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首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Applicability of hybrid ultrasonic flow meter for wide-range flow-rate under distorted velocity profile conditions
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Applicability of hybrid ultrasonic flow meter for wide-range flow-rate under distorted velocity profile conditions

机译:混合超声波流量计的适用性在扭曲速度曲线条件下宽范围流量速率

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摘要

In transit-time ultrasonic flow meters (TOF), the flow rate is derived from the transit time of an ultrasonic pulse between two ultrasonic transducers. To convert the transit time into flow rate, a profile factor (PF) is required. Because the PF strongly depends on the velocity profile, a precise calibration of the PF is essential to the accuracy of the TOF. Hence, a field calibration, referred to as on-site calibration, is desirable. In this study, a hybrid ultrasonic flow meter that helps calibrate the TOF using ultrasonic Doppler velocimetry (UDV) is proposed for on-site calibration by integrating the velocity profiles over the cross-sectional area of a pipe. Thus, a new system of hybrid ultrasonic flow meter was developed. The maximum flow rate measured using a conventional UDV is significantly lower than that measured using the TOF. Therefore, a system was developed to measure higher velocities and flow rates. The system is novel in that the transit time and velocity profile can be simultaneously measured using a de-aliasing method. To evaluate the influence of the velocity profile on the PF, experiments were conducted under a wide range of flow-rate conditions, which otherwise cannot be implemented using the conventional UDV. To evaluate the influence of the velocity profile in the pipe, an obstacle plate was placed at SD upstream the test section. Radially arranged measuring lines were employed. The experimental results show that increasing the number of measuring lines did not improve the accuracy of the TOF. On the other hand, the flow rate could be accurately obtained using the proposed UDV by measuring the velocity profile even under distorted flow conditions. Furthermore, the calibration of the PF based on the flow rate obtained using the proposed UDV was found to be feasible.
机译:在传输时间超声波流量计(TOF)中,流速来自两个超声换能器之间超声波脉冲的传输时间。要将运输时间转换为流速,需要配置轮廓因子(PF)。因为PF强烈取决于速度曲线,所以PF的精确校准对于TOF的准确性至关重要。因此,理想地,称为现场校准的现场校准。在该研究中,通过将管道横截面积上的速度曲线集成在现场校准,提出了一种有助于使用超声波多普勒速度测速法(UDV)的混合超声波流量计。因此,开发了一种新的混合式超声波流量计系统。使用常规UDV测量的最大流速显着低于使用TOF测量的流量。因此,开发了一种系统以测量更高的速度和流速。该系统是新颖的,因为可以使用去锯齿方法同时测量运输时间和速度分布。为了评估速度分布对PF上的影响,在多种流量速率条件下进行实验,否则不能使用常规UDV来实现。为了评估管道中的速度曲线的影响,将障碍板放在测试部分上游的SD上。采用径向布置的测量线。实验结果表明,增加测量线的数量没有提高TOF的准确性。另一方面,即使在变形的流动条件下,也可以通过测量速度曲线来准确地获得流速。此外,发现基于使用所提出的UDV获得的流速的PF校准是可行的。

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