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Phase Content and Flow Measurement of Bubble Flow based on New Experimental Pipeline

机译:基于新实验管道的气泡流量的相含量和流量测量

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摘要

By combining near infrared spectroscopy and differential pressure meter to measure flow rate and phase volume fraction, a new structure of the near infrared system located in the position of the Venturi tube of long throat was proposed. The flow rate and volume fraction of the bubble flow were measured in a vertical experimental line. In terms of volumetric content measurement, based on typical flow characteristics, a void age model was established and experimentally verified. In terms of flow measurement, the classical measurement model is compared, and the uniform flow model is selected as the flow measurement model and corrected. The results show that the measurement error under the bubbly flow condition of the liquid volume fraction and the gas volume fraction was within +/- 0.52% and +/- 10%, respectively. The relative error of total flow measurement was within +/- 1.01%.
机译:通过将近红外光谱和差压计相结合以测量流速和相体积分数,提出了位于长喉部的Venturi管位置的近红外系统的新结构。 在垂直实验线中测量气泡流的流速和体积分数。 就体积含量测量而言,基于典型的流动特性,建立了空隙年龄模型并进行了实验验证。 在流量测量方面,比较经典测量模型,选择均匀的流动模型作为流量测量模型并校正。 结果表明,液体体积分数和气体体积分数的气泡流动条件下的测量误差分别在+/- 0.52%和+/- 10%内。 总流量测量的相对误差在+/- 1.01%内。

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