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森林冠层地面叶面积指数光学测量方法研究进展
引用本文:邹杰,阎广建.森林冠层地面叶面积指数光学测量方法研究进展[J].应用生态学报,2010,21(11):2971-2979.
作者姓名:邹杰  阎广建
作者单位:1.福州大学福建省空间信息工程研究中心空间数据挖掘与信息共享教育部重点实验室, 福州 ,350002;;2.北京师范大学地理学与遥感科学学院遥感科学国家重点实验室, 北京 ,100875
基金项目:国家自然科学基金项目,国家重点基础研究发展计划项目前期研究专项,福州大学科技发展基金项目,国家高技术研究发展计划项目
摘    要:作为表征植被冠层结构的核心参数之一,叶面积指数(LAI)控制着植被冠层的多种生物物理和生理过程,如光合、呼吸、蒸腾、碳循环、降水截获、能量交换等.本文首先阐述了森林冠层地面LAI光学测量方法的理论基础和数学模型;其后介绍了目前主流光学测量方法的测量原理及其优缺点;归纳了LAI光学测量方法的主要误差来源(聚集效应、非光合作用组分、观测条件和地形效应),并分析总结了聚集效应、非光合作用组分和地形效应的定量评估现状;最后展望了森林冠层地面LAI光学测量方法的未来发展方向.

关 键 词:光学测量方法  叶面积指数  非光合作用组分  聚集效应  地形效应  森林冠层  

Optical methods for in situ measuring leaf area index of forest canopy:A review
ZOU Jie,YAN Guang-jian.Optical methods for in situ measuring leaf area index of forest canopy:A review[J].Chinese Journal of Applied Ecology,2010,21(11):2971-2979.
Authors:ZOU Jie  YAN Guang-jian
Institution:1.Key Laboratory of Data Mining and Information Sharing, Ministry of Education,  Spatial Information Research Center of Fujian Province, Fuzhou University, Fuzhou 350002, China|2State Key Laboratory of Remote Sensing Science, School of Geography, Beijing Normal University, Beijing 100875, China
Abstract:Leaf area index (LAI) is an important parameter of canopy structure, because it relates to many biophysical and physiological processes of canopy, including photosynthesis, respiration, transpiration, carbon cycling, precipitation interception, and energy exchange, etc. This paper introduced the theoretical bases and mathematical models of optical methods for forest canopy LAI determination, introduced the principles, merits, and drawbacks of currently used optical methods, and summed up the main sources of the errors in LAI optical measurement, including clumping effect, non-photosynthesis components, measurement conditions, and terrain effect. The developing status of quantitatively evaluating clumping effect, non-photosynthesis components, and terrain effect was analyzed, and the promising development directions of optical methods for measuring forest canopy LAI were discussed.
Keywords:optical methods  leaf area index  non-photosynthesis components  clumping effects  terrain effect  forest canopy  
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