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      Thermal-Hydraulics of Water Cooled Nuclear Reactors 

      Special models for nuclear thermal hydraulics

      edited_book
      Elsevier

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          Sound speed in liquid-gas mixtures: Water-air and water-steam

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            Maximum Flow Rate of a Single Component, Two-Phase Mixture

            A theoretical model is developed for predicting the maximum flow rate of a single component, two-phase mixture. It is based upon annular flow, uniform linear velocities of each phase, and equilibrium between liquid and vapor. Flow rate is maximized with respect to local slip ratio and static pressure for known stagnation conditions. Graphs are presented giving maximum steam/water flow rates for: local static pressures between 25 and 3,000 psia, with local qualities from 0.01 to 1.00; local stagnation pressures and enthalpies which cover the range of saturation states.
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              The Two-Phase Critical Flow of One-Component Mixtures in Nozzles, Orifices, and Short Tubes

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                Author and book information

                Book Chapter
                2017
                : 595-638
                10.1016/B978-0-08-100662-7.00010-5
                cec07831-0820-43f3-b49e-d8e8b4484840
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