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Automated Well Control Decision-Making during Managed Pressure Drilling Operations

机译:管理压力钻井操作中的自动化井控制决策

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Blow-out prevention and formation gas/fluid influx control is a major concern in any drilling operation. In conventional drilling,the only widely accepted response to a gas influx is to shut the well in on the BOPs.New Managed Pressure Drilling(MPD)technology using the constant bottom-hole pressure (CBHP)technique allows for circulating small and medium-sized influxes out without the need to shut in the well,either by increasing casing back-pressure and/or adjusting pump flow rate.Evident benefits include a faster response to the influx(with clear safety benefits)and a considerable time and cost savings compared to the conventional approach. Unfortunately,there is currently no method available to decide upon the best MPD-CBHP response during an influx,because such a response depends on many parameters,such as Maximum Allowable Surface Pressure(MASP),wellbore geometry,fracture pressure of any weak zones exposed in open hole, type of drilling fluid,influx size,etc.To remedy this situation,we present a fast and accurate decision-making method that overcomes the traditional difficulties and automatically selects a best well control response.The method incorporates a transient multi-phase model based on mass,energy and momentum conservation.A sophisticated numerical simulator was developed for this purpose.Comparing the actual well response with simulated results during an influx event and following the proposed algorithm allows the best response to be taken in a quick,convenient,and accurate manner.Moreover,the approach lends itself well to fully automated control. Here,we describe the new method and its validation using available two-phase experimental data for annular air-mud flow for a wide range of flow rates and flow regimes.We believe that the method provides a powerful new decision-making and design tool in MPD operations that ensures delivery of safer wells with lower non-productive time and associated trouble cost spent on well control operations.
机译:吹出预防和形成气体/流体流入控制是在任何钻井操作的一个主要关注的问题。在常规钻孔,在气体流入的唯一被广泛接受的响应是关井在使用恒定井底压力的BOPs.New控制压力钻井(MPD)技术(CBHP)技术允许用于循环小和中型涌入出来,而不需要在井关闭,通过增加壳体的背压和/或调整泵流量rate.Evident优点包括更快的响应于涌入(具有明确的安全利益)和相当大的节省时间和成本相比传统的方法。不幸的是,目前还没有可用的时涌入期间最好MPD-CBHP响应来决定的方法,因为这样的反应取决于许多参数,如最大允许面压力(MASP),井眼几何形状,暴露任何弱区断裂压力在开放孔,钻井液,流入大小,etc.To补救这种情况的类型,我们提出一种克服了传统的困难的快速且准确的决策方法,并自动选择最佳井控制response.The方法结合瞬时多基于质量,能量和动量conservation.A复杂的数值模拟这个purpose.Comparing的算法如下涌入事件,并在与模拟结果的实际以及响应允许以快速采取最好的回应被开发,方便阶段模型,准确manner.Moreover,这种方法很适合于全自动化控制。在这里,我们描述了新的方法和验证使用环形空气泥石流提供了两个阶段的实验数据为广泛范围的流速和流量regimes.We认为,该方法提供了一个强大的新的决策和设计工具MPD操作与较低的非生产时间和花费在井控操作相关的故障成本更安全水井,确保交付。

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