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Buoyancy effects on the supersonic steam jet injection into cocurrently and countercurrently flowing water

机译:浮力作用对超音速蒸汽喷射喷射到CoCristly and逆流流水中的影响

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In this study, the hydrodynamics of the negatively buoyant supersonic steam jet injected into the water has been investigated based on the effects imparted by its density difference with the water in free and confined configurations. In case of both the upward and downward steam's free injection, the steam jet-water flow has shown a clear deviation from the non-dimensionalized Boussinesq character. However, in the confined injection, the steam jet creates recirculation regions contributing to enhancing mixing with the water. The generation of recirculation regions owes to the existence of the low-pressure regions at the nozzle exit, baroclinic torque and buoyantly influenced flows, which is associated with the density difference between the steam and water and the shear between the two phases. The buoyancy affects the flow domains in a nonuniform manner. It affects the fluctuating quantities marginally in the jet-developing region, and in the middle section, however, its effect is dominant in the steam jet's tip region.
机译:在本研究中,已经基于其自由和狭窄的构造,基于其密度差异的效果来研究注入水中的负浮力超声蒸汽喷射的流体动力学。在向上和向下的蒸汽的自由喷射的情况下,蒸汽喷射水流已经显示出与非维度Boussinesq角色的透明偏差。然而,在狭窄的注射中,蒸汽喷射产生有助于增强与水混合的再循环区域。再循环区域的产生归因于喷嘴出口处的低压区域,曲金扭矩和浮气影响流动,其与蒸汽和水之间的密度差和两个相之间的剪切相关联。浮力以不均匀的方式影响流动域。它影响喷射显影区域中略微略微的波动量,然而,在中间部分,其效果在蒸汽喷射尖端区域中占主导地位。

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