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Modeling and Control for Managed Pressure Drilling from Floaters: Heave Compensation by Automatic Nonlinear Control

机译:浮子管理压力钻井的建模与控制:自动非线性控制的升沉补偿

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摘要

Managed pressure drilling is a sophisticated pressure control method which is intended to meet increasingly high demands in drilling operations in the oil and gas industry. With this method, the well is pressurized and the drilling mud is released through a control choke which can be used to actively control/reject pressure variations. Such a control system needs to handle several disturbances, and in particular, vertical motion of the drill string causes severe pressure variations that need to be compensated by active use of the control choke. In this thesis we first analyze data from previous experiments with an existing control strategy and show that the main reason for the poor disturbance rejection is due to a control strategy based on an insufficient model of the pressure fluctuations, although practical issues like sampling time and choke friction also played a part. Then, we present several different control strategies for regulation of both top side and bottom hole pressures based on more detailed models of the well pressure dynamics. All controllers are tested in simulations and it is shown that either an output regulation controller or a controller based on the internal model principle will achieve satisfactory disturbance rejection. Lastly, some of these controllers are also tested on a high fidelity drilling simulator from IRIS, and a pressure regulation within plus/minus 0.5 bar is achieved for the choke pressure, and plus/minus 1.5 bar for the bottom hole pressure.
机译:管理压力钻井是一种先进的压力控制方法,旨在满足石油和天然气行业钻井作业中日益增长的需求。通过这种方法,井被加压并且通过控制节流阀释放钻井泥浆,该控制节流阀可用于主动控制/抑制压力变化。这样的控制系统需要处理几种干扰,并且特别地,钻柱的垂直运动引起严重的压力变化,需要通过主动使用控制扼流圈来补偿该压力变化。在本文中,我们首先分析了使用现有控制策略进行的先前实验的数据,结果表明,尽管存在诸如采样时间和节流等实际问题,但基于不良压力波动模型的控制策略是造成干扰抑制性能较差的主要原因。摩擦也起了作用。然后,基于井压动力学的更详细模型,我们提出了几种用于调节顶侧和底孔压力的不同控制策略。所有控制器均经过仿真测试,结果表明,输出调节控制器或基于内部模型原理的控制器均可实现令人满意的干扰抑制。最后,其中一些控制器也在IRIS的高保真钻孔模拟器上进行了测试,对于节流阀压力,正负0.5 bar的压力调节,对于井底压力正负1.5 bar的调节。

著录项

  • 作者

    Landet Ingar Skyberg;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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