
doi: 10.2172/10107285
A dynamic model of a once-through, helical-coil steam generator is presented. The model simulates the advanced liquid metal reactor superheated cycle steam generator with a four-region, moving-boundary, drift-flux model. The model is described by a set of nonlinear differential equations derived from the fundamental equations of conversation of mass, energy, and momentum. Sample results of steady-state and transient calculations are presented.
Tubes, Subcooling, Superheating, Computing, Hydraulics, Breeding, 21 Specific Nuclear Reactors And Associated Plants, Heat Transfer, 99 General And Miscellaneous//Mathematics, Steam Generators, 620, Mathematics And Computers, Primary Coolant Circuits 210500, Power Reactors, Secondary Coolant Circuits, Lmfbr Type Reactors, And Information Science, Thermodynamics, Flow Models, Nucleate Boiling, Computerized Simulation, 990200
Tubes, Subcooling, Superheating, Computing, Hydraulics, Breeding, 21 Specific Nuclear Reactors And Associated Plants, Heat Transfer, 99 General And Miscellaneous//Mathematics, Steam Generators, 620, Mathematics And Computers, Primary Coolant Circuits 210500, Power Reactors, Secondary Coolant Circuits, Lmfbr Type Reactors, And Information Science, Thermodynamics, Flow Models, Nucleate Boiling, Computerized Simulation, 990200
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