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首页> 外文期刊>Chemical Engineering Science >Positron emission particle tracking (PEPT) compared to particle image velocimetry (PIV) for studying the flow generated by a pitched-blade turbine in single phase and multi-phase systems
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Positron emission particle tracking (PEPT) compared to particle image velocimetry (PIV) for studying the flow generated by a pitched-blade turbine in single phase and multi-phase systems

机译:正电子发射粒子跟踪(PEPT)与粒子图像测速(PIV)的比较,用于研究单相和多相系统中的桨叶式涡轮机产生的流量

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摘要

Positron emission particle tracking (PEPT) is a new technique allowing the quantitative study of flow phenomena in three dimensions in opaque systems that cannot be studied by techniques based on optical methods such as particle image velocimetry (PIV) or laser Doppler anemometry (LDA). It has previously been used for studying solid particle motion in various systems used in particulate processing. Here. for the first time, velocity measurements made using PEPT with a down-pumping pitched blade turbine (PBTD) are compared directly with those made by PIV in water in the same equipment. It is shown that excellent agreement is found between the two methods except just below the impeller in the discharge. However, this difference is attributed to the different type of data collected and the different way of ensemble-averaging in the two techniques. Similar results were found at higher agitator speeds with both the PBTD and an up-pumping PBT (PBTU) where a small amount of surface aeration occurred. Measurements in solid liquid systems with surface aeration at 0.5 wt% solids or higher were not possible with PIV, but excellent results were obtained with PEPT for both the PBTD and PBTU in a 5 wt% suspension. It is concluded that this calibration study shows that the PEPT technique can be used to obtain accurate velocity data throughout all of the complex three-dimensional flow field in a range of mechanically agitated, turbulent, multi-phase systems previously not amenable to quantitative analysis.
机译:正电子发射粒子跟踪(PEPT)是一项新技术,可以对不透明系统中三维流动现象进行定量研究,而这是无法通过基于光学方法(例如粒子图像测速法(PIV)或激光多普勒风速计(LDA))的技术进行研究的。它先前已用于研究颗粒处理中使用的各种系统中的固体颗粒运动。这里。首次将使用下泵斜桨式涡轮(PBTD)的PEPT进行的速度测量结果与同一设备中水中的PIV进行的测量结果直接进行比较。结果表明,两种方法之间的一致性极好,只是排放口中叶轮的下方。但是,这种差异归因于两种技术中所收集数据的类型不同以及整体平均的方法不同。在PBTD和上泵PBT(PBTU)较高的搅拌器速度下也发现了相似的结果,在这些情况下发生了少量的表面通气。用PIV无法在表面通气量为0.5 wt%固体或更高的固体液体系统中进行测量,但是在5 wt%悬浮液中,对于PBTD和PBTU而言,PEPT均获得了优异的结果。结论是,该校准研究表明,在以前不适合进行定量分析的一系列机械搅拌,湍流,多相系统中,PEPT技术可用于获取所有复杂三维流场中的准确速度数据。

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