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Flow velocity measurement based on ultrasonic cross-correlation technique in oil-water two-phase flow

机译:基于超声互相关技术的油水两相流流速测量

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For the velocity measurement of oil-water two-phase flow in horizontal pipeline, a measuring method based on ultrasonic cross-correlation technique is introduced. Two pairs of ultrasonic probes are installed in the upstream and downstream within a certain distance to obtain the flow signal of two-phase flow. The flow velocity is calculated by the cross-correlation method, and the influence of flow patterns and phase distribution are taken into consideration. By combining the cross-correlation algorithm, drift-flux model and kinematic wave theory, the overall superficial velocity measurement model is established. The parameters of this model were calculated in different flow state. The experimental results show that the flow velocity calculated by this model is in good agreement with the actual flow velocity. The relative error is less than ±5%.
机译:针对水平管道中油水两相流的速度测量,介绍了一种基于超声互相关技术的测量方法。在上游和下游一定距离内安装两对超声探头,以获得两相流的流量信号。通过互相关法计算流速,并考虑流型和相分布的影响。通过将互相关算法,漂移通量模型和运动波理论相结合,建立了整体表面速度测量模型。在不同流动状态下计算该模型的参数。实验结果表明,该模型计算出的流速与实际流速吻合良好。相对误差小于±5%。

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