bulkhead platings. But Lloyd Rules give the smaller thickness than equation (2). The special requirements for corrosion bulkhead platings are not studied here.

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수밀 및 디프탱크 파형 격벽의 최소중량설계 (Minimum Weight Design for Watertight and Deep Tank Corrugated Bulkhead)

  • 신상훈;남성길
    • 대한조선학회논문집
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    • 제40권6호
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    • pp.12-19
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    • 2003
  • Corrugated bulkheads for a bulk carrier are divided into watertight bulkheads and deep tank bulkheads. Design of the watertight bulkheads is principally determined by the permissible limit of Classification and IACS requirements. But, the verification of strength through finite element analysis is indispensable for design of the deep tank bulkheads. A stage for stress evaluation of corrugated part is required for optimum structural design of the deep tank bulkheads. Since the finite element analysis for real model requires excessive amount of calculation time, in this study one corrugated structure is replaced with beam element and is idealized as 2 dimensional frame structure connected to upper and lower stool Minimum weight design of the deep tank bulkheads is performed through generalized sloped deflection method(GSDM) as direct calculation method. The purpose of this study is the development of design system for the minimization of steel weight of deep tank bulkheads as well as watertight bulkheads. Discrete variables are used as design variables for the practical design. Evolution strategies(ES) is used as an optimization technique.

수밀격벽(水密隔壁)을 관통(貫通)하는 관(管)의 용접시공(熔接施工)으로 인(因)한 열응력해석(熱應力解析)(II) -Penetration piece에서의 열응력(熱應力)- (On The Thermal Stresses due to Welding of a Penetraion Piece for a Watertight Bulkhead Plate(II) -Thermal Stresses in a Penetration Piece-)

  • 김효철
    • 대한조선학회지
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    • 제12권1호
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    • pp.9-22
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    • 1975
  • As a second step of a thermal stress analysis in a watertight bulkhead plate during welding of a spool type penetration piece, is idealized as a thin circular disk with a clamped boundary. The exact solution for the transient temperature distribution and associated quasi-static thermal stresses which arise in a circular disk subjected to an instantaneous point source of heat acting in its interior has been obtained. And the solutions have been extended to the case of moving source of heat with the aid of the Duhamel's superposition integral and the results finally derived have been compared with the other results from the typical cases. The solutions can be applied to the problem such as a welding of a penetration piece on the watertight bulkhead and also applicable to the problems which occur in cutting or welding.

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수밀격벽(水密隔壁)을 관통(貫通)하는 관(管)의 용접시공(熔接施工)으로 인(因)한 열응력해석(熱應力解析)(I) -격벽판(隔壁板)에서의 열응력(熱應力)- (On the Thermal Stresses due to Welding of a Penetration Piece for a Watertight Bulkhead Plate(I) -Thermal Stresses in a Bulkhead Plate-)

  • 김효철
    • 대한조선학회지
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    • 제12권1호
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    • pp.1-8
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    • 1975
  • As a first step of a thermal stress analysis in a watertight bulkhead plate during welding of a spool type penetration piece, the bulkhead plate has been idealized as infinite plate with a circular hole. The exact solution for the transient temperature distribution and the associated quasi-static thermal stress which arise in a infinite plate subjected to an instantaneous point source of heat acting on the periphery of the circular hole. And the solutions have been extended to the case of a moving heat source with the aid of the Duhamel's superposition integral. The solutions can be applied to the problems such as a circular cutting or welding of a plate.

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선체격벽판 규정식의 이론적 배경에 관한 연구 (Study on the Theoretical Background of the Rules for the Bulkhead Plates)

  • 마진섭
    • 대한조선학회논문집
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    • 제29권3호
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    • pp.157-165
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    • 1992
  • 본 연구에서는 굽힘을 받는 평판의 특성을 다루었으며 평판중 특히 수밀 격벽판 및 디프탱크 격벽판에 대하여 각 선급의 강선 규칙에서 규정하고 있는 규정식의 이론적 배경에 대하여 해석하고, 각 선급의 강선규칙에서 규정하고 있는 격벽판에 대한 설계 규정식을 비교검토한 후 모델 선박을 선정하여 격벽판에 대한 3차원 상세구조해석을 실시하여 선급규정식의 적용범위를 밝힘으로서 새로운 규정식의 방향을 제시하였다.

