Supercritical shocks in nozzle flows with nonequilibrium condensation

Abstract
Supercritical normal shock waves in fully choked nozzle flows with nonequilibrium condensation are considered. The continuous subcritical nozzle flow solution is supplemented by the normal shock jump conditions to account for the frozen, gas dynamic, normal shock wave embedded in the droplet growth zone caused by supercritical heat addition from condensation. The location of the normal shock wave is then determined by employing Barschdorff’s [Forsch. Ingenieurwes. 3 7, 146 (1971)] shock fitting technique, which in this work is converted into a noniterative analytical framework.

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