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首页> 外文期刊>International Journal of Multiphase Flow >Adiabatic vertical downward air-water flow pattern map: Influence of inlet device, flow development length and hysteresis effects
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Adiabatic vertical downward air-water flow pattern map: Influence of inlet device, flow development length and hysteresis effects

机译:绝热垂直向下的空气-水流动模式图:入口装置,流动发展长度和滞后效应的影响

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摘要

Flow patterns for adiabatic vertical downward air-water flow in an 8.8. mm diameter channel have been studied. In particular, the influence of the inlet device, the flow history and the development length on the flow pattern have been investigated and assessed. Test results with two inlet devices (highly mixed and unmixed) indicate that the inlet device has a major influence on the flow pattern transitions. Furthermore, the transition boundaries between different flow regimes have been found to depend strongly on the flow's development length, and display hysteresis effects. Not surprisingly, no existing flow pattern map worked well versus the current observations, nor did they agree with one another, thus pointing the need to better characterize the test section inlet geometry, the influence of the test length and the test procedure to obtain genuine flow pattern observations. Presently, it can be concluded that in each flow pattern region there are important differences in the actual flow structures. A future mechanistic flow pattern map should then not only contain flow pattern transition lines but also physical characteristics which describe the flow regime and inlet device effects. This was qualitatively done in this study by superimposing on the flow pattern maps frames which illustrate the characteristics of the flow for two different inlet devices.
机译:8.8绝热垂直向下的空气-水流的流型。毫米直径通道已被研究。特别地,已经研究和评估了入口装置,流动历史和流动长度对流动​​形式的影响。使用两个入口设备(高度混合和未混合)的测试结果表明,入口设备对流型转换有重大影响。此外,已发现不同流态之间的过渡边界在很大程度上取决于流的发展长度,并显示出滞后效应。毫不奇怪,现有的流型图与当前的观测结果都不能很好地工作,也没有彼此一致,因此指出需要更好地表征测试段入口的几何形状,测试长度的影响以及测试程序以获得真实的流量模式观察。当前,可以得出结论,在每个流型区域中,实际的流结构存在重要差异。然后,未来的机械流型图不仅应包含流型过渡线,而且还应包含描述流态和入口装置效果的物理特性。通过在流动模式图框架上叠加来定性地完成此项研究,该框架说明了两个不同入口设备的流动特性。

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