2006Unpublished venueRequires access

Methods of Turbulence Detection by Analyzing Precipitation Behaviour

Valeria Marchuk, Yaroslav Ostrovsky, I. V. Mazura, Felix Yanovsky

Open publisher page 4 citations

Abstract

Recent advances in the radar system design allow to perform Doppler and polarimetric measurements simultaneously. This paper considers behaviour of different Doppler-Polarimetric parameters, such as slope of differential reflectivity, differential Doppler velocity, Doppler spectrum width, and mean Doppler velocity. Possibility of combining both polarimetric and pure Doppler measurements opens new horizons in turbulence and precipitation study. More and more new techniques appear every year. This paper describes some of these methods.

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What this paper is about

Recent advances in the radar system design allow to perform Doppler and polarimetric measurements simultaneously. This paper considers behaviour of different Doppler-Polarimetric parameters, such as slope of differential reflectivity, differential Doppler velocity, Doppler spectrum width, and mean Doppler velocity. Possibility of combining both polarimetric and pure Doppler measurements opens new horizons in turbulence and precipitation study. More and more new techniques appear every year. This paper describes some of these methods.

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OpenAlex reports 4 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Recent advances in the radar system design allow to perform Doppler and polarimetric measurements simultaneously. This paper considers behaviour of different Doppler-Polarimetric parameters, such as slope of differential reflectivity, differential Doppler velocity, Doppler spectrum width, and mean Doppler velocity. Possibility of combining both polarimetric and pure Doppler measurements opens new horizons in turbulence and precipitation study. More and more new techniques appear every year. This paper describes some of these methods.

Key concepts: Doppler effect, Doppler radar, Polarimetry, Turbulence, Radar, Precipitation, Differential (mechanical device), Remote sensing

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