Estimating Douglas-fir wood production from soil and climate data
- 1 March 1990
- journal article
- research article
- Published by Canadian Science Publishing in Canadian Journal of Forest Research
- Vol. 20 (3), 357-364
- https://doi.org/10.1139/x90-052
Abstract
The relationships between annual tree-ring growth and growing season climate were explored, studying 70-year-old coastal Douglas-fir (Pseudotsuga menziesii (Mirb.) Franco) trees in three sites of different moisture microclimates within productive forest lands. Climate data were augmented via a water balance model to calculate soil moisture deficits. Eleven ring variable components were derived via X-raydensitometry for each ring from two cores for each of 10 trees per site. First principal component scores of each ring variable were linked to climate variables (from 1951 to 1985) via multiple regression. Annual water deficit was found to account for 51% of the annual variations in ring weight. Earlywood width showed little direct climate response, and earlywood density was the least varible ring component. Latewood width was related to annual water deficit (r2 - 0.47). Latewood density showed different relationships to climate variables at the different sites. Percent latewood is increased by spring rainfall and depressed by high August temperatures. The ranges between minimum to maximum and earlywood to latewood densities were comparable for all sites indicating that there is little density variation due to site differences.This publication has 8 references indexed in Scilit:
- Climatic reconstruction from tree rings at BanffCanadian Journal of Forest Research, 1988
- Comparing site quality indices and productivity in ponderosa pine stands of western MontanaCanadian Journal of Forest Research, 1988
- Biogeoclimatic ecosystem classification in British ColumbiaForest Ecology and Management, 1987
- Calculation of solar radiation in mountainous terrainAgricultural and Forest Meteorology, 1987
- Tree-ring studies on conifers along ecological gradients and the potential of single-year analysesCanadian Journal of Forest Research, 1987
- Determination of growing season soil water deficits on a forested slope using water balance analysisCanadian Journal of Forest Research, 1985
- A growing season water balance model applied to two Douglas fir standsWater Resources Research, 1981
- Spatial Patterns of Tree Growth Anomalies in the Pacific NorthwestEcology, 1980