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首页> 外文期刊>ISPRS International Journal of Geo-Information >Optimizing the Use of Secchi Depth as a Proxy for Euphotic Depth in Coastal Waters: An Empirical Study from the Baltic Sea
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Optimizing the Use of Secchi Depth as a Proxy for Euphotic Depth in Coastal Waters: An Empirical Study from the Baltic Sea

机译:优化使用Secchi深度替代沿海水域的富营养深度:来自波罗的海的实证研究

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Potential zone for photosynthesis in natural waters is restricted to a relatively thin illuminated surface water layer. The thickness of this layer is often indirectly estimated by measuring the depth in which 1% of the photosynthetically active radiation entering the water remains. This depth is referred to as the euphotic depth. A coarser way to evaluate the underwater light penetration is to measure the Secchi depth, which is a visual measure of water transparency. The numerical relationship between these two optical parameters, i.e., conversion coefficient m, varies according to the changes in the optical properties of water, especially in transitional coastal waters. The aim of our study is to assess which is the most suitable criterion to base these coefficients on. We tested nine methods, seven of which were locally calibrated with our own in situ data from the optically heterogeneous Baltic Sea archipelago coast of SW Finland. We managed to significantly improve the accuracy of modeling euphotic depths from Secchi depths by using scalable and locally calibrated methods instead of a single fixed coefficient. The best results were achieved by using methods, either continuous functions or series of constants, which are based on water transparency values.
机译:天然水中光合作用的潜在区域仅限于相对薄的受照地表水层。通常通过测量留入水中的1%的光合作用辐射的深度来间接估算该层的厚度。该深度称为共晶深度。评估水下光穿透的一种较粗略的方法是测量Secchi深度,这是水透明度的一种视觉度量。这两个光学参数之间的数值关系,即转换系数m,根据水的光学特性的变化而变化,尤其是在过渡性沿海水域中。我们研究的目的是评估哪种方法最适合作为这些系数的基础。我们测试了9种方法,其中7种是使用我们自己的原位数据进行本地校准的,这些数据来自西南芬兰的光学异质波罗的海群岛海岸。我们设法通过使用可缩放和局部校准的方法而不是单个固定系数,从Secchi深度显着提高了对共融深度进行建模的准确性。通过使用基于水透明度值的连续函数或常数系列方法可获得最佳结果。

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