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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Hydrography and geostrophic currents in the Northern Gulf of California during the 1997-1998 El Nino
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Hydrography and geostrophic currents in the Northern Gulf of California during the 1997-1998 El Nino

机译:1997-1998年厄尔尼诺现象期间加利福尼亚北部湾的水文和地转流

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Conductivity, temperature and depth (CTD) data taken during July and November 1997 and March 1998 are used to analyze the hydrographic conditions in the Northern Gulf of California during the 1997-98 El Ni (n) over tildeo. The CTD data are compared to data from other years and an anomalous high salinity, lower density water is found near the bottom, whereas a relatively fresh surface layer is found on the eastern side of the gulf during July. The relatively fresh surface water is attributed to advection of tropical waters from the Pacific Ocean. During November and March, positive surface temperature anomalies are identified. Geostrophic currents are calculated across an entire cross section of the gulf passing through the northern tip of Angel de la Guarda Island using either salt or mass conservation as constraints. The most salient feature of the geostrophic currents is the existence of relatively intense bottom currents. The bottom current on the eastern side of the island is southeastward, toward the mouth of the gulf, during July, whereas it is toward the head of the gulf on the western side of the island. This pattern is inverted during November and March and, in all cases, suggests a near-bottom circulation between both basins separated by the island. The near-bottom current toward the head of the gulf on the eastern side of the island appears to be a permanent feature associated with the exchange of the northern gulf. Therefore, the high near-bottom salinities during July, coupled with a current toward the mouth of the gulf, are attributed to an anomalous condition created by the El Ni (n) over tildeo event. This condition is consistent with a subsidence of Gulf of California waters, flowing toward the mouth. Fluxes of salt and heat estimated from geostrophic currents are compared to seasonal estimates. The July heat flux is about three times greater than the seasonal value, and there appears to be an overall phase shift with respect to the seasonal cycle. (c) 2006 Elsevier Ltd. All rights reserved.
机译:使用1997年7月,11月和1998年3月的电导率,温度和深度(CTD)数据分析了1997-98年El Ni(n)上代尔迪奥上加利福尼亚北部湾的水文条件。将CTD数据与其他年份的数据进行比较,发现在底部附近发现异常高盐度,低密度水,而在7月期间,在海湾东部发现了相对较新鲜的表层。相对较新鲜的地表水归因于来自太平洋的热带水的平流。在十一月和三月期间,识别出正的表面温度异常。利用盐或质量守恒作为约束条件,计算了穿过安杰尔德拉瓜达岛北端的整个海湾横截面的地转流。地转流的最显着特征是存在相对强烈的底流。在七月期间,该岛东侧的底部水流向东南方向,朝着海湾的口,而在该岛西侧,则向着海湾的顶部。在11月和3月,这种模式被颠倒了,在所有情况下,都表明被该岛隔开的两个盆地之间存在着接近底部的环流。朝向岛东侧海湾顶部的近底电流似乎是与北部海湾交换有关的永久特征。因此,七月期间近乎底部的高盐度,再加上流向海湾口的电流,是由于厄尔尼诺现象造成的厄尔尼诺现象造成的。这种情况与流向河口的加利福尼亚湾水域的沉陷是一致的。将根据地转流估计的盐和热通量与季节性估计进行比较。 7月的热通量约为季节值的三倍,并且相对于季节周期似乎出现了总体相移。 (c)2006 Elsevier Ltd.保留所有权利。

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