Journal Information

    Online ISSN: 1520-0469
    Print ISSN:    0022-4928
    Frequency:    Monthly
      Previously titled: Journal of Meteorology

      Volume 64, Issue 5 (May 2007)

      Cloud-Resolving Model Simulations of KWAJEX: Model Sensitivities and Comparisons with Satellite and Radar Observations

      Peter N. Blossey, Christopher S. Bretherton, and Jasmine Cetrone

      Department of Atmospheric Sciences, University of Washington, Seattle, Washington

      Marat Kharoutdinov

      Department of Atmospheric Science, Colorado State University, Fort Collins, Colorado





      Abstract

      Three-dimensional cloud-resolving model simulations of a mesoscale region around Kwajalein Island during the Kwajalein Experiment (KWAJEX) are performed. Using observed winds along with surface and large-scale thermodynamic forcings, the model tracks the observed mean thermodynamic soundings without thermodynamic nudging during 52-day simulations spanning the whole experiment time period, 24 July–14 September 1999. Detailed comparisons of the results with cloud and precipitation observations, including radar reflectivities from the Kwajalein ground validation radar and International Satellite Cloud Climatology Project (ISCCP) cloud amounts and radiative fluxes, reveal the biases and sensitivities of the model’s simulated clouds. The amount and optical depth of high cloud are underpredicted by the model during less rainy periods, leading to excessive outgoing longwave radiation (OLR) and insufficient albedo. The simulated radar reflectivities tend to be excessive, especially in the upper troposphere, suggesting that simulated high clouds are precipitating large hydrometeors too efficiently. Occasionally, large-scale advective forcing errors also seem to contribute to upper-level cloud and relative humidity biases. An extensive suite of sensitivity studies to different microphysical and radiative parameterizations is performed, with surprisingly little impact on the results in most cases.

      Keywords: Clouds, Satellite observations, Radar observations, Mesoscale processes, Pacific Ocean

      Received: August 5, 2005; Accepted: July 25, 2006

      Corresponding author address: Dr. P. N. Blossey, University of Washington, Atmospheric Sciences, Box 351640, Seattle, WA 98195-1640. Email:

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