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MULTI-SCALE NUMERICAL ANALYSIS OF THE FIELD EFFICIENCY OF AN OCEAN PLASTIC CLEANUP ARRAY

机译:海洋塑料清理阵列场效率的多尺度数值分析

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The impact of plastic pollution on marine ecosystems and global economy has been drawing public concern since the end of the 20th century. To mitigate this issue, The Ocean Cleanup (TOC) Foundation is developing technologies to extract, prevent, and intercept plastic debris from coastal and oceanic environments. The core technology being optimized is the use of floating booms placed perpendicular to the main ocean plastic flow so it can concentrate plastic debris to a point where it can be extracted, shipped and processed in a cost-effective manner. In order to optimize the system's field efficiency (i.e. mass of ocean plastic captured per length of floating boom), a multi-scale approach has been elaborated, where temporal and spatial scales span over several orders of magnitude. Here we introduce this general multi-scale method alongside its assumptions and multi-scale models. We then describe two application examples, the first corresponding to our coastal pilot in the Japanese island of Tsushima and the second related to our main cleanup target area: the so-called Great Pacific Garbage Patch, situated between Hawaii and the US west coast.
机译:自20世纪末以来,塑料污染对海洋生态系统和全球经济的影响一直引起公众关注。为了减轻这个问题,海洋清洁基金会(TOC)正在开发从沿海和海洋环境中提取,预防和拦截塑料碎片的技术。被优化的核心技术是使用垂直于主要海洋塑料流的浮臂,这样可以将塑料碎片集中到可以经济高效地进行提取,运输和处理的程度。为了优化系统的现场效率(即每行浮动吊杆捕获的海洋塑料质量),已制定了一种多尺度方法,其中时空尺度跨越了几个数量级。在这里,我们将介绍这种通用的多尺度方法及其假设和多尺度模型。然后,我们描述两个应用示例,第一个与我们在日本对马岛的沿海领航员相对应,第二个与我们的主要清理目标区域有关:所谓的“大太平洋垃圾场”,位于夏威夷和美国西海岸之间。

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