The Experts below are selected from a list of 10878 Experts worldwide ranked by ideXlab platform

Yu. M. Zhidko - One of the best experts on this subject based on the ideXlab platform.

M. V. Ivanchik - One of the best experts on this subject based on the ideXlab platform.

  • Field Study of the Space Uniformity of Meteorological and Wave Parameters in the Coastal Zone. On the Problem of Calibration of a Side-Looking Radar on the Sich-1M Satellite as an Instrument for Measuring Wind Velocity over the Sea
    Physical Oceanography, 2005
    Co-Authors: V. A. Dulov, A. N. Bol'shakov, V. E. Smolov, M. V. Ivanchik
    Abstract:

    We study the problem of subsatellite calibration of a Side-Looking Radar (SLR) of the Sich-1M satellite regarded as an instrument for the evaluation of the velocity of surface wind and discuss the possibility of application of the meteorological and wave parameters measured from the stationary oceanographic platform of the Experimental Department of the Marine Hydrophysical Institute (Ukrainian Academy of Sciences) for their evaluation in the remote regions of the sea. These regions can be observed with the help of the SLR without errors introduced by the appearance of the coast in elements of space resolution. To prove the indicated possibility experimentally, we perform simultaneous measurements of the water and air temperatures, wind velocity, and the characteristics of waves both from the platform and in the water area neighboring with the platform on the side of the sea at distances of up to 4.8 km. The quantitative estimates of the degree of space uniformity of the analyzed parameters are deduced under the conditions of stable inshore wind. A conclusion is made that the platform can be used for subsatellite measurements aimed at the validation and improvement of the algorithm of reconstruction of the velocity of surface wind by using the SLR of the Sich-1M satellite.

O. A. Shikhov - One of the best experts on this subject based on the ideXlab platform.

  • Measurement of the parameters of internal and swell waves by a Side-Looking Radar
    Physical Oceanography, 1995
    Co-Authors: Yu. M. Zhidko, A. G. Ryabinin, O. A. Shikhov
    Abstract:

    A procedure for computing the parameters of internal and swell waves based on the radiopanorama of the sea surface obtained from on board a ship in the Side-Looking regime using the dispersion equation is suggested. Compared with the procedure of ref. 1, it simplifies the methods of measurements. Specific examples of computing the swell and internal wave parameters using radiopanoramas of the sea surface are considered which support the efficiency of the procedure suggested.

V. A. Dulov - One of the best experts on this subject based on the ideXlab platform.

  • Field Study of the Space Uniformity of Meteorological and Wave Parameters in the Coastal Zone. On the Problem of Calibration of a Side-Looking Radar on the Sich-1M Satellite as an Instrument for Measuring Wind Velocity over the Sea
    Physical Oceanography, 2005
    Co-Authors: V. A. Dulov, A. N. Bol'shakov, V. E. Smolov, M. V. Ivanchik
    Abstract:

    We study the problem of subsatellite calibration of a Side-Looking Radar (SLR) of the Sich-1M satellite regarded as an instrument for the evaluation of the velocity of surface wind and discuss the possibility of application of the meteorological and wave parameters measured from the stationary oceanographic platform of the Experimental Department of the Marine Hydrophysical Institute (Ukrainian Academy of Sciences) for their evaluation in the remote regions of the sea. These regions can be observed with the help of the SLR without errors introduced by the appearance of the coast in elements of space resolution. To prove the indicated possibility experimentally, we perform simultaneous measurements of the water and air temperatures, wind velocity, and the characteristics of waves both from the platform and in the water area neighboring with the platform on the side of the sea at distances of up to 4.8 km. The quantitative estimates of the degree of space uniformity of the analyzed parameters are deduced under the conditions of stable inshore wind. A conclusion is made that the platform can be used for subsatellite measurements aimed at the validation and improvement of the algorithm of reconstruction of the velocity of surface wind by using the SLR of the Sich-1M satellite.

V. E. Smolov - One of the best experts on this subject based on the ideXlab platform.

  • Field Study of the Space Uniformity of Meteorological and Wave Parameters in the Coastal Zone. On the Problem of Calibration of a Side-Looking Radar on the Sich-1M Satellite as an Instrument for Measuring Wind Velocity over the Sea
    Physical Oceanography, 2005
    Co-Authors: V. A. Dulov, A. N. Bol'shakov, V. E. Smolov, M. V. Ivanchik
    Abstract:

    We study the problem of subsatellite calibration of a Side-Looking Radar (SLR) of the Sich-1M satellite regarded as an instrument for the evaluation of the velocity of surface wind and discuss the possibility of application of the meteorological and wave parameters measured from the stationary oceanographic platform of the Experimental Department of the Marine Hydrophysical Institute (Ukrainian Academy of Sciences) for their evaluation in the remote regions of the sea. These regions can be observed with the help of the SLR without errors introduced by the appearance of the coast in elements of space resolution. To prove the indicated possibility experimentally, we perform simultaneous measurements of the water and air temperatures, wind velocity, and the characteristics of waves both from the platform and in the water area neighboring with the platform on the side of the sea at distances of up to 4.8 km. The quantitative estimates of the degree of space uniformity of the analyzed parameters are deduced under the conditions of stable inshore wind. A conclusion is made that the platform can be used for subsatellite measurements aimed at the validation and improvement of the algorithm of reconstruction of the velocity of surface wind by using the SLR of the Sich-1M satellite.