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首页> 外文期刊>Chemometrics and Intelligent Laboratory Systems >Online estimation of reject gas flow rates in compact flotation units for produced water treatment: A feasibility study
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Online estimation of reject gas flow rates in compact flotation units for produced water treatment: A feasibility study

机译:在线估算用于生产水处理的紧凑型浮选装置中的不合格气体流速:可行性研究

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The largest waste water stream from oil and gas production wells is referred to as produced water (PW). One way of treating PW to limits acceptable for discharge into sea is by the use of compact flotation units (CFU). Currently, CFUs' are operated manually due to lack of advanced monitoring solutions. The main areas of interest in the current operation of the flotation unit are to provide online measurements of both liquid and gas flow rates through the reject stream of the flotation unit. A full scale feasibility study on the application of acoustic measurements and partial least squares regression as a tool for online estimation of the reject gas flow rate was investigated. From the experiments conducted to determine the optimal sensor location, it was concluded that there were no significant differences between the four sensor locations investigated. Several reject gas flow rate models were calibrated and validated with fully independent data. The average root mean square error of prediction (RMSEP) was 7.5percent within the experimental range (0.07-2.5 Sm~(3)/h). The RMSEP for experiments with varying salt concentration was 0.25percent (within the range of 0-5.5percent) whilst that for varying temperature was 1.8 deg C (within the range of 30-60 deg C). The model for reject liquid flow rates through the CFU had a RMSEP of 16.86 l/h (within the range of 225-485 l/h). These promising results will form the basis for further development and implementation of the technique in flotation units.
机译:来自油气生产井的最大废水流被称为产出水(PW)。将PW处理到可排入海洋的极限的一种方法是使用紧凑型浮选装置(CFU)。当前,由于缺乏先进的监控解决方案,CFU是手动操作的。浮选装置当前操作的主要关注领域是提供在线测量浮选装置排出物流中的液体和气体流速。进行了将声学测量和偏最小二乘回归作为在线估算剔除气体流速的工具的全面可行性研究。从确定最佳传感器位置的实验可以得出结论,所研究的四个传感器位置之间没有显着差异。使用完全独立的数据对几个剔除气体流速模型进行了校准和验证。在实验范围(0.07-2.5 Sm〜(3)/ h)内,平均预测均方根误差(RMSEP)为7.5%。盐浓度变化的实验的RMSEP为0.25%(在0-5.5%的范围内),而温度变化的实验的RMSEP为1.8摄氏度(在30-60℃的范围内)。通过CFU的废液流速模型具有RMSEP为16.86 l / h(在225-485 l / h范围内)。这些有希望的结果将为进一步开发和在浮选装置中实施该技术奠定基础。

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