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Dynamics and early post-tsunami evolution of floating marine debris near Fukushima Daiichi

机译:福岛Daiichi附近浮海洋泥浆的动态与早期海啸演变

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The devastating tsunami triggered by the Tohoku-Oki earthquake of 11 March 2011 caused a crisis at the Fukushima Daiichi nuclear power station where it overtopped the seawall defences. On retreating, the tsunami carried loose debris and wreckage seaward and marshalled buoyant material into extensive plumes. Widespread concern over the fate of these and numerous other Tohoku tsunami depositions prompted attempts to simulate debris dispersion throughout the wider Pacific. However, the effects of locally perturbed wind and wave fields, active Langmuir circulation and current-induced attrition determine a complex and poorly understood morphology for large floating agglomerations. Here we show that the early post-tsunami evolution of marine-debris plumes near Fukushima Daiichi was also shaped by near-surface wind modifications that took place above relatively calm (lower surface roughness) waters covered by surface films derived from oil and other contaminants. High-spatial-resolution satellite tracking reveals faster-than-expected floating-debris motions and invigorated plume evolution within these regions, while numerical modelling of turbulent air flow over the low-drag, film-covered surface predicts typically metre-per-second wind strengthening at centimetric heights, sufficient to explain the observed debris-speed increases. Wind restructuring probably stimulates the dispersion of flotsam from both biological and anthropogenic sources throughout a global ocean of highly variable surface roughness.
机译:由2011年3月11日的Tohoku-oki地震引发的毁灭性海啸引发了福岛达奇核电站的危机,在那里它拓展了海堤防御。在撤退上,海啸携带松散的碎片和残骸向外的浮潜材料,进入广泛的羽毛。普遍关注这些和许多其他Tohoku海啸沉积的令人担忧促使尝试在整个太平洋地区模拟碎片分散。然而,局部扰动风和波场的影响,活跃的朗马尔循环和电流诱导的磨损决定了大浮浮凝聚的复杂性和较差的形态。在这里,我们认为,福岛Daiichi附近的海洋碎片羽毛的早期海啸早期演变也被近似表面风修饰塑造,该近表面风改性在源自油和其他污染物的表面膜覆盖的相对平静(下表面粗糙度)水中。高空间分辨率卫星跟踪揭示了这些地区的浮动碎片动作和活泼的羽流进化,而湍流空气流量的数值建模在低压,薄膜覆盖的表面上预测每二次仪表强化厘米高度,足以解释观察到的碎屑速度增加。风力重构可能在整个高度可变表面粗糙度的全球性海洋中刺激弗拉特姆的分散来自生物和人为源。

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