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Degassing of water-solved gases in thin pipings during fast pressure drops
Authors:S Fleischer  R Hampel
Institution:Institute for Process Technique Process Automation and Measuring Technique University for Applied Sciences Zittau/G?rlitz Theodor-K?rner-Allee 16 D-02763 Zittau, Germany, DE
Abstract: A one-dimensional model is presented, which describes the transient two-phase flow in thin pipes during fast pressure drops and degassing by use of Eulerian and Lagrangian systems. The reduction in dimension is obtained by introduction of a geometry model for bubbly and slug flow regimes. The complete model includes the transient two-phase flow, bubble formation and bubble growth. The flow model predicts rising velocities of bubbles and plugs in arbitrary inclined highly accurate pipes. The mass transfer (diffusion) of the dissolved phase is calculated by the bubble growth model. The quality of the model was examined by simulation of experimental series, whereby water was depressurised from the saturation pressure of the dissolved gas mixture (air), by variation of saturation pressure, pressure gradient and pipe geometry. The results of numerical simulation fit the experimental data well. Received on 17 January 2000
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