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首页> 外文期刊>African Journal of Marine Science >Observations and mechanisms of upwelling in the northern KwaZulu-Natal Bight, South Africa
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Observations and mechanisms of upwelling in the northern KwaZulu-Natal Bight, South Africa

机译:南非夸祖鲁-纳塔尔湾北部的上升流的观测和机理

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New in situ time-series data were acquired by two ADCP moorings placed on the shelf off Richards Bay on the east coast of South Africa at depths of 25 m and 582 m between October 2009 and August 2010. The 11-month inshore bottom-temperature record revealed five substantial upwelling events lasting 5-10 days each where temperatures decreased by about 7 degrees C to 17-18 degrees C. Satellite sea surface temperature data showed these events to coincide with cold-water plumes occupying the northern wedge of the KwaZulu-Natal (KZN) Bight. Numerous shorter duration (1-2 days) upwelling events with less vivid surface expressions were also observed throughout the entire record where bottom temperature dropped by 2-3 degrees C. The last four months of the record were characterised by a protracted cool period lacking a seasonal trend but punctuated with oscillations of warm and cooler bottom water. In contrast to earlier studies that suggested upwelling was topographically and dynamically driven by the juxtaposition of the Cape St Lucia offset and the Agulhas Current (a solitary mechanism), our analysis showed almost all major and minor cold-water intrusions to coincide with upwelling-favourable north-easterly winds that simultaneously force a south-westerly coastal current. Ekman veering in the bottom boundary layer of the Agulhas Current, and the concomitant movement of cold water up the slope, was found to coexist at times with coastal upwelling, but its absence did not impede inshore cold-water intrusions, calling into question its role as a primary driver of upwelling. Both major and minor upwelling events were observed to promote phytoplankton blooms in the northern KZN Bight which commonly extended to the Thukela River. Wind-driven upwelling was also observed in the inner bight between Richards Bay and Port Durnford, explaining the ribbon of coastal chlorophyll continuously observed on ocean colour images between Cape St Lucia and the Thukela River. Similarities in upwelling character and mechanisms are observed between the northern KZN Bight and the Florida Current shelf systems.
机译:在2009年10月至2010年8月之间,两个ADCP系泊系统被放置在南非东海岸理查兹湾架子上的两个ADCP系泊设备上,分别获得25 m和582 m的深度。新的现场时间序列数据。近11个月的近海底部温度记录显示,持续5-10天的5次实质性上升事件,温度下降了约7摄氏度,至17-18摄氏度。卫星海面温度数据显示,这些事件与占据夸祖鲁河北缘的冷水羽流相吻合。纳塔尔(KZN)战斗。在整个记录中,还观察到许多持续时间较短(1-2天)的上升事件,表面表情不那么生动,其中底部温度下降了2-3摄氏度。记录的最后四个月的特点是长时间的寒冷时期缺乏温度。季节性趋势,但随着温暖和凉爽的底水振荡而中断。与较早的研究表明上升是由圣卢西亚角偏移和Agulhas Current(一种单独的机制)的并置引起的地形动态变化相比,我们的分析表明,几乎所有主要和次要的冷水侵入都与上升有利相吻合。东北风同时推动西南沿海潮流。人们发现,埃克曼在阿古拉斯河洋流的底部边界层弯曲,伴随着斜坡上的冷水运动有时与沿海上升流并存,但这种缺席并没有妨碍近海的冷水入侵,从而对其作用产生了疑问。作为上升趋势的主要驱动力。在北部和北部的KZN海岸线上都观察到主要和次要的上升事件都促进了浮游植物的开花,而浮游植物通常延伸到Thukela河。在理查兹湾(Richards Bay)和杜恩福德港(Port Durnford)之间的内壁也观察到了风的上升流,这解释了在圣露西亚角(Cape St Lucia)和图克拉河(Thukela River)之间的海洋彩色图像上连续观察到的沿海叶绿素的带。在北部KZN海岸线和佛罗里达洋架系统之间观察到上升流特征和机制的相似性。

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