Development of a coastal upwelling front driven by advection and topographic effects in the North Sea–Baltic Sea transition

Lars Chresten Lund-Hansen , Torben Vang
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引用次数: 9

Abstract

Upwelling of cold, saline, and nutrient rich water was observed in late September 1999 along an east–west transect in the SW Kattegat. The Kattegat forms part of the transitional zone between the high saline North Sea and the low saline Baltic Sea. The upwelling occurred after an extended period of northward flow and eastern winds in the Kattegat, that changed into a southward flow as wind ceased. The upwelling was the result of a combination of high current speeds and bottom topography whereby the high-speed inflow water was forced towards the surface at the slope. Nutrient data show that the upwelling brought nutrient rich bottom water to the light exposed surface and a related strong (1943.5 ml–1) bloom of Pseudo-nitzschia pseudodelicatissima was observed. Surface (1.0 m) chlorophyll-a values increased from 3.7 to 10.0 μg 1–1 during upwelling. A frontal structure developed during the upwelling with raised fluorescence values at the front related to convergence. The present upwelling front was only indirectly related to the wind conditions and the front propagated off shore as compared to other upwelling fronts.

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北海-波罗的海过渡中平流和地形效应驱动的沿海上升流锋发展
1999年9月下旬,在卡特加特西南部的东西样带观测到冷的、含盐的、营养丰富的水上涌。卡特加特形成了高盐北海和低盐波罗的海之间的过渡地带的一部分。上升流发生在卡特加特群岛一段时间的北风和东风之后,随着风的停止,它变成了南流。上升流是高流速和底部地形共同作用的结果,高速流入的水被迫向斜坡表面流动。营养物数据表明,上升流将富营养物的底水带到了光暴露的表面,并观察到伪细刺藻(pseudonitzschia pseudodelicatissima)的强烈(1943.5 ml-1)华。在上升流过程中,地表(1.0 m)叶绿素-a值从3.7 μg - 1增加到10.0 μg - 1。在上升流期间形成了锋面结构,锋面荧光值因辐合而升高。目前的上升流锋与风况仅间接相关,与其他上升流锋相比,该锋面向近海传播。
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