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An MJO simulated by the NICAM at 14- and 7-km resolutions

  • Ping Liu
  • , Masaki Satoh
  • , Bin Wang
  • , Hironori Fudeyasu
  • , Tomoe Nasuno
  • , Tim Li
  • , Hiroaki Miura
  • , Hiroshi Taniguchi
  • , Hirohiko Masunaga
  • , Xiouhua Fu
  • , H. Annamalai
  • Japan Agency for Marine-Earth Science and Technology
  • University of Hawai'i at Mānoa
  • Colorado State University
  • Nagoya University

Research output: Contribution to journalArticlepeer-review

54 Scopus citations

Abstract

This study discloses detailed Madden-Julian oscillation (MJO) characteristics in the two 30-day integrations of the global cloud-system-resolving Nonhydrostatic Icosahedral Atmospheric Model (NICAM) using the all-season real-time multivariate MJO index of Wheeler and Hendon. The model anomaly is derived by excluding the observed climatology because the simulation is sufficiently realistic. Results show that the MJO has a realistic evolution in amplitude pattern, geographical locations, eastward propagation, and baroclinic- and westward-tilted structures. In the central Indian Ocean, convection develops with the low-level easterly wind anomaly then matures where the low-level easterly and westerly anomalies meet. Anomalous moisture tilts slightly with height. In contrast, over the western Pacific, the convection grows with a low-level westerly anomaly. Moisture fluctuations, leading convection in eastward propagation, tilt clearly westward with height. The frictional moisture convergence mechanism operates to maintain the MJO. Such success can be attributed to the explicit representation of the interactions between convection and large-scale circulations. The simulated event, however, grows faster in phases 2 and 3, and peaks with 30% higher amplitude than that observed, although the 7-km version shows slight improvement. The fast-growth phases are induced by the fast-growing low-level convergence in the IndianOcean and the strongly biased ITCZ in the west Pacific when the model undergoes a spinup. The simulated OLR has a substantial bias in the tropics. Possible solutions to the deficiencies are discussed.

Original languageEnglish
Pages (from-to)3254-3268
Number of pages15
JournalMonthly Weather Review
Volume137
Issue number10
DOIs
StatePublished - 2009

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