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Liquid low-flow calibration rig using syringe pump and weighing tank system

机译:使用注射泵和称量箱系统的液体低流量校准设备

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A calibration rig consisting of a syringe pump and a weighing tank system that can operate in the flow rate range of 0.02-60 L/h was developed in this study. This paper discusses the design considerations of the calibration methods, the development of the rig, the calibration results, and the uncertainty analysis conducted on the rig. A weighing tank system that minimizes the effects of outlet tube contact and evaporation was developed. The syringe pump system was designed using a servomotor, a precise ball screw, and a linear encoder, and it was calibrated using the developed weighing tank system via the standing start and stop method over the target range of flow rates with light oil and industrial gasoline. Several flowmeters were calibrated using the syringe pump via the flying start and finish method. During the flowmeter calibration stage, the effect of the evaporation error was eliminated because the calibration rig can form a closed pipeline system. The influence of dissolved gas and the position dependence of the syringe pulse factor on the calibration accuracy were investigated experimentally. As a result, all obtained syringe pulse factors were found to be within +/- 0.02% of each other. The preliminary expanded uncertainties (k=2) of the calibration rig were estimated to be 0.066% and 0.070% for mass and volumetric flows, respectively. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项研究中,开发了由注射泵和称重罐系统组成的校准装置,该系统可以在0.02-60 L / h的流量范围内运行。本文讨论了校准方法的设计注意事项,钻机的开发,校准结果以及在钻机上进行的不确定性分析。开发了一种最小化出口管接触和蒸发影响的称量箱系统。注射泵系统是使用伺服电机,精密的滚珠丝杠和线性编码器设计的,并使用开发的称重罐系统通过立式启停方法在轻油和工业汽油的目标流量范围内进行校准,并对其进行了校准。 。使用注射泵通过快速启动和结束方法对几个流量计进行了校准。在流量计校准阶段,由于校准设备可以形成封闭的管道系统,因此消除了蒸发误差的影响。实验研究了溶解气体和注射器脉冲因子的位置依赖性对校准精度的影响。结果,发现所有获得的注射器脉冲因数彼此在+/- 0.02%以内。对于质量流量和体积流量,校准设备的初步扩展不确定性(k = 2)估计分别为0.066%和0.070%。 (C)2016 Elsevier Ltd.保留所有权利。

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