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Research on flow diagnosis of multipath ultrasonic flowmeter

机译:多径超声流量计的流量诊断研究

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In the application of ultrasonic flowmeter, flow measurement has a low accuracy, since the length of straight pipe near the ultrasonic sensor is insufficient, especially the presence of the upstream disturbance. In this paper, in order to analyze the inherent relationship between the measurement error and the characteristics of flow field, two flow diagnostic criterions are proposed: asymmetry index (AR1, AR2) and cross flow (cf) indicator. Then the threshold range of the indexes is predicted by computational fluid dynamics numerical simulation in three non-ideal installations (single elbow, single elbow & rectifier, single elbow & 5 pipe diameter & rectifier). Finally, this diagnostic criterion is put forward to distinguish the three operating conditions, and verified by flow experiments. When AR1> 0.019 or AR2 > 0.037 and cf > 0.005 , the asymmetry and cross flow in the flow field cannot be ignored. At this time, flow measurement accuracy is greater than 1%. It is indicated that disturbance affect measurement accuracy. On the contrary, when diagnostic indexes are less than the threshold values, measurement accuracy can be guaranteed within 1%, which shows that disturbance have little impact on flow measurement.
机译:在超声波流量计的应用中,由于超声波传感器附近的直管长度不足,特别是上游干扰的存在,因此流量测量的精度较低。为了分析测量误差与流场特征之间的内在联系,提出了两种流量诊断标准:非对称指标(AR1,AR2)和错流指标(cf)。然后,通过计算流体动力学数值模拟在三个非理想装置(单弯头,单弯头和整流器,单弯头和5管道直径和整流器)中预测指标的阈值范围。最后,提出了该诊断标准以区分这三种工况,并通过流动实验进行了验证。当AR1> 0.019或AR2> 0.037且cf> 0.005时,流场中的不对称性和错流将不容忽视。此时,流量测量精度大于1%。表明干扰会影响测量精度。相反,当诊断指标小于阈值时,可以将测量精度保证在1%以内,这表明扰动对流量测量的影响很小。

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