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CONSIDERATIONS IN THE PRACTICAL APPLICATION OF THE MULTI-SENSOR CONDUCTIVITY PROBE FOR TWO-PHASE FLOW

机译:用于两相流的多传感器电导率探头的实际应用中的考虑

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This study investigates two issues in the practical application of the local conductivity probe for two-phase flow measurements. First, the effects of signal "ghosting," an electrical interference inherent to multiplexing data acquisition systems, on the measured two-phase flow parameters are examined. A revised conductivity probe circuit is proposed to remove the effects of ghosting. The characteristics of signal ghosting are investigated experimentally with a specialized conductivity probe that enables concurrent acquisition of ghosted and un-ghosted signals within the same flow condition. It is demonstrated that ghosting causes higher bubble velocity and, consequently, lower interfacial area concentration measurements that depend on sampling frequency and sensor impedance. The revised circuit successfully eliminates this variability. Second, the sensitivity of measured two-phase flow parameters to increasing data acquisition sampling frequency is investigated experimentally. Measurements are acquired at incrementally increasing sampling frequencies with a four-sensor conductivity probe in 13 vertical-upward air-water two-phase flow conditions with superficial liquid and gas velocities ranging from 1.00-5.00m/s and 0.17-2.0m/s, respectively. It is found that the void fraction and average bubble velocity are insensitive to the sampling frequency, while the detected number of bubbles and interfacial area concentration can demonstrate a strong dependence. Considerations for selecting appropriate sampling frequencies in different flow conditions are discussed.
机译:这项研究调查了当地的电导探针对两相流测量的实际应用中的两个问题。首先,被检查的信号的“重影”,固有到复用数据采集系统,所测量的二相流的参数的电干扰的影响。修改后的电导探针的电路,提出了以除去重影的效果。信号重影的特征与一个专门的电导探针,其使得同流条件内幻像和未幻影信号的当前的采集实验研究。已经证明,重影引起更高气泡速度,因此,降低依赖于采样频率和传感器阻抗的界面面积浓度测量。修订后的电路成功地消除了这种变化。其次,测定两相的流动参数的增加数据采集采样频率的灵敏度实验研究。测量是在逐步用四传感器电导探针在13垂直向上的空气 - 水浅表液体和气体速度范围从1.00-5.00m / s和0.17-2.0m / s的二相流的条件增加的采样频率获得的,分别。据发现,空隙率和平均气泡速度是不敏感的采样频率,而检测到的气泡的数量和界面面积浓度可表现出很强的依赖性。用于选择在不同的流动条件的适当采样频率的考虑进行了讨论。

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