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Oil Droplet Size Model For Ocean Surface Oil Spills: Impact of Breaking Wave Height And Oil Properties

机译:海面油溢出油滴尺寸模型:破碎波高和油性能的影响

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One of the key parameters that has been identified to affect the accuracy of the oil spreading calculations from ocean oil spill models is the oil Droplet Size Distribution (DSD). The oil droplet dynamics in the water column plays a critical role in oil spreading and subsequent oil weathering processes. Thus, accounting for the droplet dynamics under wave conditions is a critical issue in ocean oil spreading models. In this regard, droplet dynamic models have shown promising results. In the present study, a phenomenological droplet dynamic model is used to analyse the impact of wave parameters and oil properties on the developed oil DSD. The model results confirm the capability of the phenomenological models to calculate the evolution of oil DSD under breaking wave conditions. The model was used to analyse how the developed DSD vary with different breaking wave heights, oil types, and differently weathered oils. The model results showed that increasing breaking wave height results in a shift of oil DSD towards smaller droplets, however the impact of oil viscosity is comparatively less for the selected range of oils.
机译:已经确定为影响来自海洋漏油模型的油扩散计算精度的关键参数之一是油滴尺寸分布(DSD)。水柱中的油滴动力学在油蔓延和随后的石油风化过程中起着关键作用。因此,在波条件下的液滴动力学的核算是海洋油扩散模型中的一个关键问题。在这方面,液滴动态模型已经显示了有希望的结果。在本研究中,使用现象学液滴动态模型来分析波浪参数和油性质对开发油DSD的影响。模型结果证实了现象学模型的能力,以在破裂波条件下计算油DSD的演变。该模型用于分析开发的DSD如何随着不同的破波高度,油种和不同风化的油而变化。模型结果表明,增加破碎波高导致油DSD向较小液滴的偏移,但是对所选油的油粘度的影响比较较低。

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