Radar Detection of Low-Altitude Targets in a Maritime Environment. Volume 2. Meteorological and Radar Data

Abstract

Results from a unique analytical and measurement effort to assess low-altitude short-range radar detection in an evaporation ducting environment validate propagation model predictions of reduced radar detection ranges within the radio horizon. Discrepancies between measured and predicted radar data demand a close examination of both meteorological data and surface layer theory. At ranges near and beyond the horizon, radar detection crucially depends both on the surface layer refractivity profile and on the adjacent mixed layer refractivity profile. An empirical model is described that merges the surface layer with the mixed layer, forming a unified boundary layer. Other discrepancies, which are thought to be caused either by inadequate surface layer modeling (perhaps the moisture stability function) or by inadequate boundary layer meteorological measurements, suggest the need for improvements in surface layer modeling and new techniques to measure the refractivity structure. The combination of direct boundary layer (surface and mixed layer) meteorological measurements, remotely sensed radar measurements, and advanced numerical modeling capability provides valuable insight for a better understanding of the atmospheric boundary layer and its effects on the radar detection of low- altitude short-range targets.

Open PDF

Document Details

Document Type
Technical Report
Publication Date
Nov 01, 1993
Accession Number
ADA274658

Entities

People

  • Kenneth D. Anderson

Organizations

  • Naval Command, Control and Ocean Surveillance Center

Tags

DTIC Thesaurus Topics

  • Abstracts
  • Air Temperature
  • Altitude
  • Atmospheres
  • Boundaries
  • Boundary Layer
  • Detection
  • Electromagnetic Wave Propagation
  • Environment
  • Low Altitude
  • Measurement
  • Meteorological Data
  • Military Research
  • Observation
  • Ocean Surveillance
  • Wind
  • Wind Velocity

Fields of Study

  • Environmental science

Readers

  • Aviation Science / Aeronautics.
  • Ocean-Atmosphere Mesoscale Modeling, Data Assimilation, and Flux Boundary Layers