Simulating stomatal response to cloud immersion for montane cloud forests in the Southern Appalachians
Author:
Funder
Wake Forest University
Publisher
Elsevier BV
Subject
Atmospheric Science,Agronomy and Crop Science,Global and Planetary Change,Forestry
Reference74 articles.
1. Suppression of transpiration due to cloud immersion in a seasonally dry Mexican weeping pine plantation;Alvarado-Barrientos;Agric. For. Meteorol.,2014
2. Leaf surface traits and water storage retention affect photosynthetic responses to leaf surface wetness among wet tropical forest and semiarid savanna plants;Aparecido;Tree Physiol.,2017
3. Discerning the forest from the trees: an essay on scaling canopy stomatal conductance;Baldocchi;Agric. For. Meteorol.,1991
4. A remote sensing-based two-leaf canopy conductance model: global optimization and applications in modeling gross primary productivity and evapotranspiration of crops;Bai;Remote Sens. Environ.,2018
5. Foliar water uptake: processes, pathways, and integration into plant water budgets;Berry;Plant Cell Environ.,2019
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