入口压力脉动非线性液压测量回路的附加误差研究

A. Gimadiev, N. Bystrov, A. Utkin, D. Stadnik
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摘要

在电厂和测试设备控制系统中,压力传感器通常通过压力传输线连接,用于高温和振动的条件。在被监测对象中存在压力脉动时,在压力传感器入口处安装一个节流器。为压力传感器批量生产的节流器具有非线性流降特性,这会导致介质或脉动压力缓慢变化分量的额外测量误差。这种失真可以大大超过传感器本身的误差。给出了测量电路参数和压力脉动(振幅、频率、频谱和元件间相移)对附加误差的理论和实验研究结果。给出了可以忽略附加误差的阻尼器参数的选择建议。本文提出的方法可用于电厂监测测控系统中脉动压力测量的平均或慢变分量的测量电路。
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On the additional error of a nonlinear hydraulic measuring circuit with pressure pulsations at the inlet
In power plant and test equipment control systems pressure sensors are often connected by pressure transmission lines for conditions of high temperatures and vibrations. In the presence of pressure pulsations in the monitored object, a restrictor is installed at the pressure transducer inlet. Restrictors serially produced for pressure transducers have a nonlinear flow-drop characteristic which leads to the additional measurement error of the medium or slowly changing component of the pulsating pressure. This distortion can significantly exceed the error of the transducer itself. The results of theoretical and experimental studies of the additional error depending on the parameters of the measurement circuit and pressure pulsations (amplitude, frequency, spectrum and phase shift between components) are presented. Recommendations on the choice of damper parameters for which the additional error can be neglected are given. The methodology developed by the authors can be used to create measurement circuit for an average or slowly changing component of the pulsating pressure measurement in power plant monitored measurement and control systems.
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