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A New Vector-Based Signal Processing Method of Four-Sensor Probe for Measuring Local Gas–Liquid Two-Phase Flow Parameters Together with Its Assessment against One Bubbly Flow

机译:一种新的四传感器探头的基于载体的信号处理方法,用于测量局部气液两相流参数以及对一个气泡流量的评估

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摘要

A multiphase flow measurement technique plays a critical role in the studies of heat and mass transfer characteristics and mechanism of the gas–liquid two-phase, the practical measurement of the gas–liquid flow and the improvement of multiphase theoretical models. The four-sensor electrical probe as an emerging measurement method has been proved to be able to get the local flow parameters of multi-dimensional two-phase flow. However, few studies have been reported using the four-sensor probe to obtain the interface information (e.g., the interface direction and velocity). This paper presents a new signal processing method by which the interface direction and velocity can be obtained, besides void fraction, interfacial area concentration (IAC) and bubble chord length. The key solution is to employ the vector-based calculating method, which possesses the merits of simplicity and efficiency, to gain the interface velocity vector through legitimately assuming a direction of the interface velocity. A miniaturized four-sensor electrical probe was made and a gas–liquid two-phase flow experiment was performed to test the proposed signal process scheme. The two-phase flow was controlled to be in cap-bubble flow regime. To validate the availability and reliability of the proposed method, the local flow parameters obtained by the probe measurement were compared with the results from visual measurement technique in the same flow conditions. The comparison indicates that the above local flow parameters from four-sensor probe measurement are in good agreement with the visual measurement results, with maximum deviations of chord length of 8.7%, thereby proving the correctness of the proposed method.
机译:多相流量测量技术在热量和传质的研究中起着关键作用和气液两相的机理,气液流动的实际测量以及多相理论模型的改进。已经证明了四传感器电气探针作为新出现的测量方法,以获得多维两相流的局部流量参数。然而,使用四传感器探头报告了很少的研究以获得接口信息(例如,接口方向和速度)。本文介绍了一种新的信号处理方法,通过该方法,除了空隙部分,界面区域浓度(IAC)和气泡弦长而可以获得界面方向和速度。关键解决方案是采用基于向量的计算方法,该方法具有简单性和效率的优点,通过合法地假设界面速度的方向来获得接口速度向量。制备小型化的四传感器电探针,进行气液两相流实验以测试所提出的信号过程方案。将两相流控制为盖子气泡流动状态。为了验证所提出的方法的可用性和可靠性,将通过探针测量获得的局部流量参数与来自相同流动条件中的视觉测量技术的结果进行比较。比较表明,来自四传感器探头测量的上述局部流量参数与视觉测量结果吻合良好,弦长的最大偏差为8.7%,从而证明了该方法的正确性。

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