선수 충돌시 구조 붕괴 거동에 대한 수치해석(제1보)

In this paper a complicated structural behavior in collision and its effect of energy transmission to the collision bulkhead was examined through a methodology of the numerical simulation to obtain a ideal bow construction and a location of collision bulkhead against heat on collision. At present th...

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Published inHan-guk haeyang gonghak hoeji (Online) Vol. 14; no. 2; pp. 28 - 35
Main Authors 신영식(YOUNG-SIK SHIN), 박명규(MYUNG-KYU PARK)
Format Journal Article
LanguageKorean
Published 한국해양공학회 2000
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ISSN1225-0767
2287-6715

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Abstract In this paper a complicated structural behavior in collision and its effect of energy transmission to the collision bulkhead was examined through a methodology of the numerical simulation to obtain a ideal bow construction and a location of collision bulkhead against heat on collision. At present the bow structure is normally designed in consideration of its specific structural arrangement and internal and external loads in these areas such as hydrostatic and dynamic pressure wave impact and bottom slamming in accordance with the Classification rules and the specific location of collision bulkhead by SOLAS requirement. By these studies the behavior of the bow collapse due to collision was synthetically evaluated for the different size of tankers and its operational speed limits and by the results of these simulation it provides the optimal design concept for the bow construction to prevent the subsequent plastic deformation onto or near to the collision bulkhead boundary and to determine the rational location of collision bulkhead.
AbstractList In this paper a complicated structural behavior in collision and its effect of energy transmission to the collision bulkhead was examined through a methodology of the numerical simulation to obtain a ideal bow construction and a location of collision bulkhead against heat on collision. At present the bow structure is normally designed in consideration of its specific structural arrangement and internal and external loads in these areas such as hydrostatic and dynamic pressure wave impact and bottom slamming in accordance with the Classification rules and the specific location of collision bulkhead by SOLAS requirement. By these studies the behavior of the bow collapse due to collision was synthetically evaluated for the different size of tankers and its operational speed limits and by the results of these simulation it provides the optimal design concept for the bow construction to prevent the subsequent plastic deformation onto or near to the collision bulkhead boundary and to determine the rational location of collision bulkhead.
Author 박명규(MYUNG-KYU PARK)
신영식(YOUNG-SIK SHIN)
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Issue 2
Keywords Structural behavior 구조 거동
Bulbous bow 구상선수
Collision bulkhead 충돌격벽
Bow collision 선수 충돌
Dynamic time integration explicit solution 동적 시간 적분 양의 해
Collision critical speed 충돌 임계 속도
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Title 선수 충돌시 구조 붕괴 거동에 대한 수치해석(제1보)
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