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Two Phase Flow Mapping and Transition Under Microgravity Conditions

机译:微重力条件下的两相流映射和过渡

摘要

In this paper, recent microgravity two-phase flow data for air-water, air-water-glycerin, and air- water-Zonyl FSP mixtures are analyzed for transition from bubbly to slug and from slug to annular flow. It is found that Weber number-based maps are inadequate to predict flow-pattern transition, especially over a wide range of liquid flow rates. It is further shown that slug to annular flow transition is dependent on liquid phase Reynolds number at high liquid flow rate. This effect may be attributed to growing importance of liquid phase inertia in the dynamics of the phase flow and distribution. As a result a new form of scaling is introduced to present data using liquid Weber number based on vapor and liquid superficial velocities and Reynolds number based on liquid superficial velocity. This new combination of the dimensionless parameters seem to be more appropriate for the presentation of the microgravity data and provides a better flow pattern prediction and should be considered for evaluation with data obtained in the future. Similarly, the analysis of bubble to slug flow transition indicates a strong dependence on both liquid inertia and turbulence fluctuations which seem to play a significant role on this transition at high values of liquid velocity. A revised mapping of data using a new group of dimensionless parameters show a better and more consistent description of flow transition over a wide range of liquid flow rates. Further evaluation of the proposed flow transition mapping will have to be made after a wider range of microgravity data become available.
机译:在本文中,分析了近期的空气-水,空气-水-甘油和空气-水-Zonyl FSP混合物的微重力两相流数据,以分析气泡和弹丸以及弹丸和环形流之间的过渡。发现基于韦伯数的图不足以预测流量模式转换,尤其是在很宽的液体流量范围内。进一步表明,从塞流向环形流的过渡取决于在高液体流速下的液相雷诺数。这种影响可能归因于液相惯性在相流和分布动力学中的重要性日益提高。结果,引入了一种新的缩放形式,以使用基于蒸气和液体表面速度的液体韦伯数和基于液体表面速度的雷诺数来呈现数据。这种无量纲参数的新组合似乎更适合于微重力数据的显示,并提供了更好的流动模式预测,应该考虑将其与将来获得的数据进行评估。类似地,对气泡到团状流过渡的分析表明,对液体惯性和湍流波动都有很强的依赖性,在高液体速度下,这似乎对这种过渡起着重要作用。使用一组新的无量纲参数对数据进行的修改后的映射显示了在较宽的液体流速范围内对流变的更好更好地描述。在更广泛的微重力数据可用之后,将不得不对拟议的流动过渡图作进一步评估。

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