COOLER FOR CLIMATE CONTROL Russian patent published in 2020 - IPC A01G15/00 F28C1/00 E04H5/12 

Abstract RU 2734834 C1

FIELD: physics.

SUBSTANCE: invention relates to atmospheric physics and applied meteorology. Device comprises means to create upward air flow to atmosphere and includes 2 or more injectors and 3–33 helical fan with electric overall performance of the injector at least 50,000 m3/s and the output speed of the moist air not less than 40 m/s. Each injector has housing from inner and outer walls with height of not less than 180 m, diameter of outlet nozzle is not less than 60 m. Along housing height horizontal rows are located windows for regulation of air intake, and screw fans are located inside housing in circumferential direction on load-carrying floors and are equipped with air intake pressure channels. In each injector in walls between walls there installed is vertical wireline pre-stressing system, built-in unit for preparation of air masses, which contains reservoirs for water and water pumps for its injection into injected air. Device is also equipped with means of monitoring the chemical composition of moved air masses.

EFFECT: cooler provides higher efficiency of controlled generation of high-altitude industrial-grade cirrus clouds of Cirrus type due to movement of ecologically clean atmospheric moisture to height of domination of geostrophic winds with simultaneous cooling of earth surface by formation of regional shadow zone above problematic territory.

1 cl, 6 dwg

Similar patents RU2734834C1

Title Year Author Number
ANTI-CYCLONIC CIRCULATION DISTURBANCE METHOD AND APPARATUS 2003
  • Protopopov V.A.
  • Bologurov S.V.
RU2233578C2
NUCLEAR POWER COMPLEX 2012
  • Rogozhkin Vladimir Vladimirovich
  • Moshkov Kirill Vladimirovich
  • Valizer Nikolaj Aleksandrovich
  • Potapov Kirill Anatol'Evich
RU2504417C1
METHOD AND SYSTEM FOR ACTING UPON ATMOSPHERIC CIRCULATION PROCESS 1993
  • Protopopov Vadim Anatol'Evich
  • Ujbo Valerij Iogannesovich
RU2105463C1
SOLAR AEROSTATICAL-MOBILE POWER PLANTS (SAMPP) 2020
  • Matyukhin Vladimir Fedorovich
  • Matyukhina Svetlana Vladimirovna
RU2739220C1
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
SYSTEM FOR AVIATION ECOLOGICAL MONITORING OF ATMOSPHERIC POLLUTION IN CRUISING FLIGHT 2005
  • Dedesh Viktor Trifonovich
  • Leut Anatolij Pavlovich
  • Tenishev Rustehm Khasanovich
  • Popov Vladimir Viktorovich
  • Kalinin Jurij Ivanovich
  • Dankovtsev Nikolaj Aleksandrovich
  • Pavlova Ehl'Vira Georgievna
  • Nevzorov Anatolij Nikolaevich
  • Mogil'Nikov Valerij Pavlovich
  • Vid Vil'Gel'M Imanuilovich
  • Stepanova Svetlana Jur'Evna
  • Frolkina Ljudmila Veniaminovna
  • Zheleznjakova Irina Stanislavovna
RU2304293C1
METHOD AND SYSTEM FOR LONG-RANGE RADIO-ELECTRONIC RECONNAISSANCE BASED ON "TRACK IN ATMOSPHERE" "RADIO-INSIGHT" OBJECT FLYING IN STRATOSPHERE WITH HYPERSONIC SPEED 2017
  • Egorov Oleg Valerevich
  • Smirnov Dmitrij Vladimirovich
RU2689783C2
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
CATAMARAN AEROENERGOSTAT 2020
  • Gubanov Aleksandr Vladimirovich
RU2729306C1
CLOUD ELECTRICITY DISCHARGER 2014
  • Kozlov Vladimir Nikolaevich
  • Korshun Nikolaj Andreevich
RU2555410C1

RU 2 734 834 C1

Authors

Rogozhkin Vladimir Vladimirovich

Kolenov Evgenij Viktorovich

Gorynin Vladimir Igorevich

Shevoldin Aleksej Vyacheslavovich

Dates

2020-10-23Published

2019-12-30Filed