THE STATISTICAL CHARACTERISTICS OF THE RADAR ECHO AS A FUNCTION OF THE DYNAMIC PROCESSES AND MICROSTRUCTURE OF THE METEOROLOGICAL ENTITY (SVIAZ STATISTICHESKIKH KHARAKTERISTIK RADIOLOKATSIONNOGO SIGNALA S DINAMICHESKIMI PROTSESSAMI I MIKROSTRUKTUROI METEOOB' 'EKTA).

Abstract

This article treats the development of a statistical radar method. It contains the entire theory of the method and indicates the possibilities of radar measurement of the wind speed and the microcharacteristics of precipitation. Mathematical formulas are given for using the spectrum of the radar echo to determine the average rate of power dissipation epsilon in turbulent flow, the wind shear, the hydrometeor size distribution, etc. The observational technique and the apparatus are described. Observational data are presented for clouds of various types whose epsilon-values have been calculated. The paper also states the results of wind observations and indicates the feasibility of separating the directional pulsations of the wind from its velocity pulsations. The article contains the results of radar measurement of hydrometeor size distribution, precipitation intensity, etc. The lines of further develpment of statistical radar methods are noted. (Author)

Document Details

Document Type
Technical Report
Publication Date
Aug 01, 1965
Accession Number
AD0621418

Entities

People

  • A. A. Chernikov
  • A. G. Gorelik
  • Iu. V. Melnichuk

Organizations

  • American Meteorological Society

Tags

Communities of Interest

  • Materials and Manufacturing Processes

DTIC Thesaurus Topics

  • Atmospheric Motion
  • Biological Phenomena
  • Directional
  • Dissipation
  • Ecological And Environmental Phenomena
  • Ecological And Environmental Processes
  • Flow
  • Hydrometeors
  • Intensity
  • Measurement
  • Meteorological Phenomena
  • Microstructure
  • Motion
  • Precipitation
  • Turbulent Flow
  • Wind
  • Wind Shear

Fields of Study

  • Environmental science

Readers

  • Atmospheric Science / Meteorology, specifically Wind Wave Turbulence.
  • Information Retrieval
  • Radar Systems Engineering.