Turbostar: an ICF reactor using both direct and thermal power conversion. Revision 1
J.H. Pitts
Abstract
Open-access reader
J.H. Pitts
Abstract
Open-access reader
Combining direct and thermal power conversion results in a 52% gross plant efficiency with DT fuel and 68% with advanced DD fuel. We maximize the fraction of fusion-yield energy converted to kinetic energy in a liquid-lithium blanket, and use this energy directly with turbine generators to produce electricity. We use the remainder of the energy to produce electricity in a standard Rankine thermal power conversion cycle.
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Combining direct and thermal power conversion results in a 52% gross plant efficiency with DT fuel and 68% with advanced DD fuel. We maximize the fraction of fusion-yield energy converted to kinetic energy in a liquid-lithium blanket, and use this energy directly with turbine generators to produce electricity. We use the remainder of the energy to produce electricity in a standard Rankine thermal power conversion cycle.
Key concepts: Power (physics), Thermal, Nuclear engineering, Environmental science, Computer science, Physics, Engineering, Thermodynamics