FIELD: measurement equipment.
SUBSTANCE: atmosphere is irradiated with one sounding laser beam; spatial implementations of atmosphere back scattering signals are recorded depending on distance from the light detection and ranging system; randomly chosen non-homogeneity of a back scattering signal is pointed out on "measurement time - distance from the light detection and ranging system" two-dimensional plane, and transverse and longitudinal components of instantaneous wind speed are determined using the analysis of values of non-homogeneity of the back scattering signal in "measurement time - distance from the light detection and ranging system" two-dimensional plane.
EFFECT: obtaining approximated evaluation of instantaneous speed and direction of wind on horizontal route using only one laser beam, and simplifying measurement data processing.
5 dwg
Title | Year | Author | Number |
---|---|---|---|
METHOD FOR REAL-TIME REMOTE DETERMINATION OF WIND SPEED AND DIRECTION | 2009 |
|
RU2404435C1 |
ADAPTIVE METHOD FOR RAPID REMOTE MEASUREMENT OF WIND SPEED AND DIRECTION | 2011 |
|
RU2465606C1 |
METHOD FOR LASER-BASED REMOTE RAPID DETERMINATION OF WIND SPEED AND DIRECTION | 2010 |
|
RU2465607C2 |
REMOTE CLASSIFICATION METHOD OF OIL IMPURITIES ON WATER SURFACE | 2011 |
|
RU2498275C2 |
REMOTE DETECTION OF PROPANE LEAKS | 2021 |
|
RU2771575C1 |
METHOD OF REMOTE DETECTION OF OIL POLLUTIONS ON EACH SURFACE | 2013 |
|
RU2539784C2 |
METHOD FOR DETERMINING THE VERTICAL PROFILE OF THE INTENSITY OF OPTICAL TURBULENCE IN THE ATMOSPHERE | 2022 |
|
RU2789631C1 |
METHOD AND LIDAR SYSTEM FOR OPERATIONAL DETECTION OF CLEAR-AIR TURBULENCE FROM AN AIRCRAFT | 2023 |
|
RU2798694C1 |
REMOTE METHOD FOR DETERMINING THE INTENSITY OF WIND, TEMPERATURE AND OPTICAL TURBULENCE | 2022 |
|
RU2797644C1 |
LIDAR METHOD FOR DETERMINING THE INTENSITY OF OPTICAL TURBULENCE | 2021 |
|
RU2777294C1 |
Authors
Dates
2013-09-27—Published
2011-12-29—Filed