首页> 外文期刊>Journal of Geology & Geophysics >Correlations of Remote Sensing Chlorophyll-a Data and Results of A Numerical Model of the Tropical and South Atlantic Ocean Circulation
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Correlations of Remote Sensing Chlorophyll-a Data and Results of A Numerical Model of the Tropical and South Atlantic Ocean Circulation

机译:叶绿素a遥感数据与热带和南大西洋环流数值模型结果的相关性

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摘要

The Tropical and South Atlantic Ocean are characterized by important large scale features that have seasonal character. The interactions between atmospheric and oceanic phenomena compose a complex system where variations in physical parameters affect the distribution of primary production. Previous studies showed that the variability of physical parameters displays high values of cross-correlation with chlorophyll-a, with strong dependence on latitude and variability in the biological response time. This study aims to correlate data of chlorophyll-a from MODIS with the results of a hydrodynamic numerical model, in the period 2003 - 2009. The annual and semi-annual signals are predominant both in MODIS and model data but, even excluding these components, the residual correlations are still high. On the other hand, annual and semi-annual signals have smaller standard deviation than the remaining (residual) frequencies. The cross-correlations between chlorophyll-a and salinity, temperature and surface elevation showed spatial distribution patterns with well-defined latitudinal character, presenting higher modulus of correlation for temperature and salinity, above +0.6 in the polar region and below -0.5 in the tropical area. A general pattern of negative correlations in the regions of low concentration and positive in regions of high concentration was obtained, except the Equator (region of high chlorophyll concentration, which is characterized by a negative correlation for all variables, except the intensity of the currents). The cross-correlations between chlorophyll and physical parameters corroborate the pattern found in the correlations considering lag zero, stressing aspects as the positive correlation with the intensity of the currents in the equatorial region and the negative correlation with the surface elevation inside the South Atlantic Subtropical Gyre (SASG), both presenting immediate response. The analysis of spatial distributions of the cross-covariance of Fourier spectra between chlorophyll and each of the physical variables, in the transect 20°W, showed that temperature and salinity presented the best defined signals, especially in the periods of 3.5, 2.3, 0.7, and 1.7 years, with varying spatial distributions and time lags. These signals are found in the literature, being associated with ENSO phenomena.
机译:热带和南大西洋的特征是具有季节性特征的重要的大规模特征。大气现象和海洋现象之间的相互作用组成了一个复杂的系统,其中物理参数的变化会影响初级生产的分布。先前的研究表明,物理参数的变异性显示出与叶绿素-a的互相关性较高的值,并且对纬度和生物响应时间变异性的依赖性强。这项研究旨在将2003年至2009年间来自MODIS的叶绿素a数据与流体力学数值模型的结果相关联。MODIS和模型数据中的年信号和半年信号均占主导地位,但即使不包括这些成分,残留相关性仍然很高。另一方面,年度和半年度信号的标准偏差小于其余(残余)频率。叶绿素-a与盐度,温度和表面海拔之间的相互关系显示出具有明确纬度特征的空间分布模式,呈现出较高的温度和盐度相关系数,在极地地区高于+0.6,在热带地区低于-0.5区。除了赤道(高叶绿素浓度的区域,其特征在于所有变量的负相关,电流强度除外),得到了低浓度区域呈负相关,高浓度区域呈正相关的一般模式。 。叶绿素和物理参数之间的互相关性证实了在考虑滞后零的相关性中发现的模式,强调方面是与赤道区域海流强度的正相关,而与南大西洋亚热带绕流区内的表面海拔呈负相关。 (SASG),都可以立即做出回应。在20°W样线中,叶绿素与每个物理变量之间的傅立叶光谱的互协方差的空间分布分析表明,温度和盐度是最好的信号,特别是在3.5、2.3、0.7时期和1.7年,具有不同的空间分布和时滞。这些信号在文献中发现,与ENSO现象有关。

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