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Venturi flow meter and Electrical Capacitance Probe in a horizontal two-phase flow

机译:水平两相流中的文丘里流量计和电容探头

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摘要

The paper presents the results obtained with a spool piece (SP) made of a Venturi flow meter (VMF) and an Electrical Capacitance Probe (ECP) in stratified two-phase flow. The objective is to determine the relationship between the test measurements and the physical characteristics of the flow such as superficial velocities, density and void fraction. The outputs of the ECP are electrical signals proportional to the void fraction between the electrodes; the parameters measured by the VFM are the total and the irreversible pressure losses of the two-phase mixture. The fluids are air and demineralized water at ambient conditions. The flow rates are in the range of 0,065-0,099 kg/s for air and 0- 0,039 kg/s (0-140 l/h) for water. The flow patterns recognized during the experiments are stratified, dispersed and annular flow. The presence of the VFM plays an important role on the alteration of the flow pattern due to wall flow detachment phenomena. The signals of differential pressure of the VFM in horizontal configuration are strongly dependent on the superficial velocities and on the flow pattern because of a lower symmetry of the flow with respect to the vertical configuration
机译:本文介绍了由文丘里流量计(VMF)和电容量探头(ECP)制成的阀芯(SP)在分层两相流中获得的结果。目的是确定测试测量值与流体的物理特性(例如表面速度,密度和空隙率)之间的关系。 ECP的输出是与电极之间的空隙率成正比的电信号。 VFM测量的参数是两相混合物的总压力损失和不可逆压力损失。在环境条件下,流体是空气和软化水。空气的流速范围为0,065-0,099 kg / s,水的流速范围为0-0.039 kg / s(0-140 l / h)。实验过程中识别出的流型为分层流,分散流和环形流。由于壁流分离现象,VFM的存在对流型的改变起着重要作用。在水平配置中,VFM的压差信号很大程度上取决于表面速度和流动模式,因为相对于垂直配置,流动的对称性较低

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