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Co-current stratified gas-liquid downflow - Influence of the liquid flow field on interfacial structure

机译:并流分层气液向下流动-液体流场对界面结构的影响

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The transition from smooth to wavy stratified flow is studied for various pipe inclination angles with the aim to contribute to the realistic modeling and simulation of long distance two-phase pipe flow. The influence of the liquid flow field on interfacial structure is studied through local axial velocity measurements in the liquid phase in conjunction with other liquid layer characterization experiments. Observations based on fast-video recordings, are used to identify the main patterns of wave evolution. Liquid layer thickness time records are acquired using a parallel wire conductance technique from which mean layer thickness, RMS and power spectra of the fluctuations, as well as wave celerities are calculated. Laser Doppler Anemometry (LDA) is employed to investigate the flow structure in the thin liquid layer both with and without interfacial shear induced by a co-current gas flow. The results reveal the influence of the liquid flow field development on the interfacial structure. In particular, the new data of axial velocity profiles and liquid layer characteristics suggest that the onset of the interfacial waves is strongly affected by the liquid flow structure, possibly by the laminar to turbulent transition within the layer. (c) 2005 Elsevier Ltd. All rights reserved.
机译:研究了不同管子倾角从光滑分层流向波浪形分层流的过渡,旨在为长距离两相管道流的逼真建模和仿真做出贡献。通过液相中局部轴向速度测量以及其他液层表征实验,研究了液流场对界面结构的影响。基于快速视频记录的观测结果被用来识别波浪演化的主要模式。使用平行导线电导技术获取液体层厚度时间记录,从中可以计算出平均层厚度,RMS和波动的功率谱以及波速。激光多普勒风速仪(LDA)用于研究在有或没有由并流气流引起的界面剪切的情况下,薄液层中的流动结构。结果揭示了液体流场发展对界面结构的影响。特别是,新的轴向速度分布和液体层特征数据表明,界面波的产生强烈地受到液体流动结构的影响,可能受到层内层流向湍流过渡的影响。 (c)2005 Elsevier Ltd.保留所有权利。

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