• DocumentCode
    3189897
  • Title

    On possibility of radar angel-echoes study with sodar and RASS techniques

  • Author

    Vetrov, V.I. ; Skvortsov, V.S. ; Tanygin, A.A. ; Ulianov, Yu.N.

  • Author_Institution
    Res. & Dev. Firm Lantan, Russia
  • fYear
    1997
  • fDate
    14-16 Oct 1997
  • Firstpage
    46
  • Lastpage
    49
  • Abstract
    The need to use the remote methods of atmosphere sounding to research the features of radiowaves propagation at near-Earth tracks has been formulated in our researches in early 70s. Such conclusion was based on results of experimental research of radiowaves refraction in the atmospheric boundary layer and also on the results of the theoretical development of the radio-meteorological model to calculate the radiowave refraction index in the atmosphere. For using the model it is required to measure the height profiles of temperature and wind speed, and also data on the characteristics of atmospheric turbulence inhomogeneities. In our radiophysical research we have begun to develop methods of remote sounding using acoustic echo-sounders (sodar) and radioacoustic sounding systems (RASS) with the objective of estimating the thermodynamical conditions and turbulence status in the radiowave propagation layer. Some results are considered for utilizing sodar and RASS for the analysis of radar angel-echo in stable state conditions of the atmospheric boundary layer
  • Keywords
    radar applications; RASS; acoustic echo-sounders; atmosphere sounding; atmospheric boundary layer; atmospheric turbulence inhomogeneities; height profiles; radar angel-echoes study; radio-meteorological model; radioacoustic sounding systems; radiowave propagation; radiowave refraction index; radiowaves refraction; remote methods; sodar; stable state conditions; temperature; thermodynamical conditions; wind speed;
  • fLanguage
    English
  • Publisher
    iet
  • Conference_Titel
    Radar 97 (Conf. Publ. No. 449)
  • Conference_Location
    Edinburgh
  • ISSN
    0537-9989
  • Print_ISBN
    0-85296-698-9
  • Type

    conf

  • DOI
    10.1049/cp:19971629
  • Filename
    629090