流量脉动对差压流量计精度的影响

I. Kostyk, F. Matiko, R. Fedoryshyn
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摘要

本文研究了流量脉动对差压流量计测量气体流量和体积精度的影响。利用高频模数转换器对压力传感器脉冲线的阶跃响应曲线进行了实验研究。建立了带PT的脉冲线的数学模型。该模型提供了对瞬态过程的高精度仿真和研究。研究了脉冲线设计(长度、直径)对阶跃响应曲线、频率响应曲线以及振荡系统(带PT腔的脉冲线)谐振频率的影响。对作用差压天然气计量系统中流量脉动引起的脉冲线共振引起的流量和体积测量的系统误差进行了仿真研究。在计算结果的基础上,定义了谐振引起的压差振荡信号幅值的放大可能导致气体体积测量的负系统误差。通过选择正确的脉冲线设计,可以减小由流量脉动引起的气体流量和体积测量的系统误差,避免产生共振。
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Effect of flow pulsations on the accuracy of differential pressure flowmeters
This work deals with investigation of influence of flow pulsation on the accuracy of gas flow rate and volume measurement by means of the differential pressure flow meters. Experimental studies of the step response curves of an impulse line with a pressure transducer (PT) were carried out with application of a high-frequency analog-to-digital converter of the pressure signal in the PT chamber. Mathematical model of an impulse line with a PT was built. This model provides simulation and investigation of the transient processes with high accuracy. The influence of the impulse line design (length, diameter) on the step response curves and on the frequency response curves as well as on the resonant frequency of the oscillating system (an impulse line with a PT chamber) was studied. The systematic errors of flow rate and volume measurement due to the resonance in the impulse lines which was caused by flow pulsation were simulated and studied for an acting differential pressure natural gas metering system. On the basis of the calculation results it was defined that amplification of the amplitude of the oscillating signal of the differential pressure due to the resonance may lead to a negative systematic error of gas volume measurement. The systematic errors of gas flow rate and volume measurement caused by the flow pulsation can be reduced by choosing the correct design of the impulse lines in order to avoid the resonance.
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