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首页> 外文期刊>Oceanographic Literature Review >Satellite-Observed Decreases in Water Turbidity in the Pearl River Estuary: Potential Linkage With Sea-Level Rise
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Satellite-Observed Decreases in Water Turbidity in the Pearl River Estuary: Potential Linkage With Sea-Level Rise

机译:卫星观察到珠江河口水浊度下降:潜在的海平面上升

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摘要

Water turbidity is an important indicator of water quality, which regulates primary production by changing the light field in the water column. Thus, monitoring the spatial and temporal variations in water turbidity is environmentally and biologically important. In this study, nine commonly used spectral index algorithms were tuned using in situ data collected from two field surveys in the Pearl River Estuary of China, and the spectral ratios between the red and green bands (i.e., (Formula presented.) and (Formula presented.)) were selected as the optimal indicator to estimate water turbidity in this region. A long-term environmental data record of water turbidity was established for the Pearl River Estuary by applying the proposed algorithm to MODIS/Aqua data covering the estuary from 2003 to 2019. Water turbidity in the Pearl River Estuary has significantly decreased at a rate of 0.11 nephelometric turbidity units (NTU) per year (R~2 = 0.84, p < 0.01). The decline in water turbidity is linked with sea-level rise in this area. Sea-level rise may cause the longitudinal and lateral landward retreat of estuarine turbidity maxima (ETMs), directly contributing to the decline in water turbidity. Further, the sea-level rise and the decline in water turbidity in the Pearl River Estuary are also two effects resulting from similar processes, such as urbanization. A high degree of correlation was observed between the water turbidity and salinity, which could facilitate promising monitoring of the increasingly severe saltwater intrusions in this region.
机译:水浊度是水质的重要指标,通过改变水柱中的光场来调节初级生产。因此,监测水浊度的空间和时间变化是环境和生物学的重要性。在这项研究中,使用从中国珠江河口的两种田间调查中收集的原位数据进行调整九个常用光谱算法,以及红色和绿色带之间的光谱比率(即(提供的公式)和(公式提出。))被选为估计该区域水浊度的最佳指标。通过将建议的算法从2003年到2019年覆盖河口的Modis / Aqua数据,为珠江河口建立了一种长期的环境数据记录。每年肾小球浊度单位(NTU)(R〜2 = 0.84,P <0.01)。水浊度下降与该地区的海平面升高有关。海平面上升可能导致河口浊度最大值(ETM)的纵向和横向落地撤退,直接导致水浊度下降。此外,海平面上升和珠江河口水浊度下降也是与城市化等类似过程产生的两种效果。在水浊度和盐度之间观察到高度相关性,这可以促进对该区域日益严重的咸水入侵的有望监测。

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  • 来源
    《Oceanographic Literature Review》 |2021年第6期|1386-1386|共1页
  • 作者

    J. Wang; Y. Tong; L. Feng;

  • 作者单位

    School of Environmental Science and Engineering Southern University of Science and Technology Shenzhen China;

    School of Environmental Science and Engineering Southern University of Science and Technology Shenzhen China;

    School of Environmental Science and Engineering Southern University of Science and Technology Shenzhen China;

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