Primary Convener: Kaighin A Mccoll, Harvard University, Earth and Planetary Sciences and School of Engineering and Applied Sciences, Cambridge, MA, United States
Conveners: Craig R Ferguson, SUNY at Albany, Albany, NY, United States, Yunyan Zhang, Lawrence Livermore Nat Labs, Livermore, CA, United States and Heng Xiao, Pacific Northwest Natl Lab, Richland, WA, United States
Primary Liaison: Kaighin A Mccoll, Harvard University, Earth and Planetary Sciences and School of Engineering and Applied Sciences, Cambridge, MA, United States
Chairs: Kaighin A Mccoll, Harvard University, Earth and Planetary Sciences and School of Engineering and Applied Sciences, Cambridge, MA, United States, Craig R Ferguson, SUNY at Albany, Albany, NY, United States, Yunyan Zhang, Lawrence Livermore Nat Labs, Livermore, CA, United States and Heng Xiao, Pacific Northwest Natl Lab, Richland, WA, United States
OSPA Liaison: Yunyan Zhang, Lawrence Livermore Nat Labs, Livermore, CA, United States
A new pattern of coupling strength in North America using a linear inverse modeling framework of the land-atmosphere system (707451)
Carlos M. Carrillo1, Xiaolu Li1, Marc J. Alessi1, Bijan Seyednasrollah2, Steve E Frolking3, Adam M Young4, Minkyu Moon5, Colin Evans6, Mark A Friedl7, Andrew D Richardson8 and Toby Ault6, (1)Cornell University, Ithaca, NY, United States, (2)Northern Arizona University, School of Informatics, Computing, and Cyber Systems, Flagstaff, AZ, United States, (3)University of New Hampshire, Institute for the Study of Earth, Oceans, and Space, Durham, NH, United States, (4)Northern Arizona University, School of Informatics, Computing and Cyber Systems, Flagstaff, AZ, United States, (5)Boston University, Boston, MA, United States, (6)Cornell University, Department of Earth and Atmospheric Science, Ithaca, NY, United States, (7)Boston University, Earth and Environment, Boston, MA, United States, (8)Harvard University, Cambridge, MA, United States
Assessment of the Soil Moisture-Evaporative Fraction Coupling Strength Using the Cosmic-Ray Neutron Sensing Network (719786)
Minha Choi1, Hoang Hai Nguyen2, Jaehwan Jeong3, Seulchan Lee4, Seungcheol Oh5 and Seongkeun Cho2, (1)Organization Not Listed, Washington, DC, United States, (2)Sungkyunkwan University, Environment and Remote Sensing Laboratory, Department of Water Resources, Graduate School of Water Resources, Suwon, Gyeonggi-do, South Korea, (3)Sungkyunkwan University, Suwon, Gyeonggi-do, Korea, Republic of (South), (4)Sungkyunkwan University, Department of water resources, Suwon, Gyeonggi-do, Korea, Republic of (South), (5)Sungkyunkwan University, Suwon, South Korea
Bare soil evaporation stress determines soil moisture - evapotranspiration coupling strength bias in land surface modeling (701851)
Jianzhi Dong, USDA Beltsville Agricultural Research Center, Beltsville, MD, United States, Paul Dirmeyer, COLA, Fairfax, VA, United States, Fangni Lei, Organization Not Listed, Washington, DC, United States, Martha B. Anderson, USDA ARS, Hydrology and Remote Sensing Laboratory, Beltsville, MD, United States, Thomas Holmes, NASA GSFC, Greenbelt, MD, United States, Christopher Hain, National Integrated Drought Information System, Boulder, CO, United States and Wade Crow, USDA ARS, Beltsville, United States
Estimating Spatial Subgrid-Scale Vertical Velocity Variability from Profiles at a Single Point (682118)
