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Velocity measurement in low Reynolds and low Mach number slip flow through a tube

机译:低雷诺数和低马赫数滑流通过管的速度测量

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摘要

This paper presents an experimental procedure and results of velocity measurement in the slip flow regime. The measurements are for nitrogen gas flowing at low pressure (flow Reynolds number: 4-198, Mach number: 0.05-0.12) in a conventional tube of 16 mm internal diameter. The static pressure is measured at the wall of the tube and the stagnation pressure is measured through a Pitot tube, for different mass flow rates. The velocity is estimated by applying stagnation pressure correction proposed by earlier researchers, as the Bernoulli equation cannot be applied in gas flow for Re-P <30. In the slip regime, the stagnation pressure correction is found to be a function of Reynolds number and a weak function of rarefaction. A new correlation for stagnation pressure correction is also proposed. Using this correction, velocity within +/- 8% with reference to the analytical solution is obtained. These results are not previously available and should help in velocity measurement ability of low Reynolds number slip flows. (C) 2014 Elsevier Inc. All rights reserved.
机译:本文介绍了一个实验步骤和滑流状态下的速度测量结果。测量是针对内径为16 mm的传统管中低压(流动雷诺数:4-198,马赫数:0.05-0.12)下流动的氮气进行的。对于不同的质量流量,在管壁处测量静压力,并通过皮托管测量停滞压力。通过使用早期研究人员提出的停滞压力校正来估算速度,因为对于Re-P <30,Bernoulli方程无法应用于气流中。在滑移状态下,停滞压力校正被发现是雷诺数的函数,而稀疏性则是弱函数。还提出了一种用于滞止压力校正的新的相关性。使用此校正,可获得相对于分析溶液为+/- 8%以内的速度。这些结果以前无法获得,应有助于降低雷诺数滑移流的速度。 (C)2014 Elsevier Inc.保留所有权利。

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