Surface Wind Fields in the Vicinity of Meso-Convective Storms as Derived from Radar Observations: Non-Tornadic Storms.

Abstract

This thesis sought to test the hypothesis that there is a determinable relationship between the true surface wind field and radar derived wind data. Data derived through the NEXRAD transverse wind algorithm were examined to assess the algorithm's general usability and to select operational parameters. The relationship of the derived data to other sources of surface wind data was examined in some detail. An important result of this investigation is the validation of the use of the transverse wind algorithm with data obtained at low elevation angles and short time spans between reflectivity scans. The use of maximum correlation coefficient and reflectivity thresholds are shown to improve the derived from the NEXRAD transverse wind algorithm, and SAM data are compared. The dissimilar natures of the Doppler radial velocity data and the derived wind data are demonstrated. The derived wind is shown to be closely related to the surface wind field as represented by the surface meso-analyses for three cases. A feature (marching vectors), which appears in areas of relatively weak uniform reflectivity, is identified in the derived wind data. The NEXRAD transverse wind algorithm is used for the first time in an area (gust front) where there is confidence that the vectors are derived from motions at their own level and not from some generator level.

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Document Details

Document Type
Technical Report
Publication Date
Dec 01, 1986
Accession Number
ADA173598

Entities

People

  • Joel D. Bonewitz

Organizations

  • Air Force Institute of Technology

Tags

Communities of Interest

  • Energy and Power Technologies
  • Engineered Resilient Systems
  • Sensors

DTIC Thesaurus Topics

  • Air Force
  • Atmospheric Motion
  • Climate Change
  • Computer Graphics
  • Computer Programs
  • Computers
  • Correlation Techniques
  • Detection
  • Doppler Radar
  • Low Elevation
  • Measurement
  • Meteorology
  • Radar
  • Recognition
  • Test And Evaluation
  • Test Facilities
  • Wet Bulb Temperature

Fields of Study

  • Environmental science

Readers

  • Atmospheric Science/Meteorology
  • Fluid Dynamics.