Ecohydrological assessment of the water balance of the world's highest elevation tropical forest (Polylepis)
Author:
Funder
Universidad de Cuenca
University of New Hampshire
Publisher
Elsevier BV
Reference120 articles.
1. Suppression of transpiration due to cloud immersion in a seasonally dry Mexican weeping pine plantation;Alvarado-Barrientos;Agric. For. Meteorol.,2014
2. Climate defined but not soil-restricted: the distribution of a Neotropical tree through space and time;Alvarez;Plant Soil,2022
3. Dendrochronological analysis and growth patterns of Polylepis reticulata (Rosaceae) in the Ecuadorian Andes;Alvites;IAWA J.,2019
4. Ecohydrological drivers of Neotropical vegetation in montane ecosystems;Aparecido;Ecohydrology,2018
5. Ecohydrological advances and applications in plant-water relations research: a review;Asbjornsen;J. Plant Ecol.,2011
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1. Forest Hydrology in High Tropical Mountains: Contrasting Eco-Hydro-Geomorphological Processes in Temperate Broadleaved and Sub-Alpine-Conifer-Mixed Tropical Montane Forests of Eastern Himalaya, India;2024
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