B13C:
Constraining Ecosystem Carbon Uptake and Long-Term Storage Using Models and Data I Posters

Session ID#: 4697

Monday, 15 December 2014: 1:40 PM-6:00 PM
Not an Option (Moscone West)
Chairs:  Ankur R Desai, University of Wisconsin Madison, Atmospheric and Oceanic Sciences, Madison, WI, United States and Michael Dietze, Boston University, Boston, MA, United States
Primary Convener:  David JP Moore, University of Arizona, School of Natural Resources and the Environment, Tucson, AZ, United States
Co-conveners:  Valerie Trouet, University of Arizona, Laboratory of Tree-Ring Research, Tucson, AZ, United States, Ankur R Desai, University of Wisconsin Madison, Atmospheric and Oceanic Sciences, Madison, WI, United States and Michael Dietze, Boston University, Boston, MA, United States
OSPA Liaison:  David JP Moore, University of Arizona, School of Natural Resources and the Environment, Tucson, AZ, United States
Co-Sponsor(s):
  • GC - Global Environmental Change
  • H - Hydrology
  • PP - Paleoceanography and Paleoclimatology
Virtual Option?: No

Abstracts Submitted to this Session:

 
A 100-Year Retrospective Landscape-Level Carbon Budget for the Sooke Lake Watershed, British Columbia: Constraining Estimates of Terrestrial to Aquatic DOC Transfers. (9808)
John A Trofymow, Natural Resources Canada, Canadian Forest Service, Victoria, BC, Canada; University of Victoria, Biology, Victoria, BC, Canada and Byron P. K. Smiley, University of Victoria, Geography, Victoria, BC, Canada
 
Optimizing Parameters of Process-Based Terrestrial Ecosystem Model with Particle Filter (10934)
Akihiko Ito, The University of Tokyo, Graduate School of Agricultural and Life Sciences, Tokyo, Japan
 
Reducing Uncertainty in Terrestrial Biosphere Models with Satellite Observations of Atmospheric CO2: Comparing MsTMIP with GOSAT (13159)
Jessica B Swetish1, Deborah N Huntzinger2, Christopher Schwalm1, Joshua B Fisher3, Junjie Liu4, Anna M Michalak5, Kevin W Bowman6 and MsTMIP Core-Team, MsTMIP Modeling Teams, (1)Northern Arizona University, Flagstaff, AZ, United States, (2)Northern Arizona University, School of Earth Sciences and Environmental Sustainability, Flagstaff, AZ, United States, (3)NASA Jet Propulsion Laboratory, Pasadena, CA, United States, (4)Jet Propulsion Laboratory, California Institute of Technology, Pasadena, United States, (5)Google Research, Mountain View, United States, (6)NASA Jet Propulsion Laboratory, Pasadena, United States
 
Assessments of carbon and water cycling in multiple agricultural ecosystems in the Inland Pacific Northwest using eddy covariance flux measurements and integrated basin-crop model simulation (18995)
Jinshu Chi1, Fidel Maureira1, Sarah Waldo2, Patrick O'Keeffe2, Shelley N Pressley3, Claudio Stockle4 and Brian K Lamb2, (1)Washington State University, Pullman, United States, (2)Washington State University, Pullman, WA, United States, (3)Washington State University, Department of Civil and Environmental Engineering, Pullman, WA, United States, (4)Washington State University, Department of Biological Systems Engineering, Pullman, WA, United States
 
Constraining carbon budgets at a regional scale: fusing forest inventory data with a cohort-based biosphere model (24689)
Toni Viskari1, Michael Dietze1 and Ankur R Desai2, (1)Boston University, Boston, MA, United States, (2)University of Wisconsin Madison, Atmospheric and Oceanic Sciences, Madison, WI, United States
 
