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首页> 外文期刊>Journal of Petroleum Science & Engineering >Increasing the measurability range of a gas flow rate sensor by time series measurements
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Increasing the measurability range of a gas flow rate sensor by time series measurements

机译:通过时间序列测量来增加气体流量传感器的可测量范围

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In this paper we present a technique for extending the measurability range of a gas flow rate sensor (orifice meter) used for measuring the gas production in oil wells. To achieve that, we propose the use of a recursive least squares estimator whose parameters are updated in real time. A time series model is used to estimate the gas flow when it exceeds the range of the orifice meter. We tested the algorithm in a pilot plant that emulates an oil production method denominated "plunger-lift". Since the algorithms must run in real time, to evaluate the adequacy of the model used, we had to adapt the expressions of the autocorrelation, cross-correlation, the mean and variance, in order they could be evaluated recursively. The main advantage of this approach is that the algorithm can be easily incorporated to the plant supervisory system with no need of hardware changes in the production plant.
机译:在本文中,我们提出了一种扩展用于测量油井中产气量的气体流速传感器(节流孔板)的可测量范围的技术。为此,我们建议使用递归最小二乘估计器,其参数会实时更新。当气体流量超出孔板流量计的范围时,将使用时间序列模型来估计气体流量。我们在模拟中石油生产方法的试验工厂中测试了该算法,该方法称为“柱塞举升”。由于算法必须实时运行,为了评估所使用模型的充分性,我们必须调整自相关,互相关,均值和方差的表达式,以便可以对其进行递归评估。这种方法的主要优点是该算法可以轻松地合并到工厂监控系统中,而无需在生产工厂中更改硬件。

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