管道工作压力对不同压降率下自动控制阀设定值的影响

M. Mahmoodi, M. G. Bandpy
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引用次数: 1

摘要

当天然气管道破裂时,相邻的上下游自动控制阀(ACV)应迅速关闭,防止泄漏或爆炸。每个阀门位置的压差设定点(DPS)是ACV动作中值设置的主要标准。如果DPS调整不当,可能会导致ACV误关或未及时采取动作。本研究通过实验研究了管道运行压力(POP)和管道破裂或重大泄漏压降率(ROD)等特征参数对DPS的影响。选取了具有上述典型特征参数双集的25种不同条件。通过对实验结果的统计分析,在每一种条件下测量180 s的压差(DP),得到25个最大压差值(DP)。DPS随着ROD的增加或POP的减少而增加。由于安全考虑和不确定性因素,使用氮气代替天然气,因此添加15%的安全系数后,DPS结果可以实际应用。最后,给出了不同POP的DPS与ROD的关系图,以及无量纲DPS (DOP)与无量纲ROD (RTP)的关系图。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of Pipeline Operating Pressure on Value Setting of Automatic Control Valves at Different Pressure Drop Rates
When a natural gas pipeline ruptures, the adjacent upstream and downstream automatic control valves (ACV) should close quickly to prevent leakage or explosion. The differential pressure set point (DPS) at each valve location is the main criteria for value setting in ACV actions. If the DPS is not properly adjusted, the ACV may mistakenly close or it may not take any actions at a proper time. In this study, the effect of characteristic parameters such as pipeline operational pressure (POP) and pipeline pressure drop rate (ROD) due to rupture or a major leak was experimentally investigated on DPS. 25 different conditions with the double set of the mentioned typical characteristic parameters were chosen. In each condition, the differential pressure (DP) was measured over a period of 180 s by statistically analyzing the experimental results, so 25 maximum DP values (DPSs) were obtained. The DPS rises by an increase in ROD or a decrease in POP. Because of using nitrogen gas instead of natural gas for safety reasons and the uncertainties, the DPS results can be practically applied by adding a safety factor of 15%. Finally, the diagram of DPS with respect to ROD and that of non-dimensional DPS (DOP) versus non-dimensional ROD (RTP) were provided for different POP’s.
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