H33D:
Global Synthesis of Land Surface Fluxes Under Natural and Human-Altered Watersheds Using the Budyko Framework I


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Session ID#: 62035

Session Description:
Global hydroclimatic conditions have been significantly altered, over the past century, by anthropogenic influences that arise from global climate change and also from local/regional anthropogenic disturbances. The well-known Budyko framework captures the fundamental dimensions of supply and demand imbalance in quantifying the land-surface response and has evolved across the hydrologic sciences to study runoff sensitivity, climate and environmental change, specific ecohydrological processes as well as model and remote sensing validation. The main goal of this session is to unify a broad audience working on various applications of the Budyko framework that enhance our understanding of the spatial variability in land-surface fluxes and anthropogenic influences on hydroclimatology from the local to global scales. We seek submissions that present advances in approaches, analytical development, and applications across scales.
Primary Convener:  Amirhossein Mazrooei, NC State University, Civil Engineering, Raleigh, NC, United States
Conveners:  Dingbao Wang, University of Central Florida, Orlando, United States and Stacey A Archfield, US Geological Survey, Integrated Modeling and Prediction Division, Water Resources Mission Area, Reston, United States
Primary Liaison:  Stacey A Archfield, US Geological Survey, Integrated Modeling and Prediction Division, Water Resources Mission Area, Reston, United States
Chairs:  Amirhossein Mazrooei, NC State University, Civil Engineering, Raleigh, NC, United States and Dingbao Wang, University of Central Florida, Orlando, United States
OSPA Liaison:  Amirhossein Mazrooei, NC State University, Civil Engineering, Raleigh, NC, United States
Index Terms:

Abstracts Submitted to this Session:

Peter A A Troch, University of Arizona, Hydrology and Atmospheric Sciences, Tucson, United States, Antonio Alves Meira Neto, Colorado State University, Department of Civil and Environmental Engineering, Fort Collins, United States, Tirthankar Roy, University of Nebraska Lincoln, Lincoln, NE, United States and Rodrigo Valdés-Pineda, University of Arizona, Hydrology and Atmospheric Sciences, Tucson, AZ, United States
Sankar Arumugam, North Carolina State University Raleigh, Department of Civil, Construction, and Environmental Engineering, Raleigh, NC, United States, Dingbao Graduation Wang, University of Central Florida, Orlando, FL, United States and Naresh Devineni, Department of Civil Engineering, The City College of the City University of New York, and CUNY-CREST, Department of Civil Engineering, New York, United States
Weilin Liao, Sun Yat-Sen University, Guangzhou, China and Dan Li, Boston University, Department of Earth and Environment, Boston, MA, United States
Sangki Lee, University of Idaho, Center for Ecohydraulic Research, Boise, ID, United States, Daniele Tonina, University of Idaho, Center for Ecohydraulics Research, Moscow, ID, United States and Charles H Luce, USDA Forest Service, Rocky Mountain Research Station, Boise, ID, United States
Nathan George Frederick Reaver, US Department of Agriculture, Agricultural Research Service, Soil Drainage Research Unit, Columbus, United States, David A Kaplan, University of Florida, Environmental Engineering Sciences, Ft Walton Beach, FL, United States, Harald Klammler, University of Florida, Gainesville, United States and James W Jawitz, University of Florida, Department of Soil, Water, and Ecosystem Sciences, Ft Walton Beach, FL, United States

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