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Phytoplankton Biomass Dynamics in the Strait of Malacca within the Period of the SeaWiFS Full Mission: Seasonal Cycles, Interannual Variations and Decadal-Scale Trends

机译:SeaWiFS全面任务期间马六甲海峡的浮游植物生物量动态:季节性周期,年际变化和十年尺度趋势

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摘要

Seasonal cycles, interannual variations and decadal trends of Sea-viewing Wide Field-of-view Sensor (SeaWiFS)-retrieved chlorophyll-a concentration (Chl-a) in the Strait of Malacca (SM) were investigated with reconstructed, cloud-free SeaWiFS Chl-a during the period of the SeaWiFS full mission (September 1997 to December 2010). Pixel-based non-parametric correlations of SeaWiFS Chl-a on environmental variables were used to identify the probable causes of the observed spatio-temporal variations of SeaWiFS Chl-a in northern, middle and southern regions of the SM. Chl-a was high (low) during the northeast (southwest) monsoon. The principal causes of the seasonality were wind-driven vertical mixing in the northern region and wind-driven coastal upwelling and possibly river discharges in the middle region. Among the three regions, the southern region showed the largest interannual variations of Chl-a. These variations were associated with the El Nino/Southern Oscillation (ENSO) and river runoff. Interannual variations of Chl-a in the middle and northern regions were more responsive to the Indian Ocean Dipole and ENSO, respectively, with atmospheric deposition being the most important driver. The most significant decadal-scale trend of increasing Chl-a was in the southern region; the trend was moderate in the middle region. This increasing trend was probably caused by environmental changes unrelated to the variables investigated in this study.
机译:利用重建的无云SeaWiFS研究了马六甲海峡(SM)的海洋宽视野传感器(SeaWiFS)提取的叶绿素a浓度(Chl-a)的季节周期,年际变化和年代际趋势。 SeaWiFS全面任务期间(1997年9月至2010年12月)的Chl-a。 SeaWiFS Chl-a与环境变量的基于像素的非参数相关性用于确定SM北部,中部和南部地区观察到的SeaWiFS Chl-a时空变化的可能原因。 Chl-a在东北(西南)季风期间为高(低)。造成季节性变化的主要原因是北部地区的风速垂直混合和中部地区的风速沿海上升流以及可能的河流排放。在这三个地区中,南部地区的Chl-a年际变化最大。这些变化与厄尔尼诺/南方涛动(ENSO)和河流径流有关。中部和北部地区Chl-a的年际变化分别对印度洋偶极子和ENSO更为敏感,其中大气沉积是最重要的驱动因素。 Chl-a增加的最显着年代际趋势是在南部地区。中部地区的趋势是温和的。这种增长趋势可能是由与本研究中所研究变量无关的环境变化引起的。

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