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首页> 外文期刊>Journal of Fluids and Structures >Two-phase damping and interface surface area in tubes with vertical internal flow
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Two-phase damping and interface surface area in tubes with vertical internal flow

机译:具有垂直内部流动的管中的两相阻尼和界面表面积

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摘要

Two-phase flow is common in the nuclear industry. It is a potential source of vibration in piping systems. In this paper, two-phase damping in the bubbly flow regime is related to the interface surface area and, therefore, to flow configuration. Experiments were performed with a vertical tube clamped at both ends. First, gas bubbles of controlled geometry were simulated with glass spheres let to settle in stagnant water. Second, air was injected in stagnant alcohol to generate a uniform and measurable bubble flow. In both cases, the two-phase damping ratio is correlated to the number of bubbles (or spheres). Two-phase damping is directly related to the interface surface area, based on a spherical bubble model. Further experiments were carried out on tubes with internal two-phase air-water flows. A strong dependence of two-phase damping on flow parameters in the bubbly flow regime is observed. A series of photographs attests to the fact that two-phase damping in bubbly flow increases for a larger number of bubbles, and for smaller bubbles. It is highest immediately prior to the transition from bubbly flow to slug or churn flow regimes. Beyond the transition, damping decreases. It is also shown that two-phase damping increases with the tube diameter.
机译:两相流在核工业中很常见。它是管道系统中潜在的振动源。在本文中,气泡流动状态下的两相阻尼与界面表面积有关,因此与流动形态有关。实验是用垂直管两端夹紧的。首先,用玻璃球模拟可控制几何形状的气泡,使它们沉淀在死水中。其次,将空气注入停滞的酒精中以产生均匀且可测量的气泡流。在两种情况下,两相阻尼比都与气泡(或球)的数量相关。基于球形气泡模型,两相阻尼与界面表面积直接相关。在具有内部两相空气-水流的管上进行了进一步的实验。观察到在气泡流态中,两相阻尼对流动参数的强烈依赖性。一系列照片证明了这样一个事实,即气泡数量越大,气泡越小,气泡流中的两相阻尼会增加。从气泡流过渡到团状流或搅动流态之前,它是最高的。过渡以外,阻尼会降低。还显示出两相阻尼随管径的增加而增加。

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