首页> 外文会议>Proceedings of the 2002 ASME Joint U.S.-European Fluids Engineering Conference >MULTIPHASE DIGITAL PARTICLE IMAGE VELOCIMETRY IN A DISPERSED, BUBBLY, AXISYMMETRIC JET
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MULTIPHASE DIGITAL PARTICLE IMAGE VELOCIMETRY IN A DISPERSED, BUBBLY, AXISYMMETRIC JET

机译:分散,起泡,轴对称射流中的多相数字粒子图像测速

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摘要

A particle image velocimetry (PIV) technique developed for application to two-phase flows is presented and validated. The technique is capable of simultaneously measuring carrier and bubble phase velocities on a plane. The validation experiments have been conducted in a vertical upwards, two-phase (water-air) bubbly jet flow at a Reynolds numbers of 5,673 and 11,345 and low bubble concentration matching the experiments of Stanley and Nikitopoulos (1998). Comparisons with measurements obtained by Stanley and Nikitopoulos (1998) using Phase Doppler Analysis (PDA) experiments indicate that the agreement between the two techniques is very satisfactory (deviations of the order of 5%) for both single-phase and two-phase jet carrier-flow velocities. In addition, bubble phase velocity measurements obtained from backlit visualizations of the bubbly jet flow using the bubble-tracking method of Fiedler et al. (2001) are successfully compared to those obtained from PIV. The PIV study confirms that bubbles experience a substantial deceleration in the unmixed core of the jet near field and illustrates carrier-phase mean-flow modification consistent with past point-wise measurements.
机译:提出并验证了开发用于两相流的粒子图像测速(PIV)技术。该技术能够同时测量平面上的载流子和气泡相速度。验证实验是在垂直向上的两相(水-空气)气泡喷射流中进行的,雷诺数分别为5,673和11,345,气泡浓度低,与Stanley和Nikitopoulos(1998)的实验相符。与Stanley和Nikitopoulos(1998)使用相多普勒分析(PDA)实验获得的测量结果的比较表明,对于单相和两相喷射器,两种技术之间的一致性都非常令人满意(偏差约为5%)。流速。此外,使用Fiedler等人的气泡跟踪方法从气泡状喷流的背光可视化中获得气泡相速度测量值。 (2001)成功地与从PIV获得的进行了比较。 PIV研究证实,气泡在射流近场的未混合堆芯中经历了明显的减速,并说明了与过去的逐点测量一致的载流相平均流量修正。

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