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contributor authorZiegler, Conrad L.
contributor authorBuban, Michael S.
contributor authorRasmussen, Erik N.
date accessioned2017-06-09T17:28:32Z
date available2017-06-09T17:28:32Z
date copyright2007/07/01
date issued2007
identifier issn0027-0644
identifier otherams-85942.pdf
identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4229445
description abstractA new Lagrangian analysis technique is developed to assimilate in situ boundary layer measurements using multi-Doppler-derived wind fields, providing output fields of water vapor mixing ratio, potential temperature, and virtual potential temperature from which the lifting condensation level (LCL) and relative humidity (RH) fields are derived. The Lagrangian analysis employs a continuity principle to bidirectionally distribute observed values of conservative variables with the 3D, evolving boundary layer airflow, followed by temporal and spatial interpolation to an analysis grid. Cloud is inferred at any grid point whose height z > zLCL or equivalently where RH ≥ 100%. Lagrangian analysis of the cumulus field is placed in the context of gridded analyses of visible satellite imagery and photogrammetric cloud-base area analyses. Brief illustrative examples of boundary layer morphology derived with the Lagrangian analysis are presented based on data collected during the International H2O Project (IHOP): 1) a dryline on 22 May 2002; 2) a cold-frontal?dryline ?triple point? intersection on 24 May 2002. The Lagrangian analysis preserves the sharp thermal gradients across the cold front and drylines and reveals the presence of undulations and plumes of water vapor mixing ratio and virtual potential temperature associated with deep penetrative updraft cells and convective roll circulations. Derived cloud fields are consistent with satellite-inferred cloud cover and cloud-base locations.
publisherAmerican Meteorological Society
titleA Lagrangian Objective Analysis Technique for Assimilating In Situ Observations with Multiple-Radar-Derived Airflow
typeJournal Paper
journal volume135
journal issue7
journal titleMonthly Weather Review
identifier doi10.1175/MWR3396.1
journal fristpage2417
journal lastpage2442
treeMonthly Weather Review:;2007:;volume( 135 ):;issue: 007
contenttypeFulltext


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