首页> 外文会议>IEEE Instrumentation & Measurement Technology Conference;I2MTC 2010 >Cross correlation velocity of oil-water two-phase flow by a Dual-plane Electrical Resistance Tomography system
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Cross correlation velocity of oil-water two-phase flow by a Dual-plane Electrical Resistance Tomography system

机译:双平面电阻层析成像系统的油水两相流互相关速度

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Oil-water two-phase flow is commonly encountered in industrial processes of petroleum and chemical engineering. The process parameters, such as velocity and phase concentration of the mixture are of great importance in both scientific and engineering field. Cross correlation technique is one of the methods of calculating the flow velocity by deriving the transit time of the fluid flowing through a pair of parallel mounted sensors on the target pipelines. The physical meaning of the cross correlation velocity is still an open discussion in the field of multi-phase flow measurement. In this research, a Dual-plane Electrical Resistance Tomography (ERT) is adopted to cross correlate the sensing data from two electrode planes. A method of dynamically seeking suitable signal segment for cross-correlating measured signals from two-phase flow is proposed. The results show that the cross correlation velocity is a structural velocity within two-phase flow, and the relationship of cross correlation velocity and mixture velocity is affected by the water flowrate within the two-phase flow.
机译:油水两相流在石油和化学工程的工业过程中经常遇到。诸如混合物的速度和相浓度之类的工艺参数在科学和工程领域中都非常重要。互相关技术是通过推导流过目标管线上一对平行安装的传感器的流体的传播时间来计算流速的方法之一。互相关速度的物理含义在多相流量测量领域仍是一个公开讨论。在这项研究中,采用双平面电阻层析成像(ERT)对来自两个电极平面的传感数据进行互相关。提出了一种动态寻找合适的信号段以对来自两相流的测量信号进行互相关的方法。结果表明,互相关速度是两相流内的结构速度,互相关速度与混合速度的关系受两相流内水流量的影响。

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