船冰山碰撞中冰的特性研究进展

Tak-Kee Lee, Hyun-Jin Park
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引用次数: 2

摘要

1912年,泰坦尼克号在加拿大东海岸与冰山相撞并沉没,造成1500多人死亡,此后国际冰上巡逻队(IIP)成立。最近,IIP分析了卫星图像,并通过跟踪冰山的发生和移动,向船只提供安全操作信息。近年来大量的北极研究主要涉及与航道和资源开发有关的海水冻结形成的海冰。与泰坦尼克号相撞的冰山是陆地上的冰,从冰川中脱落并落入大海。这两种冰的性质不同。此外,在北冰洋等冰雪覆盖水域作业的船舶具有破冰功能或最低限度的冰强化功能。在包括加拿大东海岸在内的跨大西洋航线上运营的船舶不一定需要冰强化功能。每年都有成百上千的冰山在泰坦尼克号沉没的地方被发现。本研究调查了船舶冰山碰撞事故的现状,为研究人员提供了有用的信息,并对冰山的物理力学特性进行了研究和总结。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Review of Ice Characteristics in Ship-Iceberg Collisions
The International Ice Patrol (IIP) was established after the Titanic collided with an iceberg off the eastern coast of Canada in 1912 and sank, killing more than 1,500 people. Recently, the IIP has analyzed satellite images and provided safe operation information to vessels by tracking the occurrence and movement of icebergs. A large number of recent arctic studies mainly deal with sea ice formed by freezing seawater related to sea routes and resource development. The iceberg that collided with the Titanic was land-based ice that dislodged from a glacier and fell into the sea. The properties of these two types of ice are different. In addition, vessels operating in ice-covered waters such as the Arctic sea have an ice-breaking function or minimum ice-strengthened functions. Ships operating on transatlantic routes including the eastern coast of Canada do not necessarily require ice-strengthened functions. Hundreds to thousands of icebergs are discovered each year near the area where the Titanic sank. In this study, the status of ship-iceberg collision accidents was investigated to provide useful information to researchers, and the physical and mechanical characteristics of icebergs were investigated and summarized.
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