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Power Density and Electrical Efficiency in Closed Cycle MHD Generator with Fully Ionized Seed
Abstract:Effects of a reduced seed concentration on performances of a nonequilibrium MHD generator are investigated by calculating power densities and electrical efficiencies for both Faraday and Hall generators.

It is shown that high electrical efficiencies and high power densities are obtained simultaneously by suppressing the ionization instability with reduced seed fractions (10?4 ~10?5) when values of the effective electrical conductivity and the effective Hall parameter recover to above 50% of their ideal ones. Results also indicate that argon is more suitable for a working fluid than helium in the case of a reduced seed concentration.
Keywords:MHD generators  reduced seed concentration  power density  electrical efficiency  loading factor  Faraday and Hall generators  ionization instability  Hall effect  electrical conductivity  performance
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