FIELD: machine building.
SUBSTANCE: developed is condensation plant, which may include substantially flat deflectors with holes for passage of cooling fluid medium and with attached reflectors arranged at acute angle to deflectors. Reflectors have flat surface, and their shape ensures dissipation of cooling fluid medium in form of a thin film under turbulent with close in value sharp angles. Also disclosed is method of fluid condensation, which involves determining travel trajectory of condensed fluid medium; supply of cooling fluid medium onto reflector to create turbulent film of cooling fluid medium on trajectory of condensed fluid medium.
EFFECT: at that one reflectors are oriented to create film cooling fluid in first direction, and other reflectors are oriented to create film cooling fluid in second direction so that trajectory of condensed fluid medium providing flow of condensed fluid in thin films, was oriented in both first and second directions.
20 cl, 8 dwg
Title | Year | Author | Number |
---|---|---|---|
MIXING CONDENSER | 2013 |
|
RU2635752C2 |
HYBRID CONDENSER | 2013 |
|
RU2619970C2 |
PRESSURE AND COOLING REDUCTION SYSTEM FOR NUCLEAR POWER PLANT SHELL | 2015 |
|
RU2696836C1 |
THERMAL POWER PLANT | 2011 |
|
RU2472086C1 |
THERMAL POWER PLANT | 2016 |
|
RU2625081C1 |
THERMAL POWER STATION | 2013 |
|
RU2535188C1 |
THERMAL POWER PLANT | 2011 |
|
RU2469196C1 |
KOCHETOV'S CONDENSING STEAM TURBINE POWER STATION | 2016 |
|
RU2623005C1 |
THERMAL POWER STATION | 2011 |
|
RU2484265C2 |
BLADE AND TURBINE UNIT | 2017 |
|
RU2747533C2 |
Authors
Dates
2016-03-20—Published
2011-09-09—Filed