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[利用遥感方法估算海洋初级生产力的研究综述。]

[Review of estimation on oceanic primary productivity by using remote sensing methods.].

作者信息

Xu Hong Yun, Zhou Wei Feng, Ji Shi Jian

机构信息

Key Laboratory of East China Sea & Ocean Fishery Resources Exploitation and Utilization, Ministry of Agriculture, Shanghai 200090, China.

Key Laboratory of Fisheries Remote Sensing and Information Technology, Chinese Academy of Fishery Sciences, Shanghai 200090, China.

出版信息

Ying Yong Sheng Tai Xue Bao. 2016 Sep;27(9):3042-3050. doi: 10.13287/j.1001-9332.201609.034.

DOI:10.13287/j.1001-9332.201609.034
PMID:29732871
Abstract

Accuracy estimation of oceanic primary productivity is of great significance in the assessment and management of fisheries resources, marine ecology systems, global change and other fields. The traditional measurement and estimation of oceanic primary productivity has to rely on in situ sample data by vessels. Satellite remote sensing has advantages of providing dynamic and eco-environmental parameters of ocean surface at large scale in real time. Thus, satellite remote sensing has increasingly become an important means for oceanic primary productivity estimation on large spatio-temporal scale. Combining with the development of ocean color sensors, the models to estimate the oceanic primary productivity by satellite remote sensing have been developed that could be mainly summarized as chlorophyll-based, carbon-based and phytoplankton absorption-based approach. The flexibility and complexity of the three kinds of models were presented in the paper. On this basis, the current research status for global estimation of oceanic primary productivity was analyzed and evaluated. In view of these, four research fields needed to be strengthened in further stu-dy: 1) Global oceanic primary productivity estimation should be segmented and studied, 2) to dee-pen the research on absorption coefficient of phytoplankton, 3) to enhance the technology of ocea-nic remote sensing, 4) to improve the in situ measurement of primary productivity.

摘要

海洋初级生产力的准确估算在渔业资源评估与管理、海洋生态系统、全球变化等领域具有重要意义。传统的海洋初级生产力测量与估算不得不依赖船只现场采样数据。卫星遥感具有实时提供大尺度海洋表面动态和生态环境参数的优势。因此,卫星遥感日益成为大时空尺度上海洋初级生产力估算的重要手段。随着海洋水色传感器的发展,已开发出通过卫星遥感估算海洋初级生产力的模型,主要可归纳为基于叶绿素、基于碳和基于浮游植物吸收的方法。文中介绍了这三种模型的灵活性和复杂性。在此基础上,对全球海洋初级生产力估算的当前研究现状进行了分析和评估。鉴于此,在进一步研究中需要加强四个研究领域:1)全球海洋初级生产力估算应进行分段研究,2)深化对浮游植物吸收系数的研究,3)提升海洋遥感技术,4)改进初级生产力的现场测量。

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