Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
6537720 | Agricultural and Forest Meteorology | 2013 | 12 Pages |
Abstract
Stand transpiration is obtained by taking the sum of 98 single-tree simulations and the corresponding sap flow estimations, which are then compared with the stand-level root water uptake model (RWU model) simulation. Using the RWU model results in a 35% higher simulation of seasonal stand transpiration relative to the XWF model. These findings demonstrate the importance of individual tree dimensions and stand heterogeneity assessments in estimating stand water use. As a consequence of species-specific model parameterization and precise TLS-based stand characterization, the XWF model is applicable to various sites and tree species and is a promising tool for predicting the possible water supply limitations of pure and mixed forest stands.
Related Topics
Physical Sciences and Engineering
Earth and Planetary Sciences
Atmospheric Science
Authors
Rainer Hentschel, Sebastian Bittner, Michael Janott, Christian Biernath, Jutta Holst, Juan Pedro Ferrio, Arthur Gessler, Eckart Priesack,