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首页> 外文期刊>Journal of Climate >The Benguela Upwelling System: Quantifying the Sensitivity to Resolution and Coastal Wind Representation in a Global Climate Model
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The Benguela Upwelling System: Quantifying the Sensitivity to Resolution and Coastal Wind Representation in a Global Climate Model

机译:Benguela上升流系统:在全球气候模型中量化分辨率和海岸风表示的敏感性

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Of all the major coastal upwelling systems in the world's oceans, the Benguela, located off southwest Africa, is the one that climate models find hardest to simulate well. This paper investigates the sensitivity of upwelling processes, and of sea surface temperature (SST), in this region to resolution of the climate model and to the offshore wind structure. The Community Climate System Model (version 4) is used here, together with the Regional Ocean Modeling System. The main result is that a realistic wind stress curl at the eastern boundary, and a high-resolution ocean model, are required to well simulate the Benguela upwelling system. When the wind stress curl is too broad (as with a 1 degrees atmosphere model or coarser), a Sverdrup balance prevails at the eastern boundary, implying southward ocean transport extending as far as 30 degrees S and warm advection. Higher atmosphere resolution, up to 0.5 degrees, does bring the atmospheric jet closer to the coast, but there can be too strong a wind stress curl. The most realistic representation of the upwelling system is found by adjusting the 0.5 degrees atmosphere model wind structure near the coast toward observations, while using an eddy-resolving ocean model. A similar adjustment applied to a 1 degrees ocean model did not show such improvement. Finally, the remote equatorial Atlantic response to restoring SST in a broad region offshore of Benguela is substantial; however, there is not a large response to correcting SST in the narrow coastal upwelling zone alone.
机译:在世界海洋的所有主要沿海上升流系统中,位于非洲西南部的本格拉(Benguela)是最难模拟的气候模式之一。本文研究了该地区上升过程和海表温度(SST)对气候模型解析和对海上风结构的敏感性。这里使用了社区气候系统模型(版本4)以及区域海洋建模系统。主要结果是,要很好地模拟Benguela上升流系统,需要在东部边界处具有逼真的风应力卷曲和高分辨率海洋模型。当风应力卷曲太宽时(例如在1度大气模型或更粗的情况下),Sverdrup平衡在东部边界占主导地位,这意味着向南的海洋运输延伸到南纬30度,并且存在对流。更高的大气分辨率(最高可达0.5度)确实使大气射流更接近海岸,但风应力卷曲可能太强。通过使用解析涡流的海洋模型将近海岸的0.5度大气模型风结构向观测方向调整,可以找到最逼真的上升流系统。应用于1度海洋模型的类似调整未显示出这种改善。最后,对本格拉近海广大地区恢复海表温度的偏远赤道大西洋反应是重大的;然而,仅在狭窄的沿海上升区,对校正海表温度的反应并不大。

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