Assimilating Multiple Data Types in the Community Land Model (CLM) for Deciduous Forests in North America (24892)
Francesc Montane1, Andrew M Fox2, Timothy J Hoar3, Avelino F Arellano Jr4, Yao Liu5, Gabriel Moreno5, Tristan L Quaife6, Andrew D Richardson7, Valerie Trouet8, M Ross Alexander8, Min Chen9, David Y Hollinger10 and David JP Moore1, (1)University of Arizona, School of Natural Resources and the Environment, Tucson, AZ, United States, (2)NASA Goddard Space Flight Center, Greenbelt, United States, (3)Natl Ctr Atmospheric Res, Boulder, CO, United States, (4)University of Arizona, Department of Hydrology and Atmospheric Sciences, Tucson, United States, (5)University of Arizona, Tucson, AZ, United States, (6)University of Reading, Department of Meteorology, Reading, RG6, United Kingdom, (7)School of Informatics, Computing and Cyber Systems, Northern Arizona University, Flagstaff, AZ, USA; Center for Ecosystem Science and Society, Northern Arizona University, Flagstaff, AZ, USA, Cambridge, United States, (8)University of Arizona, Laboratory of Tree-Ring Research, Tucson, AZ, United States, (9)University of Wisconsin Madison, Department of Forest and Wildlife Ecology, Madison, WI, United States, (10)USDA Forest Service, Durham, NH, United States
 
A method to trace root-respired CO2 using a 13C label (25365)
Sol Cooperdock, University of California Los Angeles, Department of Atmospheric and Oceanic Sciences, Los Angeles, United States, Dan Breecker, University of Texas at Austin, Department of Earth and Planetary Sciences, Austin, United States and Marcy E Litvak, University of New Mexico, Department of Biology, Albuquerque, United States
 
Correspondence Between Long Term Carbon Sequestration and Measurable Variables in a Global Land Surface Model (26520)
Stefan Gerber, University of Florida, Ft Walton Beach, FL, United States and Stuart J Muller, University of Florida, Gainesville, FL, United States
 
Assessing the long-term performance of terrestrial ecosystem models in northeastern United States: linking model structure and output (26544)
Yao Liu1, Jaclyn Hatala Matthes2, David JP Moore3, Michael Dietze4, Avelino F Arellano Jr5, Andria Dawson6, Andrew M Fox7, Simon J Goring8, Jason S McLachlan9, Francesc Montane3, Gabriel Moreno1, Benjamin Poulter10, Tristan L Quaife11, Daniel M Ricciuto12, Kevin M Schaefer13, Joerg Steinkamp14, John W Williams15 and PalEON Team9, (1)University of Arizona, Tucson, AZ, United States, (2)Dartmouth College, Dept. Geography and Grad Program in Ecology & Evolutionary Biology, Hanover, NH, United States, (3)University of Arizona, School of Natural Resources and the Environment, Tucson, AZ, United States, (4)Boston University, Boston, MA, United States, (5)University of Arizona, Department of Hydrology and Atmospheric Sciences, Tucson, United States, (6)University of California Berkeley, Berkeley, United States, (7)NASA Goddard Space Flight Center, Greenbelt, United States, (8)University of Wisconsin, Department of Geography, Center for Climatic Research, and Data Science Institute, Madison, United States, (9)University of Notre Dame, Notre Dame, IN, United States, (10)Spark Climate Solutions, Greenbelt, United States, (11)University of Reading, Department of Meteorology, Reading, RG6, United Kingdom, (12)Oak Ridge National Laboratory, Environmental Sciences Division, Oak Ridge, TN, United States, (13)National Snow and Ice Data Center, Cooperative Institute for Research in the Environmental Sciences, University of Colorado at Boulder, Boulder, Colorado, U.S.A, Boulder, United States, (14)Senckenberg, Frankfurt, Germany, (15)University of Wisconsin-Madison, Department of Geography & Center for Climatic Research, Madison, United States
 
Gross primary production of a semiarid grassland is enhanced by six years of exposure to elevated atmospheric CO2, warming, and irrigation. (26591)
Edmund Ryan1, Kiona Ogle1, Drew Peltier2, David G Williams3 and Elise Pendall4, (1)Arizona State University, Tempe, AZ, United States, (2)Arizona State University, Tempe, United States, (3)University of Wyoming, Botany, Laramie, United States, (4)Western Sydney University, Hawkesbury Institute for the Environment, Penrith, NSW, Australia
 
A Hierarchical Analysis of Tree Growth and Environmental Drivers Across Eastern US Temperate Forests (27452)
Joshua Mantooth and Michael Dietze, Boston University, Boston, MA, United States
 
