A21B:
Advances in Numerical Methods for Atmosphere and Ocean Modeling III Posters

Session ID#: 5287

Tuesday, 16 December 2014: 8:00 AM-12:20 PM
Poster Hall (Moscone_South)
Chairs:  Paul Aaron Ullrich, Lawrence Livermore National Laboratory, Livermore, United States, Peter Hjort Lauritzen, National Center for Atmospheric Research, Climate and Global Dynamics, CGD, Boulder, United States and James Kent, University of Michigan, Ann Arbor, MI, United States
Primary Convener:  Paul Aaron Ullrich, Lawrence Livermore National Laboratory, Livermore, United States
Co-conveners:  Peter Hjort Lauritzen, National Center for Atmospheric Research, Climate and Global Dynamics, CGD, Boulder, United States and James Kent, University of Michigan, Ann Arbor, MI, United States
Co-Sponsor(s):
  • GC - Global Environmental Change
  • OS - Ocean Sciences
Index Terms:

0545 Modeling [COMPUTATIONAL GEOPHYSICS]
0550 Model verification and validation [COMPUTATIONAL GEOPHYSICS]
1622 Earth system modeling [GLOBAL CHANGE]
1626 Global climate models [GLOBAL CHANGE]
Virtual Option?: No
Swirl Theme: Computational Methods across Scales: Personal to High Performance Platforms

Abstracts Submitted to this Session:

 
Achieving Seventh-Order Amplitude Accuracy in Leapfrog Integrations (6795)
Paul Williams, University of Reading, Reading, United Kingdom
 
Numerical Errors in Coupling Micro- and Macrophysics in the Community Atmosphere Model (8720)
David J Gardner1, Peter V Caldwell1, Jean M Sexton2 and Carol S Woodward1, (1)Lawrence Livermore National Laboratory, Livermore, CA, United States, (2)Southern Methodist University, Dallas, TX, United States
 
Overview of the Diagnostic Cloud Forecast Model at the Air Force Weather Agency (9485)
Edward P Hildebrand, University Corporation for Atmospheric Research, Boulder, CO, United States
 
Diagnosing Energy and Potential Enstrophy Transfers in Dynamical Cores of Gcms (9683)
James Kent, University of Michigan, Ann Arbor, MI, United States, Christiane Jablonowski, University of Michigan, Department of Climate and Space Sciences and Engineering, Ann Arbor, United States and Richard B Rood, University of Michigan Ann Arbor, Climate and Space Sciences and Engineering, Ann Arbor, MI, United States
 
Fast and Accurate Radiative Transfer Calculations Using Principal Component Analysis for Climate Modeling (11646)
Pushkar Kopparla, California Institute of Technology, Pasadena, CA, United States, Vijay Natraj, Jet Propulsion Laboratory, California Institute of Technology, Pasadena, United States, Robert J D Spurr, Rt Solutions Inc., Cambridge, MA, United States, Run-Lie Shia, Caltech, Pasadena, CA, United States and Yuk L Yung, California Institute of Technology, Division of Geological and Planetary Sciences, Pasadena, CA, United States
 
The Construction of 3-d Neutral Density for Arbitrary Data Sets (11983)
Stefan Riha1, Trevor J McDougall1 and Paul M Barker2, (1)University of New South Wales, Sydney, NSW, Australia, (2)University of New South Wales, School of Mathematics and Statistics, Sydney, NSW, Australia
 
Long-period humidity variability in the Arctic atmosphere from upper-air observations (12587)
Alina Agurenko and Anna Khokhlova, All-Russian Research Institute Hydrometeorological Information, Obninsk, Russia
 
Increasing the multiscale/multiphysics capability of CAM-SE using implicit time integration and GPU accelerators (13049)
Rick Archibald, Oak Ridge National Laboratory, Oak Ridge, TN, United States, Katherine J Evans, Oak Ridge National Laboratory, Oak Ridge, United States, Patrick Worley, PHWorley Consulting, Oak Ridge, TN, United States, Matthew R Norman, Oak Ridge National Lab, Oak Ridge, TN, United States, Aaron Lott, Universities Space Research Association, Moffet Field, United States, Andrew Salinger, Sandia National Laboratory, Albuquerque, NM, United States and Carol S Woodward, Lawrence Livermore National Laboratory, Livermore, CA, United States
 
Use of a Regionally-Refined Model for Simulations of North American Climate (13837)
Stephen A Klein1, Larry K Berg2, James Patrick Boyle1, Scott E Giangrande3, Wuyin Lin4, Richard B Neale5, Yun Qian6, Laura Riihimaki7, Qi Tang1 and Mark Taylor8, (1)Lawrence Livermore National Laboratory, Livermore, CA, United States, (2)Pacific Northwest National Laboratory, Richland, WA, United States, (3)Brookhaven National Laboratory, Environmental Science and Technologies Department, Upton, United States, (4)Brookhaven National Laboratory, Upton, NY, United States, (5)NCAR, Boulder, United States, (6)Pacific Northwest National Laboratory, Richland, United States, (7)Pacific Northwest National Lab, Richland, United States, (8)Sandia National Laboratories, Albuquerque, United States
 
Updates in the Global/Regional Integrated Model system (GRIMs)-Double Fourier Series (DFS) Dynamical Core (14415)
Myung-Seo Koo, KIAPS Korea Insititute of Atmospheric Prediction Systems, Seoul, South Korea, Hoon Park, KMA Korea Meteorlogical Administration, Climate Policy Division, Seoul, Korea, Republic of (South), Sang-Hun Park, Yonsei University, Dept. Atmospheric Sciences, Seoul, CO, South Korea and Song-You Hong, University of Colorado/CIRES and NOAA Physical Sciences Laboratory, Boulder, United States
 
Vertical finite-element scheme for the hydrostatic primitive equations on a cubed-sphere (14757)
Ja-Rin Park, KIAPS Korea Insititute of Atmospheric Prediction Systems, Seoul, South Korea and Tae-Hyeong Yi, KIAPS Korea Insititute of Atmospheric Prediction Systems, Seoul, Korea, Republic of (South)
 
Updates of the upwind-biased conservative transport schemes on the icosahedral grids (14843)
Hiroaki Miura, University of Tokyo, Bunkyo-ku, Japan