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首页> 外文期刊>Applied Mechanics Reviews: An Assessment of the World Literature in Engineering Sciences >Interaction of Ships and Ocean Structures With Ice Loads and Stochastic Ocean Waves
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Interaction of Ships and Ocean Structures With Ice Loads and Stochastic Ocean Waves

机译:船舶和海洋结构与冰荷载和随机海浪的相互作用

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The influence of floating ice on the dynamic behavior of ships and offshore structures depends on many factors such as ice thickness and its relative speed with respect to the floating structure. The ice resistance to ship motion forms an essential problem in ship design and navigation. Furthermore, local or global ice loads acting on ocean systems are random and nonsmooth when impact interaction takes place. Impact loads on the bow of a ship navigating in solid ice may be modeled by a Poisson law. The measured stress amplitudes on the ship frame at the bow follow an exponential distribution. The nonhomogeneity and difference in ice microstructure, as well as the influence of salt and temperature, result in a great uncertainty in the ice strength. Therefore, the current review article aims at assessing the ice related problems encountered by offshore structures as well as by ships during their navigation. It also discusses the impacts of local and global ice loads on floating structures and reviews their existing probabilistic models. Moreover, this article covers the dynamic interaction of ice with flexible and rigid structures, and ships. In view of ice loads on marine systems, new design regulations have been introduced by international organizations that are involved in the design and building of ships as well as offshore structures. The ship stochastic stability and the first-passage roll stabilization problem associated with random ocean waves will also be described in an attempt to stimulate future research work dealing with ice impact loads. Moreover, due to the lack of research activities addressing the control problem of ships operating in icy waters, the current article will briefly discuss passive and active control schemes developed for controlling the ship roll motion. There are 529 references cited in this review article.
机译:浮冰对船舶和近海结构动力行为的影响取决于许多因素,例如冰的厚度及其相对于浮体的相对速度。船舶运动的抗冰能力是船舶设计和航行中的基本问题。此外,当发生撞击相互作用时,作用在海洋系统上的局部或全球冰负荷是随机且不平滑的。在固体冰中航行的船首上的冲击载荷可以通过泊松定律来建模。船首处船架上测得的应力幅度遵循指数分布。冰微结构的不均匀性和差异以及盐和温度的影响导致冰强度的极大不确定性。因此,本篇综述文章旨在评估海上结构以及船舶在航行过程中遇到的与冰有关的问题。它还讨论了局部和全球冰荷载对浮动结构的影响,并回顾了它们现有的概率模型。此外,本文还介绍了冰与柔性和刚性结构以及船舶之间的动态相互作用。考虑到海洋系统上的冰负荷,参与船舶设计和建造以及近海结构的国际组织已经引入了新的设计法规。还将介绍与随机海浪有关的船舶随机稳定性和首航侧倾稳定问题,以期激发未来应对冰冲击载荷的研究工作。此外,由于缺乏解决冰冷水域中船舶控制问题的研究活动,本文将简要讨论为控制船舶侧倾运动而开发的被动和主动控制方案。在这篇评论文章中引用了529条参考文献。

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