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Separated two-phase flow in a nozzle
Authors:WR Martindale  RV Smith
Institution:Dept. of Mechanical Engineering, Montana State University, Bozeman, MT 59717, U.S.A.;Dept. of Mechanical Engineering, Wichita State University, Wichita, KS 67208, U.S.A.
Abstract:This work was performed to extend and further test the method of handling separated two-phase flow by studying each phase separately and, particularly, by placing emphasis on the study of the gas phase with interface transport expressions showing the influence of the liquid phase on it. A one-dimensional flow model for accelerating flows was used in conjunction with experimental data to obtain the pressure distribution and velocity distribution in a converging nozzle for several values of flow quality and nozzle inlet stagnation pressure. The results tend to support the use of the model (which includes the assumption that the gas is in critical flow when the two-phase mixture is in critical flow) and give some insight regarding the nature of the liquid distribution near the nozzle throat.
Keywords:
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