超声波流量计杂质对测量精度影响机理分析
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山东省自然科学基金项目(ZR2015EL034)


Influence of Impurity Particles on Ultrasonic Propagation Characteristics and Measurement Accuracy
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    摘要:

    水中杂质是引起超声波衰减、导致超声波流量计测量不准确的主要影响因素。采用数值模拟计算和实验研究相结合的方法,对含杂质水流的超声波流量计内部杂质分布及测量精度进行了研究。采用两相流数学模型进行内部流动的数值计算,获得了不同杂质粒径在不同流量工况下的杂质分布规律,通过实验对含杂质水流的超声波流量计的测量误差进行分析,对数值计算结果进行了验证,探知了不同杂质粒径对超声波传播中心区域的影响及超声波测量误差的影响规律。结果表明,杂质粒径在0.02mm以下,或者流量在1.05m3/h以上时,该工况下中心区域的杂质浓度分布基本保持一致,对超声波的传播和测量精度影响规律一致。结果可为超声波流量计在含杂质水质工况下测量精度的研究提供理论参考。

    Abstract:

    The ultrasonic attenuation caused by impurities in the water leads to inaccurate measurement of ultrasonic flow meter. Numerical simulation and experimental research were used to study the distribution and measurement accuracy of the impurities in the ultrasonic flow meter. Impurity distribution in liquid was calculated by Eulerian twophase model and standard k-ε model. Through the two-phase flow mathematical model to establish the numerical calculation of the internal flow, obtain the impurity distribution law of different impurity particle sizes under different flow conditions. When the particle size of impurities was less than 0.05mm, it was easier to be carried by the fluid. Impurities were relatively evenly distributed in the flow channel. When the Reynolds number was small, impurities larger than 0.1mm in diameter were distributed below the signal propagation path. As the Reynolds number was increased, the interaction between the solid phase and the liquid phase became stronger, and the impurity concentration in the signal propagation path was increased. Through the experiment, the measurement error of the ultrasonic flow meter of the impurity water flow was studied. The numerical calculation and the experimental results were mutually verified. The influence of different impurity particle sizes on the acoustic propagation center area and the ultrasonic wave were given. Measurement errors caused by impurities smaller than 0.02mm in diameter were more easily corrected. The measurement error caused by impurities with larger particle size was greatly affected by the fluid velocity. The research can provide a theoretical reference for the research of the detection accuracy of ultrasonic flow meter in the actual water quality with different particle impurities, and had a certain application value.

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张蒙,杜广生,程浩,杨悦.超声波流量计杂质对测量精度影响机理分析[J].农业机械学报,2020,51(7):420-426. ZHANG Meng, DU Guangsheng, CHENG Hao, YANG Yue. Influence of Impurity Particles on Ultrasonic Propagation Characteristics and Measurement Accuracy[J]. Transactions of the Chinese Society for Agricultural Machinery,2020,51(7):420-426.

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  • 收稿日期:2020-04-13
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  • 在线发布日期: 2020-07-10
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