在风力驱动的海面上,石油被淹没

Ming Li, D. Farmer
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引用次数: 1

摘要

虽然新泄漏的石油是浮力的,而且几乎总是浮在水面上,但水的湍流作用,特别是波浪产生的湍流作用,可以将漂浮的油层分解成油条、斑点或水滴。然后,油滴会被湍流和地下朗缪尔循环带入水柱。直径在数十至数百/spl μ m之间的小油滴本质上是中性浮力颗粒,可以分散到Langmuir细胞所能穿透的深度。直径为mm的较大油滴的浮力上升速度与Langmuir细胞的下降速度相当,它们可以悬浮在下降部位的地下滞留区。要想在滞留区成功捕获液滴,需要足够强的湍流将漂浮在表面的液滴泵下去。当朗缪尔细胞相互融合时,在下沉点收集的油滴包被携带并重新分配。当Langmuir细胞合并时,Stommel保留区不是有效的诱捕剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Oil submersion in a wind driven sea
Although freshly spilled oil is buoyant and almost always floats on the surface, the action of water turbulence, and particularly that generated by breaking waves can disintegrate floating oil layers into slicklets, blobs or droplets. The oil droplets can then be entrained into the water column by turbulence and subsurface Langmuir circulations. Small oil droplets having diameters in the range of tens to hundreds /spl mu/m are essentially neutrally-buoyant particles and can be dispersed as deep as Langmuir cells can penetrate. Larger oil droplets with diameters of mm have buoyant rise speeds comparable with the downwelling velocity of Langmuir cells, and they can be suspended in a subsurface retention zone at the downwelling sites. The successful trapping of droplets at the retention zone requires that turbulence be strong enough to pump down the droplets floating on the surface. When Langmuir cells merge with each other, packets of oil droplets collected at the downwelling sites are carried around and redistributed. The Stommel retention zone is not an effective trapping agent when Langmuir cells amalgamate.<>
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