FIELD: meteorology. SUBSTANCE: atmospheric air is sucked from fog zone through air intake device into condensation chamber. Vapor saturated exhaust gases are delivered via pipeline into condensation chamber, where mixture is cooled, and drops are condensed and cooled. Heated dried air is discharged through outlet branch pipe. EFFECT: increased fog dissipating efficiency and reduced power consumption. 1 dwg
Title | Year | Author | Number |
---|---|---|---|
FOG DISSIPATING APPARATUS | 1999 |
|
RU2174301C2 |
FOG DISSIPATING APPARATUS | 1999 |
|
RU2164368C2 |
FOG DISSIPATING APPARATUS | 1999 |
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RU2164062C2 |
APPARATUS FOR DISSIPATING OF FOG ON ABOVE-WATER OBJECTS | 2001 |
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RU2214086C2 |
APPARATUS FOR FOG DISSIPATION ON ABOVE-WATER OBJECTS | 2001 |
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RU2214085C2 |
METHOD FOR DISSIPATING WARM FOGS ON MAIN HIGHWAYS | 1999 |
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RU2164366C2 |
FOG DISSIPATING APPARATUS | 1998 |
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RU2160001C2 |
DEVICE FOR DISPERSING FOG BY INFRARED RADIATION | 2005 |
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RU2288317C1 |
METHOD FOR ATTACKING HAIL-HAZARDOUS CLOUDS | 1985 |
|
RU1427613C |
METHOD OF DETERMINATION OF MICROSTRUCTURE OF DROPLET CLOUDS AND FOGS | 1989 |
|
SU1780599A3 |
Authors
Dates
2001-03-27—Published
1999-03-04—Filed