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Volumn 196, Issue 6, 2011, Pages 3149-3162
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Solid oxide fuel cell/gas turbine trigeneration system for marine applications
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Author keywords
Absorption cooling; Configuration; Gas turbine; Solid oxide fuel cell; Trigeneration
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Indexed keywords
ABSORPTION CHILLERS;
ABSORPTION COOLING;
ABSORPTION HEAT PUMPS;
BASELOAD SYSTEMS;
CONFIGURATION;
CONVENTIONAL SYSTEMS;
COOLING LOAD;
DESICCANT WHEELS;
DOUBLE EFFECT ABSORPTION CHILLERS;
ELECTRIC POWER;
ELECTRICAL POWER;
ENTRY POINT;
GLOBAL CO;
HEATING AND POWER;
HEATING VENTILATION AND AIR CONDITIONING;
HIGH COSTS;
HVAC SYSTEM;
KYOTO AGREEMENTS;
LOW MASS;
MASS FLOW RATE;
OFF-SHORE;
OPTIMUM CONFIGURATIONS;
OUTDOOR AIR;
OVERALL EFFICIENCY;
PERFORMANCE DATA;
SOLID OXIDE;
SYSTEM SIMULATIONS;
THERMAL EFFICIENCY;
THERMODYNAMIC MODEL;
TRI-GENERATION;
TRIGENERATION SYSTEMS;
VARIOUS CONFIGURATION;
WASTE-HEAT RECOVERY;
COOLING;
COOLING SYSTEMS;
DRIERS (MATERIALS);
GAS ABSORPTION;
GAS TURBINES;
HEAT PUMP SYSTEMS;
HEATING;
HUMIDITY CONTROL;
MARINE APPLICATIONS;
MASS TRANSFER;
PIPE FLOW;
PUMPS;
REFRIGERATORS;
SHIPS;
SOLID OXIDE FUEL CELLS (SOFC);
TURBOMACHINERY;
WASTE HEAT;
WASTE HEAT UTILIZATION;
WHEELS;
YACHTS;
AIR CONDITIONING;
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EID: 78751633671
PISSN: 03787753
EISSN: None
Source Type: Journal
DOI: 10.1016/j.jpowsour.2010.11.099 Document Type: Article |
Times cited : (114)
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References (40)
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