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Control Oriented Modeling of a De-oiling Hydrocyclone

机译:除油旋流器的面向控制的建模

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Deoiling hydrocyclones are an important part of the downstream water treatment in offshore oil & gas production, they ensure a low discharge of oil and thus a higher yield of produced oil. This work investigates the possibility of developing a simple control-oriented model of a de-oiling hydrocyclone based on experimental data that can support systematic analysis and control design of hydrocyclone systems. The most widely used control solution of a hydrocyclone is a Pressure Drop Ratio (PDR) control strategy, which is often empirically designed and experimentally tuned in a case-by-case manner. There is a lack of a systematic and deep-insight analysis of the capability, stability and limitations of these control solutions, as there are few control-oriented models available for de-oiling hydrocyclone systems. This paper proposes a method of retrieving a set of simple 1st-order transfer function models from a set of designed experiments based on a lab-scaled hydrocyclone system. Some preliminary results are also illustrated and discussed. The conclusion of this preliminary study is that the models obtained can emulate the dynamics of the system in a reasonable manner subject to the trade-off between simplicity and accuracy. In addition, higher order state space models are introduced and their relative advantage of depicting the complicated dynamics of the hydrocyclone's pressures is investigated.
机译:在海上油气生产中,旋流除油器是下游水处理的重要组成部分,它们可确保少排放石油,从而提高产出石油的产量。这项工作调查了基于实验数据开发脱油水力旋流器的简单面向控制模型的可能性,该数据可以支持水力旋流器系统的系统分析和控制设计。水力旋流器最广泛使用的控制解决方案是压降比(PDR)控制策略,该策略通常根据具体情况进行经验设计和实验调整。缺乏对这些控制解决方案的功能,稳定性和局限性的系统且深入的分析,因为很少有可用于水力旋流器系统除油的面向控制的模型。本文提出了一种基于实验室规模的水力旋流器系统,从一组设计的实验中检索一组简单的一阶传递函数模型的方法。一些初步结果也得到了说明和讨论。这项初步研究的结论是,所获得的模型可以在简单性和准确性之间进行权衡的情况下,以合理的方式模拟系统的动力学。此外,引入了高阶状态空间模型,并研究了描述水力旋流器压力复杂动力学的相对优势。

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