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Uncertainty Analysis of Fluorescence-Based Oil-In-Water Monitors for Oil and Gas Produced Water

机译:荧光基油水监测器的不确定性分析石油和天然气生产的水

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摘要

Offshore oil and gas facilities are currently measuring the oil-in-water (OiW) concentration in the produced water manually before discharging it into the ocean, which in most cases fulfills the government regulations. However, as stricter regulations and environmental concerns are increasing over time, the importance of measuring OiW in real-time intensifies. The significant amount of uncertainties associated with manual samplings, that is currently not taken into consideration, could potentially affect the acceptance of OiW monitors and lower the reputation of all online OiW measurement techniques. This work presents the performance of four fluorescence-based monitors on an in-house testing facility. Previous studies of a fluorescence-based monitor have raised concerns about the measurement of OiW concentration being flow-dependent. The proposed results show that the measurements from the fluorescence-based monitors are not or insignificantly flow-dependent. However, other parameters, such as gas bubbles and droplet sizes, do affect the measurement. Testing the monitors’ calibration method revealed that the weighted least square is preferred to achieve high reproducibility. Due to the high sensitivity to different compositions of atomic structures, other than aromatic hydrocarbons, the fluorescence-based monitor might not be feasible for measuring OiW concentrations in dynamic separation facilities with consistent changes. Nevertheless, they are still of interest for measuring the separation efficiency of a deoiling hydrocyclone to enhance its deoiling performance, as the separation efficiency is not dependent on OiW trueness but rather the OiW concentration before and after the hydrocyclone.
机译:海上石油和天然气设施目前在将生产的水中的水含水(OIW)浓度在将其卸载到海洋中,在大多数情况下履行政府法规。然而,随着时间更长的法规和环境问题随着时间的推移而增加,测量oiw在实时加剧的重要性。目前未考虑的手动采样有关的大量不确定性可能会影响OIW监视器的接受,并降低所有在线OIW测量技术的声誉。这项工作提出了在内部测试设施上进行四种基于荧光的监视器的性能。先前对荧光的监测器的研究提出了关于测量OIW浓度的流动依赖性的担忧。所提出的结果表明,荧光的监测器的测量不是或微不足道的流动依赖性。然而,其他参数,例如气泡和液滴尺寸,确实影响测量。测试监视器的校准方法显示,加权最小二乘是达到高再现性的。由于对不同组成的原子结构组成的敏感性,除芳烃外,基于荧光的监测仪可能不可行,可用于测量动态分离设施中的OIW浓度,其变化一致。尽管如此,它们仍然有兴趣测量脱胶水力旋流素的分离效率以增强其DeoIning性能,因为分离效率不依赖于氢胞轴之前和之后的OiW浓度,而是浓度。

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