Convection‐Permitting Simulations With the E3SM Global Atmosphere Model
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- P. M. Caldwell
- Lawrence Livermore National Lab Livermore CA USA
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- C. R. Terai
- Lawrence Livermore National Lab Livermore CA USA
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- B. Hillman
- Sandia National Lab Albuquerque NM USA
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- N. D. Keen
- Lawrence Berkeley National Lab Berkeley CA USA
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- P. Bogenschutz
- Lawrence Livermore National Lab Livermore CA USA
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- W. Lin
- Brookhaven National Lab Upton NY USA
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- H. Beydoun
- Lawrence Livermore National Lab Livermore CA USA
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- M. Taylor
- Sandia National Lab Albuquerque NM USA
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- L. Bertagna
- Sandia National Lab Albuquerque NM USA
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- A. M. Bradley
- Sandia National Lab Albuquerque NM USA
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- T. C. Clevenger
- Sandia National Lab Albuquerque NM USA
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- A. S. Donahue
- Lawrence Livermore National Lab Livermore CA USA
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- C. Eldred
- Sandia National Lab Albuquerque NM USA
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- J. Foucar
- Sandia National Lab Albuquerque NM USA
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- J.‐C. Golaz
- Lawrence Livermore National Lab Livermore CA USA
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- O. Guba
- Sandia National Lab Albuquerque NM USA
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- R. Jacob
- Argonne National Lab Lemont IL USA
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- J. Johnson
- Cohere Consulting LLC Seattle WA USA
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- J. Krishna
- Argonne National Lab Lemont IL USA
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- W. Liu
- Department of Land, Air, and Water Resources University of California‐Davis Davis CA USA
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- K. Pressel
- Pacific Northwest National Lab Richland WA USA
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- A. G. Salinger
- Sandia National Lab Albuquerque NM USA
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- B. Singh
- Pacific Northwest National Lab Richland WA USA
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- A. Steyer
- Sandia National Lab Albuquerque NM USA
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- P. Ullrich
- Department of Land, Air, and Water Resources University of California‐Davis Davis CA USA
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- D. Wu
- Argonne National Lab Lemont IL USA
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- X. Yuan
- Argonne National Lab Lemont IL USA
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- J. Shpund
- Pacific Northwest National Lab Richland WA USA
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- H.‐Y. Ma
- Lawrence Livermore National Lab Livermore CA USA
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- C. S. Zender
- Department of Earth System Science and Computer Science University of California Irvine CA USA
書誌事項
- 公開日
- 2021-11
- 権利情報
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- http://creativecommons.org/licenses/by/4.0/
- http://creativecommons.org/licenses/by/4.0/
- DOI
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- 10.1029/2021ms002544
- 公開者
- American Geophysical Union (AGU)
この論文をさがす
説明
<jats:title>Abstract</jats:title> <jats:p> This paper describes the first implementation of the Δ <jats:italic>x</jats:italic> = 3.25 km version of the Energy Exascale Earth System Model (E3SM) global atmosphere model and its behavior in a 40‐day prescribed‐sea‐surface‐temperature simulation (January 20 through February 28, 2020). This simulation was performed as part of the DYnamics of the Atmospheric general circulation Modeled On Non‐hydrostatic Domains (DYAMOND) Phase 2 model intercomparison. Effective resolution is found to be <jats:inline-graphic xmlns:xlink="http://www.w3.org/1999/xlink" xlink:href="graphic/jame21480-math-0001.png" xlink:title="urn:x-wiley:19422466:media:jame21480:jame21480-math-0001"/> the horizontal dynamics grid resolution despite using a coarser grid for physical parameterizations. Despite this new model being in an immature and untuned state, moving to 3.25 km grid spacing solves several long‐standing problems with the E3SM model. In particular, Amazon precipitation is much more realistic, the frequency of light and heavy precipitation is improved, agreement between the simulated and observed diurnal cycle of tropical precipitation is excellent, and the vertical structure of tropical convection and coastal stratocumulus look good. In addition, the new model is able to capture the frequency and structure of important weather events (e.g., tropical cyclones, extratropical cyclones including atmospheric rivers, and cold air outbreaks). Interestingly, this model does <jats:italic>not</jats:italic> get rid of the erroneous southern branch of the intertropical convergence zone nor the tendency for strongest convection to occur over the Maritime Continent rather than the West Pacific, both of which are classic climate model biases. Several other problems with the simulation are identified, underscoring the fact that this model is a work in progress. </jats:p>
収録刊行物
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- Journal of Advances in Modeling Earth Systems
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Journal of Advances in Modeling Earth Systems 13 (11), 2021-11
American Geophysical Union (AGU)