Sampling Vegetation for Biomass, Productivity, and Leaf Area Index at the Continental Scale (29743)
Courtney L Meier, Katherine D. Jones and Andrea Thorpe, NEON Inc., Boulder, CO, United States
 
Impact of Forest Management on Future Forest Carbon Storage in Alaska Coastal Forests (29880)
Xiaoping Zhou, US Forest Service Portland, Portland, OR, United States and Svetlana A. Kushch, University of Washington, Seattle, WA, United States
 
Can terrestrial biosphere models capture the response of atmospheric CO2 growth rate to ENSO? (30010)
Yuanyuan Fang1,2, Anna M Michalak2,3, Christopher Schwalm4, Deborah N Huntzinger5, Yaxing Wei6, Robert B Cook6, Kevin M Schaefer7, Andrew R Jacobson8, Philippe Ciais9, Joshua Fisher10, Daniel J Hayes11, Maoyi Huang12, Akihiko Ito13, Atul K Jain14, Huimin Lei15, Chaoqun Lu16, Fabienne Maignan17, Jiafu Mao18, Nick Parazoo19, Shushi Peng17, Benjamin Poulter20, Daniel M Ricciuto18, Xiaoying Shi21, Hanqin Tian22, Ning Zeng23, Fang Zhao23, Weile Wang24 and MsTMIP modeling team, (1)Stanford University, Stanford, CA, United States, (2)Carnegie Institution for Science, Department of Global Ecology, Washington, DC, United States, (3)Stanford University, Stanford, United States, (4)Northern Arizona University, Flagstaff, AZ, United States, (5)Northern Arizona University, School of Earth Sciences and Environmental Sustainability, Flagstaff, AZ, United States, (6)Oak Ridge National Laboratory, Oak Ridge, TN, United States, (7)National Snow and Ice Data Center, Cooperative Institute for Research in the Environmental Sciences, University of Colorado at Boulder, Boulder, Colorado, U.S.A, Boulder, United States, (8)University of Colorado at Boulder, CIRES, Boulder, United States, (9)LSCE Laboratoire des Sciences du Climat et de l'Environnement, Gif-Sur-Yvette, France, (10)Jet Propulsion Laboratory, California Institute of Technology, Pasadena, United States, (11)Oak Ridge National Laboratory, Oak Ridge, United States, (12)National Weather Service, National Oceanic and Atmospheric Administration, Office of Science and Technology Integration, Silver Spring, MD, United States, (13)The University of Tokyo, Graduate School of Agricultural and Life Sciences, Tokyo, Japan, (14)University of Illinois at Urbana Champaign, Urbana, United States, (15)Pacific NW Nat'l Lab-Atmos Sci, Richland, WA, United States, (16)Auburn University at Montgomery, Montgomery, AL, United States, (17)CEA Saclay DSM / LSCE, Gif sur Yvette, France, (18)Oak Ridge National Laboratory, Environmental Sciences Division, Oak Ridge, TN, United States, (19)NASA Jet Propulsion Laboratory, California Institute of Technology, Pasadena, CA, United States, (20)Spark Climate Solutions, Greenbelt, United States, (21)Oak Ridge National Laboratory, Environmental Sciences Division and Climate Change Science Institute, Oak Ridge, TN, United States, (22)Auburn University, Auburn, United States, (23)University of Maryland, College Park, MD, United States, (24)CSUMB & NASA/AMES, Seaside, CA, United States
 
The PEcAn Project: Accessible Tools for On-demand Ecosystem Modeling (30186)
Elizabeth Cowdery1, Rob Kooper2, David LeBauer3, Ankur R Desai4, Joshua Mantooth1 and Michael Dietze1, (1)Boston University, Boston, MA, United States, (2)National Center for Super Computing Applications, Urbana, United States, (3)Energy Biosciences Institute, Urbana, IL, United States, (4)University of Wisconsin Madison, Atmospheric and Oceanic Sciences, Madison, WI, United States
 
Estimating variation in rooting depth and belowground biomass at the continental scale (31661)
Jennifer C Everhart1, Courtney L Meier2 and Julia Jamison Spencer1, (1)National Ecological Observatory Network, Boulder, CO, United States, (2)National Ecological Observatory Network, Battelle, Boulder, United States
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