FIELD: electric power engineering.
SUBSTANCE: device for passive removal of excess heat energy from an object comprises a heat exchanger on the facility, an external heat exchanger located in the water body, and pipelines connecting the heat exchangers. Introduced into the device is a sealed evaporative heat exchanger, which is arranged in the cooler pool on the facility, sealed external condenser heat exchanger in the remote cooling water reservoir, note here that heat exchangers are connected by steam-water discharge pipeline and condensate discharge pipeline. Both ends of steam-water mixture pipeline are arranged at bottom of both heat exchangers. Lower end of condensation pipeline is arranged at condenser heat exchanger bottom. Upper end is located in the upper part of the evaporation heat exchanger.
EFFECT: invention allows simplifying the design and improving reliability of the device.
1 cl, 1 dwg
Title | Year | Author | Number |
---|---|---|---|
DEVICE FOR PASSIVE DISPOSAL OF EXCESS THERMAL ENERGY FROM INTERNAL VOLUME OF OBJECT PROTECTIVE SHELL (OPTIONS) | 2018 |
|
RU2682331C1 |
PASSIVE NUCLEAR REACTOR HEAT REMOVAL SYSTEM | 2019 |
|
RU2735692C1 |
UNDERGROUND NUCLEAR HYDRO-ACCUMULATING HEAT ELECTRIC STATION (VERSIONS) | 2017 |
|
RU2643668C1 |
SYSTEM OF PASSIVE HEAT REMOVAL VIA ONCE-THROUGH STEAM GENERATOR AND METHOD FOR FILLING IT | 2022 |
|
RU2798485C1 |
METHOD AND SYSTEM OF BRINGING A NUCLEAR POWER PLANT INTO A SAFE STATE AFTER EXTREME IMPACT | 2018 |
|
RU2697652C1 |
EMERGENCY SYSTEM OF QUICK NEUTRON REACTOR ACTIVE ZONE POWER GENERATION DISCHARGE | 2016 |
|
RU2622408C1 |
SYSTEM OF PASSIVE HEAT REMOVAL THROUGH STEAM GENERATOR AND METHOD FOR FILLING IT | 2022 |
|
RU2798483C1 |
STEAM-AND-GAS TURBO-INSTALLATION | 2007 |
|
RU2362890C2 |
HEAT POWER PLANT OPERATION MODE | 2014 |
|
RU2560507C1 |
HEAT POWER PLANT OPERATION MODE | 2014 |
|
RU2560499C1 |
Authors
Dates
2020-01-17—Published
2018-12-18—Filed