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MONITORING OF IMPULSE LINE BLOCKAGE USING PHASE DIFFERENCE BETWEEN UPSTREAM AND DOWNSTREAM PRESSURES OF ORIFICE

机译:利用上游流和下游流压力之间的相差来监测脉冲线路阻塞

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摘要

The combination use of a differential pressure transmitter, orifice and impulse line to produce a flowmeter is widely used in the process industries. Since the most frequent problem encountered in the usage of this flowmeter is impulse line blockage, an online blockage detection system is required. In previous works, the authors developed an indicator of impulse line blockage, called the blockage index, which is based on pressure fluctuations. Although the blockage index is able to detect the blockage effectively without being affected by the change in the flow rate and pressure, it can not detect the blockage as the rate of line pressure change increase. In addition, there are continuous and frequent line pressure changes in certain applications. Hence, the objective of this study is to detect impulse line blockages even when the line pressure change rate is so high that the blockage index is unable to detect the blockage.rnIn this paper, the authors present details on the delay in the pressure transmission caused by the blockage, and evaluate the delay quantitatively by using the phase difference between the pressure upstream and downstream of the orifice as a new blockage index. In addition, by selecting frequencies with high power spectral densities, the new index becomes sensitive enough to detect the blockage during the more rapid line pressure changes under which the former blockage index failed.
机译:压差变送器,节流孔和脉冲管线的组合使用可生产流量计,广泛用于过程工业。由于使用该流量计时遇到的最常见问题是脉冲管路堵塞,因此需要在线堵塞检测系统。在以前的工作中,作者开发了一种基于压力波动的脉冲线路阻塞指示器,称为阻塞指数。尽管堵塞指数能够不受流率和压力变化的影响而有效地检测出堵塞,但是随着管线压力变化率的增加,它无法检测出堵塞。另外,在某些应用中,管线压力会持续不断变化。因此,本研究的目的是即使在管路压力变化率过高以致于堵塞指数无法检测到堵塞的情况下,也能检测出脉冲管路堵塞。rn本文作者详细介绍了造成压力传递延迟的原因。并通过使用孔口上游和下游压力之间的相差作为新的堵塞指标来定量评估延迟。另外,通过选择具有高功率谱密度的频率,新指标变得足够灵敏,可以在更快速的管路压力变化期间检测到阻塞,在此情况下,前一个阻塞指标失败了。

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