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An Investigation Into the Viability of Heat Sources for Thermoelectric Power ...
Kevin D. Smith
No preview available - 2009
adiabatically and isentropically analyzed angle appendix approximations barium titanate battery capacitance Carnot efficiency circuit for executing constant charge correction coefficient cubic meter Curie temperature curves for cycle density dielectric constant dielectric material dielectric per cycle discharge fraction discussed efficiency of cycle electric displacement electric energy output Emax energy and entropy equa equation 20a expression ferroelectric figure 15 figure 3(a function heat-transfer equations hence internal energy isothermal process j/cu joules per cubic material whose dielectric mathematical description Maximum cycle Maximum electric field meter per cycle Minimum cycle temperature minimum temperatures nuclear reactor output per unit percent performance polyethylene terephthalate radiator reactor heating realistic value rotation parameter selected silicon control rectifier solved numerically specific weight temperature distribution temperature range temperature scaling thermal efficiency thermal energy thermodynamic analysis thermodynamic cycle thermodynamic process thermoelectrostatic tion Tmax Tmj_n typical unit volume variables voltage volts per meter watts per square