Johannes Mulmenstadt1, Po-Lun Ma1, Jerome D Fast2, Larry K Berg1, Rob K Newsom3 and William I Gustafson Jr4, (1)Pacific Northwest National Laboratory, Richland, WA, United States, (2)Pacific Northwest Natl Lab, Richland, WA, United States, (3)Pacific Northwest National Laboratory, Atmospheric Sciences & Global Change Division, Richland, WA, United States, (4)Pacific Northwest National Lab, Richland, WA, United States
Impact of Hurricane Vegetation Destruction on the Grand Bahama Weather (771261)
Udaysankar S Nair1, Ankur Kumar2,3, Ashlyn Shirey3 and Christopher Hain4, (1)University of Alabama in Huntsville, Department of Atmospheric Science, Huntsville, AL, United States, (2)Purdue University, Department of Agronomy and Department of Earth, Atmospheric and Planetary Sciences, West Lafayette, IN, United States, (3)University of Alabama in Huntsville, Huntsville, AL, United States, (4)NASA Marshall Space Flight Center, Huntsville, AL, United States
Improving the Global Modeling of Soils in JULES and the Unified Model: Updating from UM/HWSD to SoilGrids Soil Properties and from the Brooks & Corey to the Van Genuchten Soil-hydraulics Model (680475)
Patrick C McGuire1, Pier Luigi Vidale2, Martin Best3, David H. Case2, Carolina Duran Rojas4, Imtiaz Dharssi5, Rosalyn S. Hatcher2, Grenville M. S. Lister2, Alberto Martinez-de la Torre6, Carsten Montzka7, Omar Müller8, Valeriu Predoi2, Eddy Robertson9, Markus Todt2, Anne Verhoef10 and Simon Wilson2, (1)University of Reading, Department of Meteorology, and Department of Geography & Environmental Science, and National Centre for Atmospheric Science (NCAS), Reading, RG6, United Kingdom, (2)University of Reading, Department of Meteorology and National Centre for Atmospheric Science (NCAS), Reading, United Kingdom, (3)Met Office, Exeter, United Kingdom, (4)University of Exeter, College of Engineering, Mathematics and Physical Sciences, Exeter, United Kingdom, (5)Bureau of Meteorology, Melbourne, Australia, (6)UK Centre for Ecology and Hydrology, Wallingford, United Kingdom, (7)Forschungszentrum Julich - IBG-3, Julich, Germany, (8)University of Reading, Department of Meteorology and National Centre for Atmospheric Science (NCAS), Reading, RG6, United Kingdom, (9)Met Office, Hadley Center for Climate Change, Exeter, United Kingdom, (10)University of Reading, Department of Geography and Environmental Science, Reading, United Kingdom
Investigating the impact of soil moisture on precipitation and runoff generation over the contiguous United States. (719509)
Marika Koukoula, University of Connecticut, Civil and Environmental Engineering, Groton, CT, United States, Efthymios I Nikolopoulos, Florida Institute of Technology, Mechanical and Civil Engineering, Melbourne, United States, Humberto J Vergara, Cooperative Institute for Mesoscale Meteorological Studies, University of Oklahoma, Norman, OK, United States, Jonathan J Gourley, National Severe Storms Lab, Oklahoma City, OK, United States and Emmanouil Anagnostou, University of Connecticut, Civil and Environmental Engineering, Storrs, CT, United States
Twice-daily Maxima of Summer Precipitation in High-altitude Areas of the Himalayas: Two Contrasting Land Surface Effects (727515)
Hatsuki Fujinami1, Koji Fujita2, Nobuhiro Takahashi1, Tomonori Sato3, Hironari Kanamori1, Sojiro Sunako4 and Akiko Sakai2, (1)Nagoya University, Institute for Space-Earth Environmental Research, Nagoya, Japan, (2)Nagoya University, Graduate School of Environmental Studies, Nagoya University, Nagoya, Japan, (3)Hokkaido University, Faculty of Environmental Earth Science, Sapporo, Japan, (4)National Research Institute for Earth Science and Disaster Resilience, Snow and Ice Research Center, Nagaoka, Niigata, Japan