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A coupled kinematics model for icebreaker escort operations in ice-covered waters

机译:覆冰水域破冰护航操作的耦合运动学模型

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摘要

In northern sea areas such as the Baltic Sea and the Arctic, especially in winter conditions, the presence of sea ice frequently necessitates icebreaker assistance operations for vessels navigating in these areas. Icebreaker escort operations are important for ensuring the safety of navigation in these harsh environments. While these operations reduce the overall system risk, studies have shown that specific navigational risks are associated also with escort operations, necessitating appropriate training and operational support for ship crew engaged in these. In this paper, the icebreaker escort operations are investigated, and a ship-following model is proposed, drawing on similarities with the car following phenomenon. This ship-following model accounts for the necessity of keeping an appropriate safety distance to avoid collision, as well as for the effects of sea ice on the operation. Its main intended use is for implementation in maritime simulators, providing a realistic environment of operational conditions for training ship crews. As a first approximation, the model accounts for the ice condition by the average ice thickness, while the safety speed constraint is relative to the vessel's ability of navigating in ice. The model parameters are calibrated using empirical data of icebreaker escort operations. Case studies are executed, showing good agreement between the simulation model and real-world operational conditions.
机译:在波罗的海和北极等北部海域,特别是在冬季条件下,海冰的存在经常需要对在这些区域航行的船只进行破冰船辅助操作。破冰船的护航操作对于确保在这些恶劣环境下的航行安全至关重要。尽管这些操作降低了总体系统风险,但研究表明,特定的航行风险也与护航操作相关,因此需要对从事这些工作的船员进行适当的培训和操作支持。本文研究了破冰船的护航操作,并提出了与船舶追随现象相似的船舶追随模型。这种跟船模型说明了保持适当的安全距离以避免碰撞的必要性,以及海冰对作业的影响。它的主要用途是在海上模拟器中实施,为训练船员提供现实的操作条件环境。作为第一近似值,该模型通过平均冰厚来解释冰的状况,而安全速度约束与船只在冰中航行的能力有关。使用破冰船护航操作的经验数据对模型参数进行校准。执行了案例研究,显示了仿真模型与实际操作条件之间的良好一致性。

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