The Ocean Cleanup System 001 Performance During Towing and Seakeeping Tests

J. Sterenborg, N. Grasso, Rogier Schouten, A. Tjallema
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引用次数: 3

Abstract

One of the aims of The Ocean Cleanup is to develop technologies to extract plastic pollution from the world’s oceans. Several concepts of passive floating systems were considered that are supposed to confine plastics to ease their collection. Such concepts consist of a floating member and a submerged flexible skirt and have in common that their span is generally more than 500 meters. Consequently, fluid-structure interaction plays an important role in the response of such a floating system. To support numerical simulations, MARIN carried out extensive model tests on a 120 meter system section of the final concept, with focus on the fluid-structure interaction (FSI) of the submerged skirt in operating conditions and in towing configuration. The ability to capture plastics was not investigated in these model tests. Novel for wave-basin tests were non-intrusive measurements using underwater Digital Image Correlation (DIC) to obtain the displacements and deformations of the flexible skirt. DIC proved to be a capable measurement technique for this type of structure in combination with a wave basin. Detailed quantitative data on skirt motions and deformations were delivered and the last concept of the cleanup system was tested in the towing configuration and operational configuration.
海洋清理系统001在拖曳和耐波性测试中的性能
“海洋清理”的目标之一是开发从世界海洋中提取塑料污染的技术。被动式漂浮系统的几个概念被认为应该限制塑料,以方便他们的收集。这些概念由浮动构件和水下柔性裙板组成,它们的共同之处在于它们的跨度通常超过500米。因此,流固耦合在这种浮动系统的响应中起着重要的作用。为了支持数值模拟,MARIN在最终概念的120米系统部分进行了大量的模型测试,重点研究了水下裙板在操作条件和拖曳配置下的流固耦合(FSI)。在这些模型试验中没有研究捕获塑料的能力。波盆试验的新方法是利用水下数字图像相关(DIC)进行非侵入式测量,以获得柔性裙板的位移和变形。事实证明,DIC与波盆相结合是一种有效的测量技术。提供了裙边运动和变形的详细定量数据,并在拖曳配置和操作配置中测试了清理系统的最后概念。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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