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Study on the Optimal Number of Transducers for Pipe Flow Rate Measurement Downstream of a Single Elbow Using the Ultrasonic Velocity Profile Method

机译:超声速度分布法研究单弯管下游流量测量的最佳换能器数量

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This paper presents a new estimation method to determine the optimal number of transducers using an Ultrasonic Velocity Profile (UVP) for accurate flow rate measurement downstream of a single elbow. Since UVP can measure velocity profiles over a pipe diameter and calculate the flow rate by integrating these velocity profiles, it is also expected to obtain an accurate flow rate using multiple transducers under nondeveloped flow conditions formed downstream of an elbow. The new estimation method employs a wave number of velocity profile fluctuations along a circle on a pipe cross-section using Fast Fourier Transform (FFT). The optimal number of transducers is estimated based on the sampling theorem. To evaluate this method, a preliminary experiment and numerical simulations using Computational Fluid Dynamics (CFD) are conducted. The evaluating regions of velocity profiles are located at 3 times of a pipe diameter () for the experiment, and 1 and for the simulations downstream of an elbow, respectively. Reynolds numbers for the experiment and simulations are set at and , respectively. These results indicate the efficiency of this new method.
机译:本文提出了一种新的估算方法,该方法可使用超声速度曲线(UVP)确定单个肘部下游的精确流量,从而确定换能器的最佳数量。由于UVP可以测量管道直径上的速度分布并通过积分这些速度分布来计算流速,因此还期望在弯头下游形成的非发达流动条件下使用多个换能器获得准确的流速。新的估算方法使用快速傅里叶变换(FFT)在管道横截面上沿圆周的速度分布波动波数。基于采样定理,估计换能器的最佳数量。为了评估此方法,使用计算流体动力学(CFD)进行了初步实验和数值模拟。速度分布图的评估区域分别位于实验的管径(3)和弯头下游的模拟管径的1倍处。实验和模拟的雷诺数分别设置为和。这些结果表明了这种新方法的效率。

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