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首页> 外文期刊>The Journal of the Acoustical Society of America >Time-of-flight dependency on transducer separation distance in a reflective-path guided-wave ultrasonic flow meter at zero flow conditions
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Time-of-flight dependency on transducer separation distance in a reflective-path guided-wave ultrasonic flow meter at zero flow conditions

机译:在零流动条件下反射路径引导波超声波流量计的换能器分离距离的飞行时间依赖性

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Transit-time flow meters based on guided ultrasonic wave propagation in the pipe spool have several advantages compared to traditional inline ultrasonic flow metering. The extended interrogation field, obtained by continuous leakage from guided waves traveling in the pipe wall, increases robustness toward entrained particles or gas in the flow. In reflective-path guided-wave ultrasonic flow meters (GW-UFMs), the flow equations are derived from signals propagating solely in the pipe wall and from signals passing twice through the fluid. In addition to the time-of-flight (TOF) through the fluid, the fluid path experiences an additional time delay upon reflection at the opposite pipe wall due to specular and non-specular reflections. The present work investigates the influence of these reflections on the TOF in a reflective-path GW-UFM as a function of transducer separation distance at zero flow conditions. Two models are used to describe the signal propagation through the system: (i) a transient full-wave finite element model, and (ii) a combined plane-wave and ray-tracing model. The study shows that a range-dependent time delay is associated with the reflection of the fluid path, introducing transmitter-receiver distance dependence. Based on these results, the applicability of the flow equations derived using model (ii) is discussed. (C) 2017 Acoustical Society of America.
机译:与传统的内联超声波流量计量相比,基于管道线轴的引导超声波传播的进际流量计具有几个优点。通过从管壁中行进的引导波的连续泄漏而获得的扩展询问场将稳健性增加到夹带颗粒或气体中的鲁棒性。在反射路径引导波超声波流量计(GW-UFMS)中,流动方程源自仅在管壁中传播的信号以及通过两次通过流体的信号。除了通过流体的飞行时间(TOF)之外,由于镜面和非镜面反射,流体路径在相对的管壁处反射时经历了额外的时间延迟。本作者研究了这些反射对反射路径GW-UFM中TOF的影响,作为零流动条件下的换能器分离距离的函数。两种模型用于描述通过系统的信号传播:(i)瞬态全波有限元模型,(ii)组合的平面波和辐射模型。该研究表明,范围相关的时间延迟与流体路径的反射相关联,引入发射机接收器距离依赖性。基于这些结果,讨论了使用模型(II)导出的流动方程的适用性。 (c)2017年声学社会。

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