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Automatic Coordinated Control of Pump Rates and Choke Valve for Compensating Pressure Fluctuations during Surge and Swab Operations

机译:泵速和节流阀的自动协调控制可补偿喘振和拭子操作过程中的压力波动

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In this paper we present new methods for coordinated con- trol of pump rates and choke valve for compensating pres- sure °uctuations during surge and swab operations. In hydrocarbon well drilling, automatic control of the choke valve improves the control of the bottom-hole pres- sure. This has made it possible to drill wells where it previously was not possible to reach total depth, due to narrow pressure margins in the reservoir. This concept is developed further in this paper, to also include automatic control of pump rates, coordinated with the choke valve control. In conˉgurations where the choke valve is ˉtted with a °ow rate controllable annulus back-pressure pump, the sit- uation calls for structured methods for automatic and coor- dinated control of the main mud pump, the back-pressure pump and the annulus return choke valve. In this paper, well known methods for multivariable control are applied to the drilling process. These meth- ods are based on identiˉcation of coupling and interaction between system input (controllable variables), e.g. pump rates and choke valve settings, and output (measured or estimated variables), e.g. pressure at given depths. It is shown how the well pressure proˉle can be kept within tight margins, subject to disturbances such as drillstring movement in surge and swab operations. Automatic coordinated control is shown through nu- merical simulations on a detailed, space-discretized well model. Comparisons are made with the case of complete manual control and the intermediate case where only the annulus return choke line pump is automated, using a sim- ple linear controller. The results with automatic coordinated control of pump rates and choke valve are very promising - the perfor- mance of such a solution, measured by variance in pressure °uctuations, is improved - compared to both the case of manual control and the case of only automated choke line pump control.
机译:在本文中,我们提出了一种新的方法来协调泵速和节流阀的控制,以补偿喘振和药签操作过程中的压力波动。在碳氢化合物钻井中,节流阀的自动控制可改善对井底压力的控制。由于储层中的压力裕度狭窄,因此可以在以前无法达到总深度的地方进行钻井。该概念在本文中得到了进一步发展,还包括与节流阀控制相配合的泵速自动控制。在节流阀装有流速可控的环形背压泵的配置中,这种情况要求采用结构化方法来自动和协调地控制主泥浆泵,背压泵和环形回油口。节流阀。在本文中,将众所周知的多变量控制方法应用于钻井过程。这些方法基于系统输入(可控变量)之间耦合和交互的识别。泵速和节流阀设置以及输出(测量或估计的变量),例如给定深度的压力。它显示了如何将井眼压力分布保持在狭窄的范围内,不受扰动的影响,例如在调压和拭子操作中钻柱运动。通过数字模拟在详细的,空间离散的井模型上显示自动协调控制。使用简单的线性控制器,对完全手动控制的情况和仅对环形回油管管线泵进行自动化的中间情况进行了比较。自动调节泵速和节流阀的结果非常有希望-与手动控制和仅自动控制相比,这种解决方案的性能(通过压力波动的变化来衡量)得到了改善扼流管泵控制。

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