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Role of physical oceanography parameters in ocean’s biological response with the passage of cyclone Titli in the Bay of Bengal

机译:物理海洋学参数在海洋生物反应中的作用与孟加拉湾河道旋风锚杆通道

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Titli was the cataclysmic storm to afflict Indian coast during 2018. Tropical cyclones may inflate nutrients on the surface layer of the ocean by entrainment and mixing, as a result, the upper oligotrophic and euphotic layers may be recharged with rich nutrients resulting in triggering phytoplankton blooms and significant increase in primary production. The biological response using the chlorophyll concentration from Oceansat-2 OCM and the Net Primary Productivity from MODIS-A to this cyclone and its relation with the cyclone intensity has been studied. Role of physical oceanography parameters has been studied using multiple satellite-derived parameters like SST, TCHP, SLA, Ekman pumping velocity, wind stress and wind vectors and eddies during the passage of cyclone Titli . The results showed an increase in the surface chlorophyll concentration from 0.08 (before) to 0.32 mg m$^{-3}$ (after), whereas NPP enhanced from 457 to 1313 mgC m$^{-2}$ day$^{-1}$ with an SST drop of ${sim}$2.58$^{circ}$C (30.25$^{circ}$–27.67$^{circ}$C). The study confirms that the physical parameters are the key components that influence the biological response in addition to the cyclone intensity.
机译:Titli是2018年患有印度海岸的灾难性的风暴。通过夹带和混合,热带气旋可以通过夹带和混合来充气营养物质在海洋的表面层上膨胀,因此上部寡糖和Euphotic层可以用富含营养素充电,导致触发浮游植物绽放主要生产的显着增加。研究了来自Oceansat-2 OCM的叶绿素浓度的生物反应以及从Modis-A到该旋风的净初级生产率及其与旋风强度的关系。已经使用SST,TCHP,SLA,EKMAN泵送速度,风力和风向量和漩涡在Cyclone Titli通过过程中使用多种卫星衍生的参数研究了物理海洋学参数的作用。结果表明,表面叶绿素浓度从0.08(之前)到0.32mg M $ ^ { - 3} $(之后)的增加,而NPP从457增强到1313 mgc m $ ^ { - 2} $ day $ ^ { $ { sim} $ 2.58 $ ^ { circ} $ c(30.25 $ ^ { circ} $ - 27.67 $ ^ { rIC} $ c)。该研究证实,除了旋风强度之外,物理参数是影响生物反应的关键组分。

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