首页> 外文期刊>Izvestiya Atmospheric and Oceanic Physics >On the spatial-temporal variations in the chlorophyll-a concentration on the Peter the Great Bay shelf during the winter-spring phytoplankton bloom according to satellite and subsatellite data
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On the spatial-temporal variations in the chlorophyll-a concentration on the Peter the Great Bay shelf during the winter-spring phytoplankton bloom according to satellite and subsatellite data

机译:根据卫星和亚卫星数据,冬季春季浮游植物开花期间彼得大帝湾架子上叶绿素-a浓度的时空变化

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摘要

Chlorophyll-a concentration (C (chl)) variations in the cross section within and outside the Peter the Great Bay shelf during different stages of the winter-spring phytoplankton bloom in 2003-2005 has been considered based on a ship (obtained during the R/V Akademik M.A. Lavrent'ev voyage of February 26 to March 9, 2003) and MODIS-Aqua spectroradiometer and the SeaWiFS color-scanner satellite data. A comparison of the C (chl) variability obtained from the ship and satellite data indicates that these data are inconsistent. According to satellite data obtained at the MUMM atmospheric correction, the C (chl) variability is distorted less than the NIR-correction data. Studying the variations in the coefficients of light absorption by the detritus and yellow substance (a (dg)) and light backscattering by suspended particles (b (bp)), C (chl), chlorophyll-a fluorescence (F (chl)) according to the satellite data allow us to state that the variations in the discrepancy between the satellite and ship C (chl) values are mainly caused by the variations in the content of the detritus and yellow substance in water. Based on the satellite data, it has been revealed that the a (dg) values increase with increasing wind mixing after the phytoplankton bloom (about 2-5 km areas where the a (dg), C (chl), F (chl), and bbp values abruptly increased in 2005, apparently due to eddy formation). It has been indicated that the F (chl) characteristic, which is close to C (chl), increases when the favorable conditions for the phytoplankton bloom deteriorate. Therefore, this characteristic cannot be used to identify C (chl) under the indicated conditions.
机译:根据船舶(在R期间获得),考虑了2003-2005年冬春浮游植物开花的不同阶段,彼得大帝湾架子内外的横截面中叶绿素a浓度(C(chl))的变化。 / V Akademik MA Lavrent'ev于2003年2月26日至3月9日航行)和MODIS-Aqua分光辐射仪和SeaWiFS彩色扫描仪卫星数据。从船上和卫星数据获得的C(chl)变异性的比较表明,这些数据不一致。根据在MUMM大气校正中获得的卫星数据,C(chl)变异性比NIR校正数据失真小。研究碎屑和黄色物质的光吸收系数(a(dg))和悬浮颗粒(b(bp)),C(chl),叶绿素-a荧光(F(chl))的光向后散射系数的变化根据卫星数据,我们可以说卫星和船舶C(chl)值之间的差异的变化主要是由水中碎屑和黄色物质的含量变化引起的。根据卫星数据,已经发现,浮游植物开花后,a(dg)值随风混合的增加而增加(大约2-5 km,其中a(dg),C(chl),F(chl),和bbp值在2005年突然增加,这显然是由于涡流形成所致)。已经表明,当浮游植物开花的有利条件恶化时,接近C(chl)的F(chl)特性增加。因此,在指定的条件下,该特性不能用于识别C(chl)。

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