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首页> 外文期刊>Metrology and Measurement Systems: Metrologia i Systemy Pomiarowe >NEW GAS-LIQUID TWO-PHASE FLOW PATTERN MAPS BASED ON THE ENERGY RATIO OF PRESSURE FLUCTUATION THROUGH A VENTURI TUBE
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NEW GAS-LIQUID TWO-PHASE FLOW PATTERN MAPS BASED ON THE ENERGY RATIO OF PRESSURE FLUCTUATION THROUGH A VENTURI TUBE

机译:新的气液两相流动图案图基于通过文丘里管的压力波动的能量比

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摘要

To find effective and practical methods to distinguish gas-liquid two-phase flow patterns, new flow pattern maps are established using the differential pressure through a classical Venturi tube. The differential pressure signal was first decomposed adaptively into a series of intrinsic mode functions (IMFs) by the ensemble empirical mode decomposition. Hilbert marginal spectra of the IMFs showed that the flow patterns are related to the amplitude of the pressure fluctuation. The cross-correlation method was employed to sift the characteristic IMF, and then the energy ratio of the characteristic IMF to the raw signal was proposed to construct flow pattern maps with the volumetric void fraction and with the two-phase Reynolds number, respectively. The identification rates of these two maps are verified to be 91.18% and 92.65%. This approach provides a cost-effective solution to the difficult problem of identifying gas-liquid flow patterns in the industrial field.
机译:为了找到区分气液两相流动模式的有效和实用的方法,使用通过经典文丘里管的差压来建立新的流动模式图。通过集合经验模式分解,首先将差压信号自适应地分解成一系列内在模式功能(IMF)。 IMF的希尔伯特边缘光谱表明,流动模式与压力波动的幅度有关。采用互相关方法来筛选特征IMF,然后提出了对原始信号的特性IMF的能量比分别构造与体积空隙部分的流动图案图和与两相雷诺数。这两张地图的识别率验证为91.18%和92.65%。这种方法提供了一种成本效益的解决方案,难以识别工业领域的气液流动模式的难题。

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