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树高测量×冠层覆盖度估算×
领域林学林学
方法族Process / pipelineProcess / pipeline
起源年份1950s–2000s2000s
提出者Bitterlich and classical forestry mensurationJennings, Brown, Sheil, and colleagues
类型Measurement pipelineMeasurement and estimation pipeline
开创性文献Bitterlich, W. (1984). The Relascope Idea: Relative Measurements in Forestry. Commonwealth Agricultural Bureaux. link ↗Jennings, S. B., Brown, N. D., & Sheil, D. (2000). Assessing Forest Canopies and Understorey Illumination: Methods and Applications. Forest Ecology and Management, 129(1-3), 219–243. link ↗
别名Dendrometric height, Tree elevation measurement, Stand height determinationCanopy closure measurement, Crown cover estimation, Overstory density assessment
相关44
摘要Tree height measurement—determining the vertical distance from ground to tree top—is a cornerstone of forest inventory and biomass estimation. Ranging from classical optical instruments (clinometer, Abney level) to modern laser hypsometers and airborne LiDAR, tree height quantification enables calculation of volume, biomass, site index (productivity), and forest structural characterization essential for management, research, and carbon accounting.Canopy cover, or canopy closure, is the proportion of ground area covered by tree crowns when viewed from above, typically expressed as a percentage. Formalized by Jennings and colleagues in pioneering work on tropical forest structure, canopy cover estimation employs multiple methods—from field-based ocular assessment to sophisticated remote sensing and terrestrial LiDAR—providing essential data on forest structure, light availability, and habitat characteristics relevant to ecology, silviculture, and climate research.
ScholarGate数据集
  1. v1
  2. 4 来源
  3. PUBLISHED
  1. v1
  2. 4 来源
  3. PUBLISHED

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ScholarGate方法对比: Tree Height Measurement · Canopy Cover Estimation. 于 2026-06-18 检索自 https://scholargate.app/zh/compare