首页> 外文会议>ASME/JSME Joint Fluids Engineering Conference >MEASUREMENT FOR INDIVIDUAL GAS-LIQUID TWO-PHASE FLOW RATES BASED ON STOCHASTIC FEATURES OF DIFFERENTIAL PRESSURE FLUCTUATION
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MEASUREMENT FOR INDIVIDUAL GAS-LIQUID TWO-PHASE FLOW RATES BASED ON STOCHASTIC FEATURES OF DIFFERENTIAL PRESSURE FLUCTUATION

机译:基于差压波动随机特征的单个气液两相流流速测量

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This study proposes a measuring method for the individual phase flow rates of gas-liquid two-phase mixtures flowing through a pipe. First, the time-variations for pressure are measured at three points around a vortex generator mounted in the pipe under the known flow rates. Secondly, the stochastic features of the differential pressure fluctuations, such as the mean and the standard deviation, are calculated to construct a database relating the flow rates with the stochastic features. Consequently, if the differential pressure fluctuations are measured under unknown flow rates, the individual phase flow rates are successfully identified from the database. A neural network is employed for the identification. This study also applies the proposed method for the measurement of air-water two-phase flow and discusses the measured results.
机译:该研究提出了一种用于流过管道的气液两相混合物的各个相流率的测量方法。首先,在已知流速下安装在管道中的涡流发生器周围的三个点处测量压力的时间变化。其次,计算差压波动的随机特征,例如平均值和标准偏差,以构造与随机特征的流速相关的数据库。因此,如果在未知流速下测量差压波动,则从数据库中成功识别各个相流率。神经网络用于识别。本研究还适用于测量空气水两相流的方法,并讨论测量结果。

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