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   <subfield code="a">Analysis of the Characteristics of the Retardation and Entrainment of Droplets in a Polydisperse Water Flow by High-Temperature Gases Under Conditions of Intense Phase Transformations</subfield>
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   <subfield code="a">The processes of retardation and subsequent entrainment of droplets of size 50-500 μm of a polydisperse water flow by high-temperature (about 1100 K) gases are investigated by means of the &quot;Particle Image Velocimetry&quot; and &quot;Interferometric Particle Imaging&quot; optical methods, cross-correlation cameras, and pulsed lasers. The initial velocities of motion of water droplets and gases varied within the ranges 0.5-5 m/s and 0.5-2.5 m/s. The limiting relationships between the initial velocities and dimensions of droplets at which the conditions for the entrainment of them by a gas countercurrent flow are implemented established. A dimensionless criterion for prognostic evaluation of the retardation conditions and of the subsequent entrainment of water droplets by high-temperature gases under analyzed conditions is introduced into consideration.</subfield>
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