FIELD: nuclear power engineering. SUBSTANCE: device has core which is designed as set of thermal-emission electric-current generating channels and booster heat elements, which have fuel compositions using UC. In addition device has heat-proof jacket which is made from niobium-based alloy with barriers which prevent or limit interaction of fuel to jacket of booster heat element. EFFECT: increased power, decreased weight and increased service life. 4 cl, 2 dwg
| Title | Year | Author | Number | 
|---|---|---|---|
| THERMAL-EMISSION CONVERTING REACTOR | 1995 | 
 | RU2084044C1 | 
| THERMIONIC NUCLEAR REACTOR-CONVERTER | 1994 | 
 | RU2076386C1 | 
| THERMIONIC NUCLEAR REACTOR-CONVERTER | 1994 | 
 | RU2076385C1 | 
| THERMIONIC CONVERTER REACTOR | 1999 | 
 | RU2165656C1 | 
| THERMIONIC CONVERTER REACTOR | 1994 | 
 | RU2074452C1 | 
| THERMIONIC CONVERSION REACTOR | 1998 | 
 | RU2138096C1 | 
| COOLING SYSTEM OF SPACE POWER PLANT | 1994 | 
 | RU2090466C1 | 
| THERMIONIC CONVERSION REACTOR | 2002 | 
 | RU2230378C2 | 
| METHOD FOR DETERMINING SPEED OF OXIDE FUEL DISCHARGE THROUGH VENTILATION SYSTEM OF FUEL-EMITTER ASSEMBLY OF THERMIONIC ELECTRICITY GENERATING CHANNEL | 1994 | 
 | RU2086033C1 | 
| SPACE NUCLEAR DUAL-MODE POWER PLANT OF TRANSPORT-POWER MODULE | 2014 | 
 | RU2592071C2 | 
Authors
Dates
1997-07-10—Published
1995-02-09—Filed