|
Volumn , Issue , 2008, Pages
|
The heat rejection system of the ITER reactor
|
Author keywords
[No Author keywords available]
|
Indexed keywords
AIR COOLER;
AUXILIARY SYSTEMS;
BLOW DOWN;
CAPITAL AND OPERATING COSTS;
CHILLED WATER SYSTEMS;
CLOSED LOOPS;
COMMERCIAL PRODUCTIONS;
COMPETITIVE COSTS;
COOLING WATER SYSTEMS;
CRITICAL ISSUES;
CRYOGENIC SYSTEM;
DESIGN MODIFICATIONS;
DEUTERIUM-TRITIUM PLASMAS;
DIVERTORS;
DUTY CYCLES;
ELECTRICAL POWER NETWORKS;
HEAT LOADS;
HEAT REJECTION SYSTEMS;
HEAT TRANSFER SYSTEMS;
HIGH TEMPERATURE;
ITER DESIGN;
KNOW-HOW;
LEADING EDGE;
MAGNETIC CONFINEMENT;
NUCLEAR FISSION POWER;
NUCLEAR FUSION;
NUCLEAR SYSTEMS;
OPEN LOOPS;
PEAK VALUES;
PIPING LAYOUT;
PLASMA-FACING COMPONENTS;
POWER AMPLIFICATION;
STEADY STATE;
TECHNOLOGICAL FEASIBILITY;
VACUUM VESSEL;
WATER CHEMISTRY CONTROL;
COOLING;
DEUTERIUM;
ENERGY CONVERSION;
HEAT SINKS;
MAGNETOPLASMA;
NUCLEAR ENERGY;
OPERATING COSTS;
OPTIMIZATION;
TECHNOLOGY TRANSFER;
TERNARY SYSTEMS;
TOKAMAK DEVICES;
TRITIUM;
VACUUM;
WATER COOLING SYSTEMS;
WATERWORKS;
EXPERIMENTAL REACTORS;
|
EID: 79952299827
PISSN: None
EISSN: None
Source Type: Conference Proceeding
DOI: None Document Type: Conference Paper |
Times cited : (2)
|
References (0)
|