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首页> 外文期刊>Physics of fluids >Nuclear magnetic resonance measurements of fluctuations in air-water two-phase flow: Pipe flow with and without 'disturbing' section
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Nuclear magnetic resonance measurements of fluctuations in air-water two-phase flow: Pipe flow with and without 'disturbing' section

机译:空气-水两相流波动的核磁共振测量:带和不带“扰动”部分的管道流

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In this paper we describe a new NMR sequence designed to measure the liquid mass flux and the liquid momentum flux fluctuations in a two-phase flow, in order to study the action of the flow on transverse mechanical structures. An upward air-water bubbly flow is investigated in a circular pipe under atmospheric pressure and room temperature for two geometrical configurations: with and without a "disturbing" section. Results show that the addition of the "disturbing" section on the experimental set-up led to the appearance of an instability phenomenon that greatly influences the relative intensity of both mass and momentum liquid flux fluctuations. Moreover, the spectral analysis of the former quantities demonstrates that the fluctuations of the liquid space fraction play a major role in the behavior of the liquid momentum flux fluctuations. (C) 2001 American Institute of Physics. [References: 24]
机译:在本文中,我们描述了一种新的NMR序列,该序列设计用于测量两相流中的液体质量通量和液体动量通量波动,以研究流动对横向机械结构的作用。在大气压力和室温下,在圆形管道中研究了两种空气流向上的气泡水流动:两种几何构型:带和不带“扰动”部分。结果表明,在实验装置上增加“扰动”部分会导致出现不稳定现象,这极大地影响了质量和动量液体通量波动的相对强度。此外,前者数量的频谱分析表明,液体空间分数的波动在液体动量通量波动的行为中起主要作用。 (C)2001美国物理研究所。 [参考:24]

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