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Combining in-situ water quality and remotely sensed data across spatial and temporal scales to measure variability in wet season chlorophyll-a: Great Barrier Reef lagoon (Queensland, Australia)

机译:结合就地水质和跨时空尺度的遥感数据来测量湿季叶绿素-a的变异性:大堡礁泻湖(澳大利亚昆士兰州)

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摘要

Introduction: Combining in-situ data from single-point time series with remotely sensed spatial data allowed a greater elucidation of changes in chlorophyll-a concentrations through wet season conditions in the Great Barrier Reef coastal waters.\ud\udMethods: Single-point time-series data were collected from 2006 to 2012 during high river flow conditions to assess changes in phytoplankton biomass (measured as chlorophyll-a). Additionally, three flood plume water types, derived from classified true-colour Aqua moderate resolution imaging spectroradiometer (MODIS) images, were used to group single-point time-series data for the phytoplankton biomass assessment.\ud\udResults: Survey data illustrate the heterogeneity of chlorophyll-a distribution over seasonal and inter-annual cycles and the difficulty in describing community responses through the wet season. The spatial data demonstrate distinct regional differences throughout the Great Barrier Reef. The high chlorophyll-a concentrations measured in flood plume waters immediately adjacent to the inshore, highly turbid 'inner' flood plume are a product of sufficient light, given most of the suspended solids have settled from the plume, and the availability of sufficient nutrients, which drive higher phytoplankton production and characterise the formation of secondary stage flood plumes. The formation and extent of these secondary flood plumes were mapped using MODIS true-colour satellite imagery. The distance and the location of the secondary plume water are reliant on flow, coastal hydrodynamics, and biological activity.\ud\udConclusions: The combination of in-situ data and remotely sensed data provides information on the complexity of these coastal processes during the wet season and offers managers a more comprehensive understanding of the extent of nutrient enrichment in the Great Barrier Reef coastal area and the potential influence of flood plumes on coastal marine ecosystems.
机译:简介:将单点时间序列的原位数据与遥感空间数据相结合,可以更好地阐明大堡礁沿岸水域湿季条件下叶绿素a浓度的变化。\ ud \ ud方法:单点时间2006年至2012年期间,在河流高流量条件下收集了一系列数据,以评估浮游植物生物量的变化(以叶绿素a衡量)。此外,从分类的真彩色Aqua中分辨率成像光谱仪(MODIS)图像中得出的三种洪流水类型被用于对单点时间序列数据进行分组,以进行浮游植物生物量评估。\ ud \ ud结果:调查数据说明了叶绿素-a在季节和年际周期中分布的异质性,以及描述整个雨季社区反应的难度。空间数据表明,整个大堡礁地区都有明显的区域差异。考虑到大部分悬浮固体已经从烟羽中沉降出来,并且有足够的养分,在紧邻沿海的洪羽水域中测量到的高叶绿素a浓度,高度浑浊的“内部”洪羽是充足光的产物。它推动了浮游植物的增产,并表征了二级洪流羽流的形成。这些次生洪水羽的形成和程度是使用MODIS真彩色卫星图像绘制的。次级羽状水的距离和位置取决于流量,沿海水动力和生物活动。\ ud \ ud结论:现场数据和遥感数据的结合提供了有关这些沿海过程在湿润期间的复杂性的信息。季节,使管理人员更全面地了解大堡礁沿海地区的养分丰富程度以及洪水羽流对沿海海洋生态系统的潜在影响。

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