The relationship between gross crown dimensions and sapwood area at crown base in Douglas-fir
- 1 May 1989
- journal article
- research article
- Published by Canadian Science Publishing in Canadian Journal of Forest Research
- Vol. 19 (5) , 557-565
- https://doi.org/10.1139/x89-088
Abstract
Crown dimensions and sapwood area near crown base were measured on 189 Douglas-fir trees in southwestern Oregon. Sapwood areas were interpolated or extrapolated to crown base with a sapwood taper function. Various transformations of crown length and crown radius (as well as crown base stem diameter as a surrogate for crown diameter) were assessed for their ability to predict crown base sapwood area. Regression analyses indicated that no single untransformed variable was a good predictor of sapwood area at crown base, but that combinations representing conic surface area performed quite well. Given the consistently strong relationship between total leaf area and sapwood area at crown base, conic surface area should accurately reflect total leaf area and relative photosynthetic potential of the tree. Gross crown dimensions and crown base sapwood area prove complementary in a forest modeling context, owing to the structural appeal of the former and the physiological appeal of the latter.This publication has 12 references indexed in Scilit:
- Leaf area – sapwood cross-sectional area relationships in repressed stands of lodgepole pineCanadian Journal of Forest Research, 1987
- Incorporating crown ratio into prediction equations for Douglas-fir stem volumeCanadian Journal of Forest Research, 1987
- Stand growth model based on carbon uptake and allocation in individual treesEcological Modelling, 1986
- Estimating photosynthetic rate and annual carbon gain in conifers from specific leaf weight and leaf biomassOecologia, 1986
- Conducting sapwood area, foliage area, and permeability in mature trees of Piceasitchensis and PinuscontortaCanadian Journal of Forest Research, 1984
- Crown structure of a codominant Douglas-firCanadian Journal of Forest Research, 1983
- Application of the pipe model theory to predict canopy leaf areaCanadian Journal of Forest Research, 1982
- The role of Douglas-fir stem sapwood and heartwood in the mechanical and physiological support of crowns and development of stem formCanadian Journal of Forest Research, 1981
- Tree Branch Angle: Maximizing Effective Leaf AreaScience, 1978
- Spacial distribution of photosynthetic capacity and performance in a mountain spruce forest of Northern GermanyOecologia, 1977