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상하부 스툴을 고려한 파형 격벽 최적 설계에 관한 연구 (A Study on Optimum Structural Design of the Corrugated Bulkhead Considering Stools)

  • 신상훈;남성길
    • 대한조선학회논문집
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    • 제40권4호
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    • pp.53-58
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    • 2003
  • Design of the corrugated watertight bulkhead for a bulk carrier is principally determined by the permissible limit of Classification requirements. As the weight of upper and lower stool has considerable portion of the total weight of the transverse bulkhead, optimum design including the stool geometry and size will play an important role on economic shipbuilding. The purpose of this study is focused on the minimization of steel weight using the design variables, which are the shape and the size of the corrugation as well as the upper and lower stools. Discrete variables are used as design variables for the practical design. In this study, the evolution strategies (ES), which can highly improve the possibility of leaching the global minimum point, are selected as an optimization method. Usefulness of this study is verified by comparison with the proven type ship design. As objective function, total weight of the transverse bulkhead including the upper and lower stools is used.

수퍼요트의 공간배치와 실내공간구획에 관한 연구 (A Study on Space Arrangement and Interior Space Division of Superyachts)

  • 이한석;변량선
    • 한국실내디자인학회논문집
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    • 제16권6호
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    • pp.224-231
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    • 2007
  • Superyachts are passenger vessels whose hull exceeds 24m. They are a kind of luxurious leisure ships. Interior designers can contribute in the field of space design of superyachts. This study is intended to investigate the space elements and their organization of superyachts for putting the base of superyachts interior design. Especially it is focused on the interior space division by structural elements such as the watertight bulkheads and decks. In this study we analyze general arrangements, floor plans of decks, of 31 superyachts and extract space elements and their disposition in three dimension. On the basis of the space arrangement we classify the types of space organization of superyachts. And then we inquire the interior space division of superyachts, which is characterized by the structural elements of the ship. The watertight compartments made by the bulkheads and decks have a great effect on interior space design in super yachts. The results of this study are summed up as follows: At first, the small-size superyacht has 3 decks and the midium or large-size superyachts has 4decks. Secondly, depending on the number of decks the superyachts has several typical patterns of space organization. Thirdly, in general there are 5-6 watertight compartments on a deck depending on the superyachts scale. Finally, there are distinct separation between the passenger's movement and the crew's movement on the ship.

해상선박의 관점에서 본 유람선 실내설계의 특이성에 관한연구 (A Study on the Peculiarity of Cruise Interir Design in Viewpoint of Ship)

  • 변량선
    • 한국실내디자인학회논문집
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    • 제16호
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    • pp.59-67
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    • 1998
  • This study classifies distinctive peculiarities of cruise interior design which is different from that of structures on the land through the theoretical study on the cruise equipped with functions of hotel and ship. The distinguishing marks are : The first one of the main peculiarities is associated with the International agreement and the safety of passangers and the ship required by the specific regulation. The cruise interior design should be also selectively chosen. The third in comply with the peculiarity of the space plan the base of planning the cruise spaces are as follows : The course of bow and stern the pillar the center line of ship main vertical bulkhead watertight subdivision bulkhead and the deck. The last by special peculiarity of construction materials, materials and products applied for the cruise should meet the regulation of SOLAS and IMCO.

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CSR Bulk Carrier의 E/R Stringer Deck 구조 강도 계산 (E/R Stringer Deck Strength Calculation of CSR Bulk Carrier)

  • 최성빈;박동근;김경래
    • 대한조선학회 특별논문집
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    • 대한조선학회 2011년도 특별논문집
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    • pp.47-50
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    • 2011
  • E/R bulkhead is watertight bulkhead between engine room and cargo hold. So, it must have sufficient strength about cargo load of aft hold. Especially, partial stringer deck between tank top and $2^{nd}$ deck of engine room must have sufficient strength because it has function of primary supporting member. Generally, cargo hold structure is verified through the direct calculation as finite element analysis of cargo hold, but engine room structure doesn't perform it. Therefore, we have performed finite element analysis of engine room stringer deck which considered cargo hold load. And then, it will be able to apply similar ship design.

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