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A method for real-time estimation of full-scale global ice loads on floating structures

机译:一种实时估算浮动结构全尺寸全球冰荷载的方法

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摘要

This paper proposes an algorithm that uses conventional measurements found on-board ships coupled with additional Inertial Measurement Units to estimate the motions and global loads acting on them. The work is motivated by the scarce availability of full-scale load data for sea-ice operations and by the invasive instrumentation of strain gauges used to obtain global loads of all degrees of freedom. Full-scale data are key to a number of design, operational, and research aspects related to sea-ice operations. The proposed algorithm is based on four Inertial Measurement Units (IMUs) that together with position and heading measurements are used to make estimates of dynamic linear and rotational acceleration (acceleration resulting in motion). We show how to use models updated with propulsion and wind measurements to estimate propulsion, hydrodynamic, wind, and ice loads through a setup catering to real-time implementation. A case study with the Swedish icebreaker Oden is presented and discussed. The algorithm effectively yields reasonable ice load history estimations and presents great potential in its further application to real-time global ice load estimations.
机译:本文提出了一种算法,该算法使用在船上发现的常规测量值以及附加的惯性测量单元来估算作用在其上的运动和全局载荷。这项工作的动机是由于缺乏用于海冰作业的满量程载荷数据,以及用于获得所有自由度的全局载荷的应变仪的侵入式仪器。全面的数据对于与海冰作业有关的许多设计,操作和研究方面都是至关重要的。所提出的算法基于四个惯性测量单元(IMU),它们与位置和航向测量值一起用于估算动态线性和旋转加速度(导致运动的加速度)。我们展示了如何使用通过推进和风力测量更新的模型,通过适合实时实施的设置来估算推进,水动力,风力和冰荷载。介绍并讨论了瑞典破冰船Oden的案例研究。该算法有效地得出了合理的冰负荷历史估计值,并在进一步应用于实时全球冰负荷估计中具有很大的潜力。

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