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Numerical simulation of transit-time ultrasonic flowmeters: uncertainties due to flow profile and fluid turbulence

机译:时差超声流量计的数值模拟:由于流量分布和流体湍流而引起的不确定性

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摘要

Flowmeter measurement using the ultrasonic transit-time method is based on the apparent difference of the sound velocity in the flow direction and in the opposite direction. This method gives a flow velocity averaged along a particular acoustical path. To convert this path velocity to a velocity averaged over the entire cross-section of the flowing medium, the knowledge of the flow velocity profile is essential, However, the acoustical paths joining the two transducers are supposed to be straight and fluid turbulence phenomena are neglected. In this paper. we describe a numerical procedure to estimate the uncertainties due to these approximations in the case of fully developed turbulence, The ultrasonic propagation is modelled in 2-D moving inhomogeneous media via a ray tracing algorithm. Influence of mean profiles of temperature and velocity is studied on simple examples, Fluid temperature fluctuations and fluid velocity turbulence are considered in the stochastic framework to obtain average uncertainties on the measurements of the liquid flow rate. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 23]
机译:使用超声波渡越时间方法的流量计测量是基于在流动方向和相反方向上的声速表观差异。该方法给出沿特定声学路径平均的流速。为了将该路径速度转换为流动介质整个横截面的平均速度,必须掌握流速分布图,但是,将连接两个换能器的声学路径假定为笔直的,而忽略了流体湍流现象。在本文中。我们描述了一种数值程序来估计在完全发展的湍流情况下由于这些近似而引起的不确定性。超声传播是通过射线追踪算法在二维移动非均匀介质中建模的。在简单的例子中研究了温度和速度的平均分布的影响,在随机框架中考虑了流体温度的波动和速度的湍流,从而获得了测量液体流速的平均不确定度。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:23]

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