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近20年(2002—2020年)渤黄海真光层深度的时空变化遥感分析

Remote sensing of spatial and temporal variations of euphotic zone depth in the Bohai Sea and Yellow Sea during recent 20 years(2002—2020)

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【作者】 吕军; 王胜强; 孙德勇; 聂君伟; 焦红波; 张海龙; 梁涵玮;

【Author】 LYU Jun;WANG Shengqiang;SUN Deyong;NIE Junwei;JIAO Hongbo;ZHANG Hailong;LIANG Hanwei;School of Marine Sciences, Nanjing University of Information Science & Technology;National Marine Data and Information Service;Key Laboratory of Coastal Zone Exploitation and Protection, Ministry of Natural Resources;School of Geographic Sciences, Nanjing University of Information Science & Technology;

【通讯作者】 王胜强;

【机构】 南京信息工程大学海洋科学学院; 国家海洋信息中心; 自然资源部海岸带开发与保护重点实验室; 南京信息工程大学地理科学学院;

【摘要】 真光层深度Zeu(Euphotic Zone Depth)是指光合有效辐照度衰减为水体表面处1%时所对应的深度。它是描述水质特性的重要参数,对浮游植物光合作用,全球碳循环以及海洋环境变化的研究具有重要意义。本文基于多年在渤黄海现场实测数据,建立了针对MODIS (Moderate Resolution Imaging Spectroradiometer)传感器的Zeu遥感估算模型,该模型表现出良好的估算精度。在此基础上,利用2002年—2020年MODIS长时序卫星遥感数据,研究揭示了渤黄海Zeu的时空变化规律,结果显示,渤黄海Zeu具有近岸低、外海高的特点,并且明显表现出夏深冬浅的季节变化特征;长江口北舌状低值区夏季时往东北方向伸展,而在秋初时转向东南;在2002—2020年间,渤海、北黄海以及苏北浅滩的Zeu单调变化,而南黄海、济州岛南及长江口北的Zeu呈现波动式的变化趋势。此外,本文结合多源卫星遥感数据资料分析了Zeu时空变化的驱动因素,结果显示,在渤海、南黄海、北黄海及苏北浅滩,Zeu的时空变异受多种驱动因素的综合影响,其中海表面温度和光合有效辐射对Zeu的变化呈正向驱动,而风速和总悬浮颗粒物浓度呈负向驱动;此外,长江径流量对长江口北Zeu的变化也起着负向驱动作用,两者之间呈现强负相关关系(相关系数R=-0.55)。

【Abstract】 Euphotic zone depth(Zeu) is defined as the depth at which photosynthetic available radiation is 1% of its surface value. This zone is in the upper water column, where marine phytoplankton can effectively photosynthesize, which is essential in air–sea interaction through transfer of either gases or heat, especially with reference to greenhouse gases, such as carbon dioxide. Accordingly, the euphotic zone has an important influence on research into marine primary productivity, phytoplankton biomass, and global carbon cycle. Meanwhile, the spatial and temporal variations of Zeu are closely related to the variability of water color elements. Consequently, Zeu is regarded as an indicator of water clarity, which may even have a certain indicative significance for ecosystems. Thus, marine researchers have prioritized Zeu monitoring.In this study, a remote sensing model was proposed to estimate Zeu from the moderate resolution imaging spectroradiometer(MODIS)satellite data based on in situ data collected from several cruises in the Bohai Sea and Yellow Sea. The designed model uses the logarithm of slope of the remote sensing reflectance(Rrs) between 443 nm and 6S67 nm as an input. In situ data validations indicated that the algorithm shows good performance, with 0.86 R2(coefficient of determination), 4.14 root-mean square error, and 17.2% mean absolute percentage error. The model based on Rrs efficiently performs compared with the current common models.The long term MODIS satellite data(2002—2020) were further used to investigate the spatial and temporal distributions of Zeu in the Bohai Sea and Yellow Sea. Results indicate that:(1) Zeu is low in the coastal regions but high in offshore waters. Meanwhile, clear temporal variability in Zeu was observed, showing that Zeu is typically high in summer but low in winter for most regions.(2) The tongue-shaped structure with a low value in the North of Yangtze River Estuary extends to the northeast in summer and turns to the southeast in early autumn.(3) Zeu monotonously varied in the Bohai Sea, Northern Yellow Sea, and Subei Shoal from 2002 to 2020. In the Bohai Sea and Subei Shoal, Zeu showed a downward trend, while it displayed an upward trend in the Northern Yellow Sea. Meanwhile, Zeu indicated a fluctuating trend in the Southern Yellow Sea, South of Jeju Island, and North of Yangtze River Estuary.Furthermore, the potential driving factors responsible for these spatiotemporal variations were examined based on multi-source satellite data. The results indicate that the spatial and temporal variations of Zeu in the Bohai Sea, Southern Yellow Sea, Northern Yellow Sea, and Subei Shoal are influenced by a variety of driving factors. Zeu is positively driven by the sea surface temperature and photosynthetic active radiation but negatively driven by wind speed and total suspended matter concentration. Specifically, the total suspended matter concentration has a significant effect on the Zeu variations. Meanwhile, Zeu in the North of Yangtze River Estuary is strongly related with the amount of runoff(correlation coefficient R=-0.55).

【基金】 国家自然科学基金(编号:41876203,41506200);自然资源部海岸带开发与保护重点实验室开放基金(编号:2019CZEPK07);中国科学院国家对地观测科学数据中心开放基金(编号:NODAOP2020009);江苏省海洋科技创新项目(编号:JSZRHYKJ202007);南京市留学人员科技创新(编号:R2019LZ05);大学生创新创业训练计划(编号:201910300203);南京信息工程大学本科生优秀毕业设计(论文)支持计划(编号:BSZC2021011)~~
  • 【文献出处】 遥感学报 ,National Remote Sensing Bulletin , 编辑部邮箱 ,2022年12期
  • 【分类号】P714
  • 【下载频次】25
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