A31A:
Advances in Numerical Methods for Atmosphere and Ocean Modeling I Posters

Submit an Abstract to this Session Please know the abstract submission deadline has passed. There are no exceptions to this deadline and no new abstracts can be submitted.
You can still search the program to see your colleague�s abstract submissions as well as the sessions submitted for the 2016 Fall Meeting. The final program will be released in early October.


Session ID#: 13438

Session Description:
Global and regional models are heavily used for weather forecasting, policy decisions and as compact laboratories for improving our scientific understanding of the Earth system. The next generation of numerical methods for these models will respond to demands for scalability on massively parallel systems, increased complexity, and ultimately increased model accuracy.  In the future these advances will be used for answering pressing questions on global/regional scale interactions, extreme events, and regional scale climate change.  This session encompasses the development and application of new numerical methods for solving the equations of fluid motion and novel approaches for coupling the dynamics and physics.
Primary Convener:  David Matthew Hall, University of Colorado at Boulder, Boulder, CO, United States
Conveners:  Christiane Jablonowski, University of Michigan, Department of Climate and Space Sciences and Engineering, Ann Arbor, United States and Peter Hjort Lauritzen, NSF National Center for Atmospheric Research, CGD, Boulder, United States
Chairs:  Christiane Jablonowski, University of Michigan, Department of Climate and Space Sciences and Engineering, Ann Arbor, United States, David Matthew Hall, University of Colorado at Boulder, Boulder, CO, United States and Peter Hjort Lauritzen, NSF National Center for Atmospheric Research, CGD, Boulder, United States
OSPA Liaison:  David Matthew Hall, University of Colorado at Boulder, Boulder, CO, United States
Index Terms:

3336 Numerical approximations and analyses [ATMOSPHERIC PROCESSES]
3337 Global climate models [ATMOSPHERIC PROCESSES]

Abstracts Submitted to this Session:

Christiane Jablonowski, University of Michigan, Department of Climate and Space Sciences and Engineering, Ann Arbor, United States, Colin M. Zarzycki, National Center for Atmospheric Research, Climate & Global Dynamics Laboratory, Boulder, CO, United States, Kevin A Reed, Stony Brook University, Stony Brook, NY, United States, Paul Aaron Ullrich, University of California Davis, Davis, United States, James Kent, University of South Wales, Pontypridd, United Kingdom, Peter Hjort Lauritzen, NSF National Center for Atmospheric Research, CGD, Boulder, United States and Ram D Nair, National Center for Atmospheric Research, Boulder, CO, United States
Kevin A Reed, Stony Brook University, Stony Brook, NY, United States, Christiane Jablonowski, University of Michigan, Department of Climate and Space Sciences and Engineering, Ann Arbor, United States, Colin M. Zarzycki, National Center for Atmospheric Research, Climate & Global Dynamics Laboratory, Boulder, CO, United States, Paul Aaron Ullrich, University of California Davis, Davis, United States, James Kent, University of South Wales, Pontypridd, United Kingdom, Peter Hjort Lauritzen, NSF National Center for Atmospheric Research, CGD, Boulder, United States and Ram D Nair, National Center for Atmospheric Research, Boulder, CO, United States
Colin M. Zarzycki, National Center for Atmospheric Research, Climate & Global Dynamics Laboratory, Boulder, CO, United States, Kevin A Reed, Stony Brook University, Stony Brook, NY, United States, Christiane Jablonowski, University of Michigan, Department of Climate and Space Sciences and Engineering, Ann Arbor, United States, Paul Aaron Ullrich, University of California Davis, Davis, United States, James Kent, University of South Wales, Pontypridd, United Kingdom, Peter Hjort Lauritzen, NSF National Center for Atmospheric Research, CGD, Boulder, United States and Ram D Nair, National Center for Atmospheric Research, Boulder, CO, United States
David Matthew Hall, University of Colorado at Boulder, Boulder, CO, United States
Christopher Eldred, Colorado State University, Fort Collins, CO, United States, Thomas Dubos, Laboratoire de Météorologie Dynamique Palaiseau, Palaiseau Cedex, France and Evaggelos Kritsikis, University of Paris 13, LAGA, Paris, France
Florian Lemarié, Univ. Grenoble Alpes, Inria, Grenoble, France, Hans Burchard, Leibniz Institute for Baltic Sea Research Warnemünde, Rostock, Germany, Knut Klingbeil, Leibniz Institute for Baltic Sea Research Warnemuende (IOW), Rostock, Germany and Laurent Debreu, INRIA Rhône-Alpes, Grenoble, France
Farshid Nazari and Ram D Nair, National Center for Atmospheric Research, Boulder, CO, United States
David J Gardner1, Jorge Eduardo Guerra2, Francois P Hamon3, Daniel R Reynolds4, Paul Aaron Ullrich5 and Carol S Woodward1, (1)Lawrence Livermore National Laboratory, Livermore, CA, United States, (2)University of California Davis, Davis, CA, United States, (3)TotalEnergies EP Research and Technology USA, Houston, United States, (4)Southern Methodist University, Dallas, TX, United States, (5)University of California Davis, Davis, United States
Patrick Callaghan, National Center for Atmospheric Research, Boulder, CO, United States
Song-You Hong, University of Colorado/CIRES and NOAA Physical Sciences Laboratory, Boulder, United States
Hyun NAM, KIAPS Korea Insititute of Atmospheric Prediction Systems, Seoul, Korea, Republic of (South) and Suk-Jin Choi, KIAPS Korea Insititute of Atmospheric Prediction Systems, Seoul, South Korea
Annette Müller and Peter Névir., Free University of Berlin, Berlin, Germany
Hang Lei1,2, Mark Iredell1 and Patrick Tripp1,2, (1)NOAA/NWS/NCEP EMC, College Park, MD, United States, (2)IMSG, College Park, MD, United States
Garrett Wright1, David Paynter2, V. Balaji3 and Raymond Menzel1, (1)Geophysical Fluid Dynamics Laboratory, Princeton, NJ, United States, (2)NOAA/Geophysical Fluid Dynamics Laboratory, Princeton, NJ, United States, (3)Princeton University, Princeton, NJ, United States