[多旋翼无人机通量观测系统在芦苇湿地二氧化碳通量监测中的应用]。

Q3 Environmental Science
Xiao-Wen Jiang, Guang-Sheng Zhou, Xing-Yang Song
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引用次数: 0

摘要

准确监测生态系统碳通量是科学评价陆地固碳的关键。基于塔的涡动相关系统要覆盖一个地区的多种生态系统类型是一个很大的挑战。引入多旋翼无人机通量观测系统,通过对2023年7月27日至29日在辽河三角洲芦苇湿地进行的多旋翼无人机通量观测系统与塔式涡动相关系统的碳通量观测结果对比,对其观测精度进行了评价。结果表明:多旋翼无人机通量观测系统能较好地监测生态系统碳通量,观测到的碳通量源区与涡动相关系统基本一致;半小时生态系统碳通量与涡旋相关系统观测结果呈显著相关,相关系数为0.889,均方根误差为0.881。研究结果为利用多旋翼无人机通量观测系统监测不同生态系统类型的生态系统-大气通量交换提供了科学依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Application of multi-rotor UAV-borne flux observation system in carbon dioxide flux monitoring of reed wetland].

The accurate monitoring of ecosystem carbon flux is the key to scientific assessment of terrestrial carbon sequestration. There is a big challenge for the tower-based eddy covariance system to cover multiple ecosystem types in a region. We introduced a multi-rotor UAV-borne flux observation system, and evaluated its observational accuracy based on the comparison of carbon flux between the multi-rotor UAV-borne flux observation system and the tower-based eddy covariance system within an experiment conducted in the reed wetland of the Liaohe Delta from July 27 to 29, 2023. The results showed that the multi-rotor UAV-borne flux observation system could monitor ecosystem carbon flux well, and the observed carbon flux source area was basically consistent with the eddy covariance system. The half-hour ecosystem carbon flux was significantly correlated with the observation results of the eddy correlation system, with a correlation coefficient of 0.889 and a root mean square error of 0.881. Our results provided a scientific basis for using the multi-rotor UAV-borne flux observation system to monitor ecosystem-atmosphere flux exchange across different ecosystem types.

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来源期刊
应用生态学报
应用生态学报 Environmental Science-Ecology
CiteScore
2.50
自引率
0.00%
发文量
11393
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