货物集装箱漂移建模

Pierre Daniel , Gwénaële Jan , Fanch Cabioc’h , Yves Landau , Erwann Loiseau
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引用次数: 60

摘要

在海上丢失的集装箱对航运是一种危险。因此,海事当局希望能够向航海家宣布它们的位置,或者收回它们。在集装箱丢失的情况下,轨迹的计算可以确定危险区域的航行和搜索集装箱。本文建立并配置了一个数值模型,以提供一个预测海上集装箱漂移的工具。本文总结了该模型的主要特点,并给出了后播模式下的四种模拟。三个案例是真正的损失(“Churruca”,“Sherbro”和坦克集装箱),一个是实验(Dourvarc ' h)。容器的基本物理性质已在m -法国”开发的流体力学代码中实现。这方面构成了海上漂浮物预测的新途径。通过解析演算和四个研究实例证明,初始条件下初始化的浸没分数是一个关键参数。结果还显示了风向和风向强度对轨迹模拟的影响以及模型对容器浮力项的敏感性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Drift Modeling of Cargo Containers

Containers lost at sea are a hazard for shipping. The maritime authorities thus wish to be able to announce their positions to the navigators, or to recover them. In the event of containers loss, the calculation of the trajectory enables to locate the dangerous area for navigation and to search for the containers. A numerical model has been developed and configured to provide a tool to forecast container drift at the sea. This paper summarises the key features of the model and presents four simulations in hindcast mode. Three cases are real losses (‘Churruca’, ‘Sherbro’ and tank containers), one is an experiment (Dourvarc’h).

A basic physic of the container has been implemented in the hydrodynamic code developed by Météo-France. This aspect constitutes a new approach in the prediction of objects drifting on the sea. We demonstrate by the analytical calculus and with the four studied cases that the immersed fraction initialised in the initial condition is a key parameter. The results have also shown the role of the wind direction and intensity on the trajectories simulations and the sensitivity of the model to the container buoyancy term.

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