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首页> 外文期刊>International Journal of Multiphase Flow >Reduced-order description of phase fraction data measured using wire-mesh sensor in two-phase pipe flows
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Reduced-order description of phase fraction data measured using wire-mesh sensor in two-phase pipe flows

机译:使用Wie-Mesh传感器在两相管流中测量的相位分数数据的减少说明

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摘要

Proper Orthogonal Decomposition (POD) technique has been applied to the three dimensional (cross-sectional and time) void fraction data acquired by the application of wire-mesh sensor (WMS) measurement technique. The measurements are performed in a 76.2 mm ID horizontal pipe with air and water as fluids, and with 16 x 16 WMS located at a distance of 17m from the inlet (L/D = 223). In order to perform the detailed analysis using the POD technique, flow patterns covering stratified-wavy, slug, pseudo-slug, and annular low liquid loading are investigated in the paper. Thanks to the time-resolved data obtained using the WMS, classical POD method is applied in spectral space after converting time dependence to frequency. The analysis showed that for all the cases considered, substantial part of the original data can be recovered using a couple POD modes and a few frequency modes. The most dominant two phase flow features are captured at near perfect accuracy. The global flow parameters like space- and time-averaged liquid holdup values are compared between the original and reconstructed fields and the agreement is found to be very good. The phase portraits obtained from the random coefficients associated with different POD mode diagrams correlate with the characteristics of the flow pattern, such that it is possible to observe two distinct orbits in slug and pseudo slug flow cases, and single orbit indicating more random behaviour for the stratified wavy and annular flow cases. (C) 2018 Elsevier Ltd. All rights reserved.
机译:适当的正交分解(POD)技术已被应用于通过应用线网传感器(WMS)测量技术获取的三维(横截面和时间)空隙分数数据。测量在76.2mm ID水平管中进行,其中空气和水作为流体,并且16×16wms位于距入口17m的距离(L / d = 223)。为了使用POD技术进行详细分析,在纸上研究了覆盖分层波状,块,伪夹板和环形低液体载量的流动图案。由于使用WMS获得的时间分辨数据,在将时间依赖于频率之后,在光谱空间中应用经典POD方法。该分析表明,对于所有情况,可以使用几种POD模式和一些频率模式来恢复原始数据的大部分。最占主导地位的两个相流特征在接近完美的准确性上捕获。在原始和重建字段之间比较空间和时间平均液体储存值等全局流量参数,并发现协议非常好。从与不同POD模式图相关联的随机系数获得的相位肖像与流动模式的特性相关,使得可以观察SLUG和伪块流动例中的两个不同轨道,以及单个轨道指示更随随机行为的轨道分层波浪和环形流动箱。 (c)2018年elestvier有限公司保留所有权利。

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