穿越风海和涌浪的斯托克斯漂移及其对挪威北部罗弗敦近海颗粒迁移的影响

IF 3.1 3区 地球科学 Q2 METEOROLOGY & ATMOSPHERIC SCIENCES
Håvard Espenes , Ana Carrasco , Knut-Frode Dagestad , Kai Håkon Christensen , Magnus Drivdal , Pål Erik Isachsen
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引用次数: 0

摘要

海岸附近的漂移评估通常与漂浮在海面附近的颗粒物有关。这些 "颗粒 "可能是鲑鱼虱、鳕鱼卵、大型塑料或船舶残骸。它们的漂移取决于欧拉流和与风产生的表面波场相关的斯托克斯漂移。必须对斯托克斯漂移进行参数化,这样就不可避免地要对波谱漂移的方向和速度进行批量估算。本文在开源拉格朗日粒子跟踪模型 OpenDrift 中实施了最近提出的斯托克斯漂移垂直剖面参数化,该参数化考虑了在不同方向传播的涌浪和风海的影响。我们研究了在挪威北部罗弗敦群岛漂流的粒子如何取决于斯托克斯漂移以及我们如何对其进行参数化。在我们研究的领域中,考虑到穿越风海和涌浪的参数化导致在海岸线附近的停留时间低于其他流行参数化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stokes drift in crossing windsea and swell, and its effect on near-shore particle transport in Lofoten, Northern Norway

Transport assessments near the coast are often related to particles drifting near the surface. Such “particles” may be salmon lice, cod eggs, macro plastics or ship debris. Their drift depends on the Eulerian currents and the Stokes drift associated with the wind-generated surface wave field. The Stokes drift must be parameterized, and in doing so, one will inevitably make bulk estimates of the direction and speed of the drift for the wave spectrum. This paper implements a recently proposed parameterization of the Stokes drift vertical profile, which accounts for the effect of swell and windsea that propagate in different directions, to the open-source Lagrangian particle tracking model OpenDrift. We investigate how particles drifting in the Lofoten archipelago in Northern Norway depend on the Stokes drift and how we parameterize it. The parameterization accounting for crossing windsea and swell leads to lower residence time near the coastline than other popular parameterizations in the domain we studied.

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来源期刊
Ocean Modelling
Ocean Modelling 地学-海洋学
CiteScore
5.50
自引率
9.40%
发文量
86
审稿时长
19.6 weeks
期刊介绍: The main objective of Ocean Modelling is to provide rapid communication between those interested in ocean modelling, whether through direct observation, or through analytical, numerical or laboratory models, and including interactions between physical and biogeochemical or biological phenomena. Because of the intimate links between ocean and atmosphere, involvement of scientists interested in influences of either medium on the other is welcome. The journal has a wide scope and includes ocean-atmosphere interaction in various forms as well as pure ocean results. In addition to primary peer-reviewed papers, the journal provides review papers, preliminary communications, and discussions.
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