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Spatial and temporal variability of inherent and apparent optical properties in western Lake Erie: Implications for water quality remote sensing

机译:西湖伊利固有和明显光学性质的空间和时间变异性:水质遥感的影响

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Lake Erie has experienced dramatic changes in water quality over the past several decades requiring extensive monitoring to assess effectiveness of adaptive management strategies. Remote sensing offers a unique potential to provide synoptic monitoring at daily time scales complementing in-situ sampling activities occurring in Lake Erie. Bio-optical remote sensing algorithms require knowledge about the inherent optical properties (IOPs) of the water for parameterization to produce robust water quality products. This study reports new IOP and apparent optical property (AOP) datasets for western Lake Erie that encapsulate the May-October period for 2015 and 2016 at weekly sampling intervals. Previously reported IOP and AOP observations have been temporally limited and have not assessed statistical differences between IOPs over spatial and temporal gradients. The objective of this study is to assess trends in IOPs over variable spatial and temporal scales. Large spatio-temporal variability in LOPS was observed between 2015 and 2016 likely due to the difference in the extent and duration of mid-summer cyanobacteria blooms. Differences in the seasonal trends of the specific phytoplankton absorption coefficient between 2015 and 2016 suggest differing algal assemblages between the years. Other IOP variables, including chromophoric, dissolved organic matter (CDOM) and beam attenuation spectral slopes, suggest variability is influenced by river discharge and sediment re-suspension. The datasets presented in this study show how these IOPs and AOPs change over a season and between years, and are useful in advancing the applicability and robustness of remote sensing methods to retrieve water quality information in western Lake Erie. (C) 2019 International Association for Great lakes Research. Published by Elsevier B.V. All rights reserved.
机译:伊利湖在过去几十年中经历了水质的巨大变化,需要进行广泛的监测,以评估适应性管理策略的有效性。遥感提供独特的潜力,可以在日常时间秤上提供舞台监测,补充在伊利湖中发生的原位采样活动。生物光学遥感算法需要了解用于参数化的水的固有光学性质(IOPS)以产生强大的水质产品。本研究报告了西湖伊利的新IOP和表观光学特性(AOP)数据集,即在每周采样间隔内封装了2015年5月期间的2015年5月期间。先前报告的IOP和AOP观察已经过时限制,并且在空间和时间梯度之间没有评估IOPS之间的统计差异。本研究的目的是评估IOPS在可变空间和时间尺度上的趋势。 2015年和2016年之间观察到左侧的大量时空变异可能是由于夏季中夏天细菌盛开的程度和持续时间的差异。 2015年至2016年至2016年间特定浮游植物吸收系统季节趋势的差异在多年之间建议不同的藻类汇编。其他IOP变量,包括发色体,溶解的有机物(CDom)和光束衰减光谱斜率,表明可变异性受到河流放电和沉积物重新悬浮的影响。本研究中提供的数据集显示了这些IOPS和AOPS如何在一个季节和几年之间发生变化,并且在推进遥感方法的适用性和稳健性方面有用,以检索西湖伊利水质信息。 (c)2019年大湖泊研究协会。由elsevier b.v出版。保留所有权利。

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