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A Hydraulic Model for Multiphase Flow Based on the Drift Flux Model in Managed Pressure Drilling

机译:基于管理压力钻井漂移通量模型的多相流动液压模型

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摘要

Managed pressure drilling (MPD) is a drilling technique used to address the narrow density window under complex geological environments. It has widespread applications in the exploration and exploitation of oil and gas, both onshore and offshore. In this study, to achieve effective control of the downhole pressure to ensure safety, a gas−liquid two-phase flow model based on the drift flux model is developed to describe the characteristics of transient multiphase flow in the wellbore. The advection upwind splitting method (AUSM) numerical scheme is used to assist with calculation and analysis, and the monotonic upwind scheme for conservation laws (MUSCLs) technique with second-order precision is adopted in combination with the Van Leer slope limiter to improve precision. Relevant data sourced from prior literature are used to validate the suggested model, the results of which reveal an excellent statistical consistency. Further, the influences of various parameters in a field application, including backpressure, density, and mass flow, are analyzed. Over the course of later-stage drilling, a combination of wellhead backpressure and displacement is recommended to exercise control.
机译:控制压力钻井(MPD)是用于解决复杂地质条件下的环境中窄密度窗口钻井技术。它在勘探和油气开采应用领域广泛,陆上和海上。在这项研究中,以达到有效的控制井下压力,以确保安全性的基础上,漂移通量模型的气液二相流模型来描述瞬态的特性在井筒多相流。平流逆风分割方法(AUSM)数值格式使用具有计算和分析,以及用于守恒定律(MUSCLs)技术与二阶精度单调迎风格式以帮助组合采用与范里尔斜率限制器,以提高精度。从现有文献来源相关数据用于验证建议的模型,它的结果显示优异的统计一致性。此外,在现场应用的各种参数,包括背压,密度和质量流量的影响,进行了分析。在后期的钻探过程中,井口回压和位移的组合,推荐运动控制。

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