首页> 外文会议>Instrumentation and Measurement Technology Conference, 1998. IMTC/98. Conference Proceedings. IEEE >Accuracy in real time ultrasonic applications and transit-time flow meters
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Accuracy in real time ultrasonic applications and transit-time flow meters

机译:实时超声波应用和运行时间流量计的精度

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This paper presents a general discussion on the parameters influencing the accuracy of ultrasonic instruments operating on transit-time principles. A particular emphasis is given to the transit-time ultrasonic flow meters fixed on closed pipes. The properties of solids suspended in fluids together with acoustic-ray theory is used to simulate reflection, refraction, diffusions, scattering and absorption of ultrasonic waves propagating inside a pipe. The simulation results clearly demonstrate the changes in the ultrasonic waves propagating in clean fluids in comparison to the fluids containing particles. It is shown that in the presence of particles the wave front scatters and weakens considerably. The simulation results are verified by real time experiments conducted on slurries flowing in closed pipes. As a result of this study, it is suggested that the flow meters should be made from multiple transmitters and receivers. This approach will enable accurate, reliable and consistent results in time and space-variant processes.
机译:本文对影响基于时域原理的超声仪器精度的参数进行了一般性讨论。特别强调固定在密闭管道上的渡越时间超声波流量计。悬浮在流体中的固体的特性与声波理论一起用于模拟在管道内传播的超声波的反射,折射,扩散,散射和吸收。仿真结果清楚地表明,与含有颗粒的流体相比,在干净的流体中传播的超声波发生了变化。结果表明,在存在颗粒的情况下,波阵面会散射并明显减弱。通过对封闭管中流动的浆料进行的实时实验验证了仿真结果。作为这项研究的结果,建议流量计应由多个发送器和接收器制成。这种方法将使随时间和空间变化的过程获得准确,可靠和一致的结果。

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