METHOD OF IMPACT ON CHARGED AIRBORNE DISPERSIONS FOR THE WEATHER CONDITIONS MODIFICATION Russian patent published in 2019 - IPC A01G15/00 

Abstract RU 2678782 C1

FIELD: physics; technological processes.

SUBSTANCE: invention relates to the field of technology designed to influence airborne dispersions, and can be used for the weather conditions changing. Charged airborne dispersions with the electric dipole moment influencing method, for the weather conditions modification consists in the fact, that performing the influence by the spiral electromagnetic waves in the medium absorption frequency band by scanning with the antenna with variable angular pattern with electric field strength at the antenna angular pattern maximum of not less than 10 mV/m by the airborne dispersion volume with the movement speed in the range from units to hundreds of km/h depending on the cloud front capacity and the its movement speed, due to the spiral electromagnetic wave angular momentum transition to the airborne dispersion particles external angular momentum with the dispersion neutral component subsequent involvement in motion.

EFFECT: technical result consists in possibility of the weather conditions changing.

1 cl

Similar patents RU2678782C1

Title Year Author Number
METHOD OF INFLUENCE ON ATMOSPHERE 2015
  • Vasileva Marina Alekseevna
  • Zhokhova Nadezhda Vyacheslavovna
  • Ivanov Vladimir Nikolaevich
  • Palej Aleksej Alekseevich
  • Palej Lyudmila Vasilevna
  • Pisanko Yurij Vladimirovich
  • Romanov Nikolaj Petrovich
  • Savchenko Anatolij Viktorovich
  • Tolpygin Leonid Igorevich
RU2595015C1
METHOD OF FOG AND CLOUDS DISPERSION AND PRECIPITATION INDUCING 2017
  • Vasileva Marina Alekseevna
  • Dubtsov Sergej Nikolaevich
  • Erankov Vasilij Georgievich
  • Ivanov Vladimir Nikolaevich
  • Palej Aleksej Alekseevich
  • Palej Lyudmila Vasilevna
  • Pisanko Yurij Vladimirovich
  • Romanov Nikolaj Petrovich
  • Savchenko Anatolij Viktorovich
  • Tolpygin Leonid Igorevich
  • Tertyshnikov Aleksandr Vasilevich
  • Shilin Aleksej Georgievich
RU2647276C1
METHOD OF FOG DISSIPATION 2010
  • Vasil'Eva Marina Alekseevna
  • Ivanov Vladimir Nikolaevich
  • Lapshin Vladimir Borisovich
  • Romanov Nikolaj Petrovich
  • Palej Aleksej Alekseevich
  • Savchenko Anatolij Vasil'Evich
  • Shvyrev Jurij Nikolaevich
RU2422584C1
DEVICE TO HAVE IMPACT ON ATMOSPHERE 2007
  • Lapshin Vladimir Borisovich
  • Palej Aleksej Alekseevich
RU2360068C1
FOG DISPERSAL DEVICE 2013
  • Palej Aleksej Alekseevich
RU2523838C1
METHOD FOR MIST DISPERSION AND DEVICE FOR ITS IMPLEMENTATION 2019
  • Palej Aleksej Alekseevich
RU2734550C1
METHOD FOR ARTIFICIAL REGULATION OF PRECIPITATION ON MONITORED MOUNTAIN OR ADJACENT TO MOUNTAIN TERRITORY 2023
  • Alekseeva Aleksandra Valerevna
  • Vasilev Aleksej Sergeevich
  • Verkin Yurij Vladimirovich
  • Danelyan Bagrat Grigorevich
  • Zinkina Marina Dmitrievna
  • Palej Aleksej Alekseevich
  • Pertsev Nikolaj Nikolaevich
  • Pisanko Yurij Vladimirovich
  • Yankevich Yurij Ivanovich
RU2821371C1
METHOD OF EXPOSURE TO ATMOSPHERE 2016
  • Palej Aleksej Alekseevich
RU2633775C1
METHOD OF MIST DIFFUSION AND DEVICE FOR ITS IMPLEMENTATION 2017
  • Palej Aleksej Alekseevich
RU2661765C1
METHOD, APPARATUS AND SYSTEM FOR LOCAL ACTING UPON METEOROLOGICAL PROCESSES IN EARTH ATMOSPHERE 2006
  • Shakhraman'Jan Mikhail Andranikovich
  • Podrezov Jurij Viktorovich
  • Podrezov Mikhail Jur'Evich
  • Shakhraman'Jan Andrej Mikhailovich
RU2297758C1

RU 2 678 782 C1

Authors

Danilkin Nikolaj Petrovich

Zhuravlev Sergej Vladimirovich

Kotonaeva Nadezhda Gennadevna

Lapshin Vladimir Borisovich

Palej Aleksej Alekseevich

Repin Andrej Yurevich

Dates

2019-02-01Published

2017-12-29Filed