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Investigation on the Structural Damage of a Double-Hull Ship, Part I - Ship Collision

机译:双壳船结构损伤调查,第一部分 - 船舶碰撞

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Marine structure is designed to be able to resist various load conditions during its operational period. However, in design process, analysis of accidental loads, such collision and grounding, has not been included for both merchant ship and navy vessel. These loads are spontaneous and several remarkable casualties may occur after collision and grounding taking place. The aim of this paper is to investigate structural damage on the target ship during collision and grounding considering on failure process and damage extent. This work is divided into two parts which in the Part I, ship collision is discussed, and the Part II deals with interaction of ship structure with sea bottom in grounding. In the Part I - Ship Collision, condition of the side structure is observed, including the inner hull after impact which is considered as the key to determine safety condition of ship cargo. A passenger ship is modelled in this work and designated as the struck ship which will be struck by the striking ship in collision process. Resistance capability of the double-hull structure against side collision is evaluated. Virtual experiment is conducted by nonlinear finite element method in order to calculate several dynamic collision scenarios which are built based on physical parameter, namely target location. Based on calculation results, damage on the side hull is found to be highly influenced by relative height between two ships prior collision. Crashworthiness criteria are summarized and result tendency indicates that in the mentioned location, the striking ship produces larger tearing on the lower part of the struck ship. Contribution of each collision scenario on the resultant force is presented in later part in order to observe structural behaviour of each determined location in encountering side collision.
机译:船舶结构旨在能够在其运行期间抵抗各种负载条件。然而,在设计过程中,两艘商船和海军船舶的意外载荷分析,这种碰撞和接地尚未包括。这些载荷是自发的,碰撞和接地后可能发生几种显着的伤亡。本文的目的是在考虑故障过程和损害程度上碰撞和接地期间调查目标船上的结构损坏。这项工作被分为两部分,讨论了船舶碰撞,第二部分涉及船舶结构与海底接地的相互作用。在第一部分 - 船碰撞中,观察到侧面结构的条件,包括碰撞后的内壳,被认为是确定船舶货物安全条件的关键。客船在这项工作中建模并被指定为撞击的船舶,这将被撞击过程中的罢工船击中。评估了双壳结构对侧碰撞的电阻能力。虚拟实验是由非线性有限元方法进行的,以计算基于物理参数构建的几种动态冲突方案,即目标位置。基于计算结果,发现侧壳上的损坏受到两次船舶之前碰撞之间的相对高度的高度影响。总结了崩溃标准,并且结果趋势表明,在所提到的位置,罢工船在撞击船的下部产生更大的撕裂。在后面的部分中呈现每个碰撞场景对所得力的贡献,以便观察遇到侧面碰撞的每个确定位置的结构行为。

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