Muñoz-Cobo José Luis, Chiva Sergio, Méndez Santos, Monrós Guillem, Escrivá Alberto, Cuadros José Luis
Instituto de Ingeniería Energética, Universitat Politècnica de València, 46022 Valencia, Spain.
Unidad de Mecánica de Fluidos, Universitat Jaume I, 12071 Castellón, Spain.
Sensors (Basel). 2017 May 10;17(5):1077. doi: 10.3390/s17051077.
This paper describes all the procedures and methods currently used at UPV (Universitat Politécnica de Valencia) and UJI (University Jaume I) for the development and use of sensors for multi-phase flow analysis in vertical pipes. This paper also describes the methods that we use to obtain the values of the two-phase flow magnitudes from the sensor signals and the validation and cross-verification methods developed to check the consistency of the results obtained for these magnitudes with the sensors. First, we provide information about the procedures used to build the multi-sensor conductivity probes and some of the tests performed with different materials to avoid sensor degradation issues. In addition, we provide information about the characteristics of the electric circuits that feed the sensors. Then the data acquisition of the conductivity probe, the signal conditioning and the data processing including the device that have been designed to automatize all the measurement process of moving the sensors inside the channels by means of stepper electric motors controlled by computer are shown in operation. Then, we explain the methods used for bubble identification and categorization. Finally, we describe the methodology used to obtain the two-phase flow information from the sensor signals. This includes the following items: void fraction, gas velocity, Sauter mean diameter and interfacial area concentration. The last part of this paper is devoted to the conductance probes developed for the annular flow analysis, which includes the analysis of the interfacial waves produced in annular flow and that requires a different type of sensor.
本文介绍了瓦伦西亚理工大学(UPV)和哈梅一世大学(UJI)目前用于开发和使用垂直管道多相流分析传感器的所有程序和方法。本文还描述了我们从传感器信号中获取两相流参数值的方法,以及为检查这些参数通过传感器获得的结果的一致性而开发的验证和交叉验证方法。首先,我们提供了用于构建多传感器电导率探头的程序信息,以及使用不同材料进行的一些测试,以避免传感器退化问题。此外,我们还提供了为传感器供电的电路特性信息。然后展示了电导率探头的数据采集、信号调理和数据处理,包括为通过计算机控制的步进电机自动执行在通道内移动传感器的所有测量过程而设计的设备的运行情况。然后,我们解释了用于气泡识别和分类的方法。最后,我们描述了从传感器信号中获取两相流信息的方法。这包括以下内容:空隙率、气体速度、索特平均直径和界面面积浓度。本文的最后一部分致力于为环状流分析开发的电导探头,其中包括对环状流中产生的界面波的分析,这需要不同类型的传感器。