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An auxiliary measuring technology of wet gas flow based on the vibration signals of the pipe

机译:基于管道振动信号的湿气流辅助测量技术

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摘要

Flow induced vibration exists commonly in multiphase flow pipelines, and the amplitude, frequency and some other characteristic parameters of pipe vibration are closely correlated with multiphase flow rate and flow regimes. The relationship between the vibration signals and gas mass fraction has been theoretically analyzed. An acceleration sensor was selected and attached to the pipe wall for the measurement of pipe vibration induced by wet gas flow, and a set of experiments has been carried out. One schematic model was put forward for explaining the interactions between two-phase flow and pipe wall. The model is much more like a closed loop control system; the input of the system is a linear combination of random vibration of two-phase flow momentum, two basic fluid-structure coupling mechanics (friction coupling and Poisson coupling) and the force arising from gas-liquid impacting on slotted orifice. The characteristic parameters of the vibration signals have been extracted and analyzed. Both experimental results and theoretical analysis show that there is a certain relationship between the standard deviation value of vibration signal and gas-liquid flow rate, and this relationship could be approximated by a function of gas mass fraction. The characteristic parameters in frequency domain, which include wavelet package energy and wavelet package energy entropy of vibration signal, are varied regularly with different flow regimes, and they are potential classification parameters for wet gas flow regimes.
机译:流致振动普遍存在于多相流管道中,管道振动的幅度,频率和其他一些特征参数与多相流率和流态密切相关。从理论上分析了振动信号与气体质量分数之间的关系。选择了一个加速度传感器,并将其安装在管壁上,以测量由湿气流引起的管道振动,并进行了一组实验。提出了一种示意图模型来解释两相流与管壁之间的相互作用。该模型更像是一个闭环控制系统。系统的输入是两相流动量的随机振动,两个基本的流固耦合机制(摩擦耦合和泊松耦合)以及气液对长孔的作用力的线性组合。已经提取并分析了振动信号的特征参数。实验结果和理论分析均表明,振动信号的标准偏差值与气液流量之间存在一定的关系,该关系可以通过气体质量分数的函数来近似。频域特征参数包括振动信号的小波包能量和小波包能量熵,随不同的流态而有规律地变化,它们是湿气流态的潜在分类参数。

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