METHOD FOR DETERMINING THE RANGE OF HEIGHTS OF PROBABLE ICING IN TOWERING CLOUDS Russian patent published in 2022 - IPC G01W1/00 

Abstract RU 2766835 C1

FIELD: meteorology.

SUBSTANCE: invention relates to the field of meteorology and can be used to determine the range of heights of probable icing in clouds formed as a result of convective movements in the atmosphere, in order to ensure aviation safety. Essence: when conducting surface observations, the dew point temperature, air temperature and atmospheric pressure are measured. The vertical profile of the air temperature is restored to the height of the -20°C isotherm location in the clouds of vertical development using an adiabatic model, in which the cloudy air rises with a given step. At the same time, the temperature and height of the cloudy air are calculated at each step of the ascent. The presence of zones of probable icing in the clouds is determined in the layer from the height of the location of the isotherm 0°C to the height of the location of the isotherm -20°C.

EFFECT: expanding the possibilities of use.

1 cl

Similar patents RU2766835C1

Title Year Author Number
METHOD FOR DETERMINING ZONES OF PROBABLE ICING IN CONVECTIVE CLOUDS 2021
  • Neizhmak Andrej Nikolaevich
  • Rastorguev Igor Polikarpovich
RU2766842C1
METHOD OF DETERMINING HEIGHT OF UPPER BOUNDARY OF CUMULONIMBUS CLOUD 2011
  • Neizhmak Andrej Nikolaevich
  • Rastorguev Igor' Polikarpovich
  • Petrosjan Jakov Vladimirovich
  • Marchukov Stanislav Viktorovich
RU2482521C2
METHOD TO DETECT ISOTHERM ALTITUDES IN CONVECTIVE CLOUDS 2013
  • Neizhmak Andrej Nikolaevich
  • Korotaev Aleksandr Aleksandrovich
RU2549535C2
REMOTE METHOD OF DETERMINING SPATIAL ZONES OF PROBABLE ICING OF AIRCRAFT IN REAL TIME 2014
  • Zuev Vladimir Vladimirovich
  • Nakhtigalova Darja Petrovna
  • Shelekhov Aleksandr Petrovich
  • Shelekhova Evgenija Aleksandrovna
RU2580375C1
METHOD OF DETERMINING HEIGHT OF UPPER BOUNDARY OF LARGE CONVECTIVE CLOUD 2011
  • Neizhmak Andrej Nikolaevich
  • Rastorguev Igor' Polikarpovich
  • Vinogradov Nikolaj Petrovich
RU2491582C2
METHOD OF REMOTE DETERMINATION OF CONDITIONS FOR AIRCRAFT ICING BASED ON RADIOMETRY OF REAL TIME 2017
  • Zuev Vladimir Vladimirovich
  • Shelekhov Aleksandr Petrovich
  • Pavlinskij Aleksej Valerevich
  • Shelekhova Evgeniya Aleksandrovna
  • Poplevina Olga Nikolaevna
  • Ilin Gennadij Nikolaevich
  • Stempkovskij Viktor Georgievich
  • Bykov Vladimir Yurevich
  • Shishikin Aleksandr Mikhajlovich
RU2664972C1
METHOD OF ASSESSMENT OF ISOTHERM HEIGHTS IN TURBULENCE CLOUD 2014
  • Neizhmak Andrej Nikolaevich
  • Rastorguev Igor' Polikarpovich
  • Vinogradov Nikolaj Petrovich
RU2566378C2
METHOD FOR REMOTE DETERMINATION OF AIRCRAFT ICING CONDITIONS BASED ON REAL-TIME RADIOMETRY 2020
  • Zuev Vladimir Vladimirovich
  • Pavlinskij Aleksej Valerevich
  • Mordus Darya Petrovna
  • Ilin Gennadij Nikolaevich
  • Bykov Vladimir Yurevich
RU2744495C1
AVIATION METHOD OF SUPPRESSION OF DEVELOPMENT OF POWERFUL CONVECTIVE CLOUDS 2010
  • Pashkevich Mikhail Jur'Evich
  • Berezinskij Nikolaj Aleksandrovich
  • Kvochur Anatolij Nikolaevich
  • Berezinskij Igor' Nikolaevich
RU2436289C2
METHOD OF EXCITING PRECIPITATIONS FROM CLOUDS 2008
  • Abshaev Magomet Takhirovich
  • Bajsiev Khadzhi-Murat Khasanovich
  • Abshaev Ali Magomedovich
RU2369087C1

RU 2 766 835 C1

Authors

Neizhmak Andrej Nikolaevich

Rastorguev Igor Polikarpovich

Krasotskij Gennadij Alekseevich

Dates

2022-03-16Published

2021-04-19Filed