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수고 측정×모든 지수적 생체량 방정식×
분야임학임학
계열Process / pipelineProcess / pipeline
기원 연도1950s–2000s1990s–2010s
창시자Bitterlich and classical forestry mensurationChave, Niklas, and forest biometricians
유형Measurement pipelineModel development and application pipeline
원전Bitterlich, W. (1984). The Relascope Idea: Relative Measurements in Forestry. Commonwealth Agricultural Bureaux. link ↗Chave, J., Andalo, C., Brown, S., et al. (2005). Tree Allometry and Improved Estimation of Carbon-Stock and Density in Tropical Forests. Oecologia, 145(1), 87–99. DOI ↗
별칭Dendrometric height, Tree elevation measurement, Stand height determinationBiomass allometry, Regression-based biomass prediction, Diameter-to-biomass conversion
관련44
요약Tree 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.Allometric equations predict tree above-ground or total biomass from easily measured tree dimensions—typically diameter at breast height (DBH), height, and wood density. Grounded in biological allometry (scaling laws) and codified by Chave, Niklas, and others, allometric equations are essential tools for rapid biomass assessment without tree harvesting. Used globally for carbon accounting, yield estimation, and ecosystem characterization.
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ScholarGate방법 비교: Tree Height Measurement · Allometric Biomass Equation. 2026-06-18에 다음에서 검색함: https://scholargate.app/ko/compare