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Observed Inter-annual Variability of Upwelling Characteristics during 2016-2017: A Study using Princeton Ocean Model

机译:2016-2017期间观察到年度较高特征的年间变异性:使用普林斯顿海洋模型的研究

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Oceanographic observations carried out during 2016 and 2017 onboard INS Sagatrlhwani in the Southeastern Arabian Sea are used to study the inter-annual variability of the upwelling. In 2016, the strong upwelling signatures are noticed in the observations (SST 27 degrees C and strong up-slopping of isotherms) as well as in the satellite derived sea level anomaly data. Whereas in 2017 the low sea level in June (-2 cm) are weakened during the mid of July (+3 cm) along the southern track (8 degrees N and 9 degrees N). This decrease in the strength in 2017 can be attributed to two major reasons. One is the presence of an anti-cyclonic eddy along the coast (8.5 degrees N, 76.5 degrees E) weakens the upwelling processes and second is the weak northerly component of the wind compared to 2016. In addition, Lakshadweep low is less prominent and situated towards the southern side (around 7 degrees N) of its usual region of occurrence in 2017. The inter-annual variability of upwelling during July 2016 and 2017 is investigated using the 3D ocean model Princeton Ocean Model. Experiments with model in different combinations of forcing reveals that the alongshore wind component is the major parameter influencing the upwelling characteristics during these periods.
机译:2016年和2017年的海洋观测到2016年和2017年在东南阿拉伯海海运中的衣柜斯塔尔尔湾斯塔尔伦湾习惯于研究升值的年度年度变异性。在2016年,在观察结果(SST <27摄氏度和等温线的强硬坡度)以及卫星衍生的海平面异常数据中,注意到强烈的升值签名。虽然2017年,六月(-2厘米)的低海平面在7月中旬(+3厘米)沿南部轨道(8℃和9℃)。 2017年的强度降低可归因于两种主要原因。一个是沿着海岸抗旋流涡流的存在(8.5度,76.5°E)削弱了上升过程,而第二个是与2016年相比较弱的风较弱的北方部件。此外,Lakshadweep Low不太突出和位于朝着2017年南方的南方(大约7摄氏度)。使用3D海洋模型普林斯顿海洋模型调查了2016年7月和2017年7月期间的年龄阶段的年度变异性。在不同组合的模型中的实验表明,沿岸风力分量是影响这些时期内升高特性的主要参数。

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