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An algorithm for modeling entrainment and naturally and chemically dispersed oil droplet size distribution under surface breaking wave conditions

机译:表面破裂波条件下夹带和自然和化学分散油滴尺寸分布的建模算法

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A surface oil entrainment model and droplet size model have been developed to estimate the flux of oil under surface breaking waves. Both equations are expressed in dimensionless Weber number (We) and Ohnesorge number (Oh, which explicitly accounts for the oil viscosity, density, and oil-water interfacial tension). Data from controlled lab studies, large-scale wave tank tests, and field observations have been used to calibrate the constants of the two independent equations. Predictions using the new algorithm compared well with the observed amount of oil removed from the surface and the sizes of the oil droplets entrained in the water column. Simulations with the new algorithm, implemented in a comprehensive spill model, show that entrainment rates increase more rapidly with wind speed than previously predicted based on the existing Delvigne and Sweeney's (1988) model, and a quasi-stable droplet size distribution (d < similar to 50 mu m) is developed in the near surface water. (C) 2017 Elsevier Ltd. All rights reserved.
机译:已经开发了表面油夹带模型和液滴尺寸模型来估计表面破碎波下的油通量。这两个方程均以无量纲韦伯数(We)和欧姆尼佐数(Oh)表示,后者明确考虑了油的粘度,密度和油水界面张力。来自受控实验室研究,大规模波轮试验和现场观察的数据已用于校准两个独立方程的常数。使用新算法进行的预测与观察到的从地表去除的油量以及水柱中夹带的油滴大小进行了很好的比较。在新的溢流模型中实施的新算法的仿真表明,夹带率随风速的增加比基于现有Delvigne和Sweeney(1988)模型以及准稳定的液滴尺寸分布(d <相似至近50微米)在近地表水发育。 (C)2017 Elsevier Ltd.保留所有权利。

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