Vegetation Canopies: Physiology, Structure, Function

Session ID#: 280143

Session Description:
Vegetation canopy structure and function determine global rates of photosynthesis and transpiration and, thus, heavily influence the global carbon, water, and energy cycles. Key unknowns remain regarding how plant canopies respond to both temporal and spatial mesoclimatic changes, and the within-canopy microclimate. In this session, we will explore the relative roles of leaf physiology and traits, and canopy phenology, microclimate, and structure, in determining ecosystem states and rates. We are particularly interested in studies that use novel approaches to examine changes in canopy form and function, particularly those that bridge traditional boundaries with new theory, observations, and models. We encourage submissions focused on vegetation canopies at any scale, including near-surface or remote sensing techniques, field and experimental observations. We also encourage empirical and modeling submissions examining canopy processes across scales, from seconds to decades and from the leaf to the globe.
Co-Sponsor(s):
  • A - Atmospheric Sciences
  • GC - Global Environmental Change
  • H - Hydrology
Index Terms:

0414 Biogeochemical cycles, processes, and modeling [BIOGEOSCIENCES]
0426 Biosphere/atmosphere interactions [BIOGEOSCIENCES]
1640 Remote sensing [GLOBAL CHANGE]
1813 Eco-hydrology [HYDROLOGY]
Primary Convener:  Chi Chen, Rutgers University New Brunswick, New Brunswick, NJ, United States
Conveners:  Nicholas G Smith, Texas Tech University, Lubbock, TX, United States, Xiangzhong Luo, Lawrence Berkeley National Lab, Department of Geography, Singapore, Singapore and Liling Chang, Florida State University, Tallahassee, FL, United States
Student/Early Career Conveners:  Chi Chen, Rutgers University, Department of Ecology, Evolution, and Natural Resource, New Brunswick, United States and Liling Chang, Florida State University, Tallahassee, FL, United States
See more of: Biogeosciences