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首页> 外文期刊>Oceanologia >Investigating the role of air-sea forcing on the variability of hydrography, circulation, and mixed layer depth in the Arabian Sea and Bay of Bengal
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Investigating the role of air-sea forcing on the variability of hydrography, circulation, and mixed layer depth in the Arabian Sea and Bay of Bengal

机译:调查海运迫使海洋海洋和孟加拉海湾流域变异性的作用

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摘要

An effort is made to understand and quantify the influence of near surface zonal and meridional winds, incoming shortwave radiation, and freshwater flux air-sea forcings on the seasonal variability of the hydrography, circulation, and mixed layer depth of the Arabian Sea (AS) and Bay of Bengal (BoB). Sensitivity experiments using an ocean general circulation model are carried out for this purpose in the Indian ocean around 65 degrees-95 degrees E, 5 degrees-22 degrees N during 1998-2014 (17 years). In the absence of near surface wind forcing, the sea surface temperature of the region greatly increases in all the seasons, whereas, in the absence of incoming shortwave radiation forcing, exactly opposite is the case. The sea surface salinity of the AS and BoB decreases in the absence of wind and shortwave radiation forcings, whereas, in the northern BoB it increases in the absence of freshwater flux forcing. The sub-surface changes in the stratification of temperature and salinity are also investigated. The influence of the air-sea forcings on the mixed layer depth of the region is found to be highly seasonally dependent. The effect of air-sea forcings on the seasonal variability of the upper ocean vertical stability is studied using the vertical shear of the horizontal velocity, buoyancy frequency, and energy required for mixing as quantifiers. The near surface wind forcing has highest contribution in changing the surface circulation of the region. (C) 2017 Institute of Oceanology of the Polish Academy of Sciences. Production and hosting by Elsevier Sp. z o.o.
机译:努力理解和量化近地表局部和子午线,传入的短波辐射和淡水通量气海对阿拉伯海(AS)的季节性变异性(AS)的季节性变异性的影响和孟加拉湾(鲍勃)。使用海洋一般循环模型的敏感性实验在印度洋中为此目的进行65摄氏度-95摄氏度,在1998 - 2014年(17年)期间为5摄氏度-22度N.在没有近地表面风迫的情况下,该区域的海面温度在所有季节大大增加,而在没有进入的短波辐射迫使的情况下,情况完全相同。 AS和BOB的海面盐度在没有风和短波辐射强制的情况下减少,而在北鲍勃中,它在没有淡水通量迫使的情况下增加。还研究了温度和盐度分层的亚表面变化。发现海洋强调对该区域混合层深度的影响是高度季节性的依赖性。使用水平速度,浮力频率和混合作为量子所需的能量的垂直剪切研究了空中海防对上海垂直稳定性的季节性变异性的影响。近表面风强迫在改变该区域的表面循环方面具有最高贡献。 (c)2017年波兰科院海洋学院。由elsevier sp生产和托管。动物园。

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