苏拉威西海混合层深度的季节变化

M. R. Iskandar, Prima Wira K. Wardhani, T. Suga
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摘要

苏拉威西海是印度尼西亚海中的一个半封闭盆地,被认为是印度尼西亚通流(ITF)西线的位置之一。对苏拉威西海混合层深度的研究较少。考虑到混合层在海气相互作用中对海洋的影响和生物活性的影响,苏拉威西海混合层深度(MLD)的估算具有重要意义。利用World Ocean Atlas 2013估算了苏拉威西海混合层在115°-125°E和0°-8°N之间的季节变化。利用再分析数据提供了苏拉威西海风应力机械强迫和浮力强迫(来自热通量和淡水通量)在表面强迫湍流混合方面的混合层强迫要素。根据所选密度固定标准0.03 kg,直接在网格轮廓上估计MLD,插值水平。m-3与表面温度判据相差0.5℃。结果表明,苏拉威西海混合层深度具有时空变化特征。一般而言,MLD最深发生在西南季风(JJA)期间,最低MLD发生在第一次过渡季风(MAM)和第二次过渡季风(SON)期间。MLD的增强和减弱受风应力和浮力通量的机械力的影响。在苏拉威西海,混合层加深与风应力最大值和地表浮力通量较低的发生一致。混合层变浅时则相反。
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Seasonal Variability of The Mixed Layer Depth in The Sulawesi Sea
The Sulawesi Sea is a semi-enclosed basin located in the Indonesian Seas and considered as the one of location in the west route of Indonesian Throughflow (ITF). There is less attention on the mixed layer depth investigation in the Sulawesi Sea. Concerning that the mixed layer plays an important role in influencing the ocean in air-sea interaction and affects biological activity, the estimation of mixed layer depth (MLD) in the Sulawesi Sea is important. Seasonal variation of the mixed layer in the Sulawesi Sea between 115°-125°E and 0°-8°N is estimated by using World Ocean Atlas 2013. Forcing elements on the mixed layer in terms of surface-forced turbulent mixing from mechanical forcing of wind stress and buoyancy forcing (from heat flux as well as freshwater flux) in the Sulawesi Sea is provided by using a reanalysis dataset. The MLD is estimated directly on grid profiles with interpolated levels based on chosen density fixed criterion of 0.03 kg.m-3 and temperature criterion of 0.5°C difference from the surface. The results show that mixed layer depth in the Sulawesi Sea varies both spatially and temporally. Generally, the deepest MLD was occurred during the southwest monsoon (JJA), and the lowest MLD was occurred during the first transition (MAM) and second transition monsoon (SON). Strengthening and weakening MLD are influenced by mechanical forcing from wind stress and buoyancy flux. In the Sulawesi Sea, the mixed layer deepening coincides with the occurrence of a maximum in wind stress, and low buoyancy flux at the surface. This condition is the opposite when mixed layer shallowing occurs.
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