首页> 外文会议>Conference on remote sensing of the oceans and inland waters: techniques, applications, and challenges >High-resolution shipboard measurements of phytoplankton - a way forward for enhancing the utility of satellite SST and Chlorophyll for mapping microscale features and frontal zones in coastal waters
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High-resolution shipboard measurements of phytoplankton - a way forward for enhancing the utility of satellite SST and Chlorophyll for mapping microscale features and frontal zones in coastal waters

机译:浮游植物的高分辨率船上测量 - 一种提高卫星SST和叶绿素的效用,用于绘制微​​观特征和沿海水域的额度区域的效用

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Coastal eddies, frontal zones and microscale oceanographic features are now easily observable from satellite measurements of SST and Chl a. Enhancing the utility of these space-borne measurements for biological productivity, biogeochemical cycling and fisheries investigations will require novel bio-optical methods capable of providing information on the community structure, biomass and photo-physiology of phytoplankton associated on spatial scales that match these features. This study showcases high-resolution in-situ measurements of sea water hydrography (SeaBird CTD~?), CDOM (WetLabs ALF~?), phytoplankton functional types (PFTs, FlowCAM~?), biomass (bbe Moldaenke AlgaeOnlineAnalyzer~? and WetLabs ALF~?) and phytoplankton photosynthetic competency (mini-FIRe) across microscale features encountered during a recent (Nov. 2014) cruise in support of NOAA's VIIRS ocean color satellite calibration and validation activities. When mapped against binned daily, Level 2 satellite images of Chl a, K_d490 and SST over the cruise period, these high-resolution in-situ data showed great correspondence with the satellite data, but more importantly allowed for identification of PFTs and water types associated with microscale features. Large assemblages of phytoplankton communities comprising of diatoms and diatom-diazotroph associations (DDAs), were found in mesohaline frontal zones. Despite their high biomass, these populations were characterized by low photosynthetic competency, indicative of a bloom at the end of its active growth possibly due to nitrogen depletion in the water. Other prominent PFTs such as Trichodesmium spp., Synechococcus spp. and cryptophytes, were also associated with specific water masses offering the promise and potential that ocean remote sensing reflectance bands when examined in the context of water types also measurable from space, could greatly enhance the utility of satellite measurements for biological oceanographic, carbon cycling and fisheries studies.
机译:SST和CHL A的卫星测量,现在可以轻松观察到沿海漩涡,正面区域和微观海洋摄像带。增强这些用于生物生产力的这些空间型测量的效用,生物地球化学循环和渔业调查将需要新的生物光学方法,能够提供有关与匹配这些特征的空间尺度相关的植物结构,生物量和光生理学的信息。本研究展示了海水水文的高分辨率原位测量(Seabird CTD〜?),CDOM(Wetlabs Alf〜?),Phytoplankton功能类型(PFT,流量计〜?),生物量(Bbe Moldaenke Algaeonlineanalyzer〜?和Wetlabs Alf 〜?)和Phytoplankton光合竞争力(迷你火灾)在近期(2014年11月)巡航中遇到的微观特征,以支持Noaa的Viirs海洋颜色卫星校准和验证活动。当映射到每天拍摄的CHL A,K_D490和SST的2级卫星图像时,这些高分辨率的原位数据与卫星数据显示出很大的对应关系,但更重要的是允许识别PFT和水类型相关的PFT和水类型具有微观功能。在间区中发现了包含硅藻和硅藻 - 二聚噬细胞关联(DDA)的大型植物植物群落。尽管它们的生物量高,但这些群体的特征在于光合能力低,指示在其活跃的生长结束时绽放,可能是由于水中的氮气耗尽。其他突出的PFT,如Trichodesmium SPP。,SyneChocccus SPP。和加密,也与特定的水群体相关联,提供了海洋遥感反射带在水类型背景下的海洋遥感反射带,可以大大提高卫星测量的卫星测量的典型物,碳循环和渔业学习。

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