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Cost-Effective ERT Technique for Oil-in-Water Measurement for Offshore Hydrocyclone Installations

机译:用于海上水力旋流器装置的水性水性测量的经济高效的ert技术

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The goal of this paper is to introduce and design a cost-effective Oil-in-Water (OiW) measuring instrument, which will be investigated for its value in increasing the efficiency of a deoiling hydrocyclone. The technique investigated is based on Electrical Resistivity Tomography (ERT), which basic principle is to measure the resistivity of substances from multiple electrodes and from these measurements create a 2-D image of the oil and gas component in the water. This technique requires the measured components to have different electrical resistances, such as seawater which has a lower electrical resistance than hydrocarbon oil and gas. This work involves construction of a pilot plant, for testing the feasibility of ERT for OiW measurements, and further exploring if this measured signal can be applied as a reliable feedback signal in optimization of the hydrocyclone's efficiency. Different algorithms for creating 2-D images and the feasibility of estimating OiW concentrations are studied and evaluated. From both steady state and continuous laminate flow perspectives, with respect to the objective which is to use this measurement for feedback control purposes.
机译:本文的目的是引入和设计一种经济高效的油 - 水(OIW)测量仪器,该仪器将在提高Deoiming氢旋流器的效率方面进行调查。研究的技术基于电阻率断层扫描(ERT),基本原理是测量来自多个电极的物质的电阻率,并且从这些测量中产生油气组分的2-D图像。该技术要求测量的部件具有不同的电阻,例如具有比烃油和气体更低的电阻的海水。这项工作涉及施工试验工厂,用于测试OIW测量的ERE的可行性,以及如果可以在优化水力旋流器的效率中将其作为可靠的反馈信号应用,则进一步探索。研究和评估了用于创建2-D图像的不同算法和估计OIW集中的可行性。从稳态和连续的层压流程透视图,关于使用该测量的目标进行反馈控制目的。

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