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Nonlinear dynamics of a tightly moored point-absorber wave energy converter

机译:系泊点吸收波能量转换器的非线性动力学

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摘要

Tightly moored single-body floating devices are an important class of offshore wave energy converters. Examples are the devices under development at the University of Uppsala, Sweden, and Oregon State University, USA, prototypes of which were recently tested. These devices are equipped with a linear electrical generator. The mooring system consists of a cable that is kept tight by a spring or equivalent device. This cable also prevents the buoy from drifting away by providing a horizontal restoring force. The horizontal and (to a lesser extent) the vertical restoring forces are nonlinear functions of the horizontal and vertical displacements of the buoy, which makes the system a nonlinear one (even if the spring and damper are linear), whose modelling requires a time-domain analysis. Such an analysis is presented, preceded, for comparison purposes, by a simpler frequency-domain approach. Numerical results (motions and absorbed power) are shown for a system consisting of a hemispherical buoy in regular and irregular waves and a tight mooring cable. The power take-off is modelled by a simplified system of a linear spring and a linear damper and also by a system formed by a hydraulic piston and spring. Different scenarios are analysed.
机译:系泊紧密的单体漂浮装置是海上波浪能转换器的重要一类。例子是瑞典乌普萨拉大学和美国俄勒冈州立大学正在开发的设备,其原型最近已经过测试。这些设备配备了线性发电机。系泊系统由通过弹簧或等效装置保持紧密的电缆组成。该电缆还通过提供水平恢复力来防止浮标漂移。水平恢复力和(较小程度上)垂直恢复力是浮标水平和垂直位移的非线性函数,这使系统成为非线性系统(即使弹簧和阻尼器是线性的),其建模需要一定的时间:域分析。为了进行比较,在此分析之前先介绍了一种更简单的频域方法。显示了由规则波浪和不规则波浪中的半球形浮标以及系紧缆索组成的系统的数值结果(运动和吸收的功率)。动力输出通过线性弹簧和线性阻尼器的简化系统以及由液压活塞和弹簧形成的系统进行建模。分析了不同的场景。

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