Abstract

We model a single-plate thermoacoustic system under the action of a transverse magnetic force. Simplified momentum and energy equations are solved, in the frequency domain, in order to obtain the expressions of the fluctuating velocity ( u 1) and temperature ( T 1). Time averaged and space averaged heat fluxes and work fluxes are calculated. The effects of the drive ratio (DR), Hartmann number ( Ha δ ), temperature gradient (∇ T m), and frequency ( f) on the heat flux, work flux, and operating conditions are discussed and graphically presented.

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