首页> 外文会议>Society of Petrophysicists and Well Log Analysts, Inc.;SPWLA Annual Logging Symposium >FORMATION PRESSURE ESTIMATION IN ULTRA-LOW PERMEABLE RESERVOIRS EMPLOYING FORMATION RATE ANALYSIS (FRA) AND ARTIFICIAL INTELLIGENCE CONTROLLED TOOLS
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FORMATION PRESSURE ESTIMATION IN ULTRA-LOW PERMEABLE RESERVOIRS EMPLOYING FORMATION RATE ANALYSIS (FRA) AND ARTIFICIAL INTELLIGENCE CONTROLLED TOOLS

机译:采用形成速率分析(FRA)和人工智能控制工具的超低渗透储层中的形成压力估计

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The necessity of knowing formation pressure is crucial to classifying pressure regimes for better understanding in well planning and to de-risk potential abnormal pressure conditions before any future field development wells are drilled, consequently minimizing operational cost.Wireline formation pressure testing has been a useful and reliable technology, that has evolved to confront the challenge of ultra-low permeable reservoir conditions by innovating and improving pump capability, accuracy in pressure measurements, automated control and the implantation of Formation Rate Analysis (FRA) intertwined with an Artificial Intelligent tool.In any pressure testing, the key factor is to be able to withdraw volume from the formation to generate a disturbance on formation pore pressure that a pressure gauge can measure. In the past this has been a difficult task in ultra-low permeable zones. The new generation of wireline tools are capable of withdrawing volume from ultra-low permeable reservoirs, with mobilities lower than 0.01mD/cP. This has been made possible by utilizing control of the pump speed down to 0.0003cc/s which then gives the operator the ability to test ultra-tight formations without the need for inflatable packers. By pulling down the pressure at an extremely low rate and using Artificial Intelligence to control the rate by knowing the formation rate, a proportional amount of volume can be extracted without calling it a tight test. During the operation by observing the rate, and making sure the pump is not oscillating, which indicates the formation rate is lower than the lowest rate the pump can withdraw, the test can be validated for formation flow and the pressure transient of the build – up can be analysed to confirm that at least spherical flow is observed.Once reservoir communication has been confirmed and by analysing drawdown and build-up pressure versus volume withdrawn and implementing the FRA equation, the reservoir pressure can be back calculated by considering isothermal compressibility and FRA slope.This paper highlights the best technical approach to quality check and quality control these tests, showing examples of various wells, where the technique has been used to predict a formation pressure, which can be used for further use for field development, drilling optimisation and production profiles. These pressures would never have been possible using static rates and volume.
机译:知道形成压力的必要性对于分类压力制度来说至关重要,以便在规划井中更好地理解以及在任何未来的田间发育井之前更好地理解,从而最大限度地减少运营成本。有线形成压力测试是一种有用可靠的技术,它通过创新和提高泵能力,压力测量,自动控制和植入形成速率分析(FRA)来对抗超低渗透油藏条件的挑战与人工智能工具交织在一起。在任何压力测试中,关键因素都能够从地层中抽出体积以产生对压力表可以测量的形成孔隙压力的干扰。在过去,这是超低渗透区的艰巨任务。新一代电线工具能够从超低渗透储存器中取出体积,迁移率低于0.01MD / CP。通过利用泵速下降至0.0003cc / s的控制,这是可能的,然后使操作员能够在不需要可充气封装器的情况下测试超紧的地层的能力。通过以极低的速率下拉压力并使用人工智能来通过了解形成速率来控制速率,可以提取比例的体积而不将其称为紧密的测试。在操作期间通过观察速率,并确保泵未振荡,这表明形成速率低于泵可以退出的最低速率,可以验证测试以形成流量和压力的压力可以分析以确认至少观察到球形流动。一旦已经确认了储存器通信并且通过分析了拉伸和积聚压力而不是撤回并实现FRA方程,可以通过考虑等温可压缩性和FRA斜率来返回储层压力。本文突出了质量检查和质量控制这些测试的最佳技术方法,示出了各种井的示例,其中该技术已被用于预测形成压力,可用于进一步用于现场开发,钻井优化和生产型材。使用静态速率和体积永远不会实现这些压力。

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