Generalized Analysis of Orographically Modified Winds and Precipitation Observed by Airborne Doppler Radar During Phases 1 & 2 of COAST

Abstract

This research seeks to achieve a quantitative, dynamically-based understanding of the perturbed airflow and precipitation fields associated with both quasi-steady onshore flows oceanic frontal systems and steady onshore flows encountering steep coastal terrain. Moreover, by analyzing observations adjacent to topographic barriers of varying geometry and complexity, we aim to identify reproducible phenomena and more general principles governing these interactions. While the capability of mesoscale numerical forecast models to address these problems is still being tested, such models clearly offer great potential for capitalizing upon this improved understanding if critical processes are identified and appropriate model physics/parameterizations are put into place. Emphasis is thus placed upon collection and analysis of specialized observations needed to validate, test and improve mesoscale models. Of particular interest are those processes leading to development of high winds and heavy precipitation over coastal waters, as well as modulation of airflow and precipitation over the adjacent sloped terrain. Data obtained through pilot observational efforts are also evaluated critically to focus hypotheses and improve observational strategies applied in subsequent field programs.

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Document Details

Document Type
Technical Report
Publication Date
Sep 30, 1999
Accession Number
ADA629752

Entities

People

  • Bradley F. Smull
  • Robert A. Houze Jr.

Organizations

  • National Oceanic and Atmospheric Administration

Tags

Communities of Interest

  • Air Platforms

DTIC Thesaurus Topics

  • Airborne
  • Aircrafts
  • Atmospheric Sciences
  • Cold Fronts
  • Doppler Radar
  • Electronic Mail
  • Geometry
  • Meteorology
  • Military Research
  • Observation
  • Precipitation
  • Pressure Gradients
  • Radar
  • Terrain
  • Three Dimensional
  • Wind
  • Wind Velocity

Fields of Study

  • Environmental science

Readers

  • Coastal Oceanography
  • Fluid Dynamics.
  • Systems Analysis and Design