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    • 5. 发明申请
    • Fluid Injection Completion Techniques
    • 流体注射完成技术
    • US20110162848A1
    • 2011-07-07
    • US12596316
    • 2009-06-25
    • Brian W. DuffyRahul PakalTed A. LongBruce A. Dale
    • Brian W. DuffyRahul PakalTed A. LongBruce A. Dale
    • E21B43/16
    • E21B43/16G01V11/00
    • Methods for injecting a fluid into a subsurface formation are provided. Each of the methods includes the obtaining data, including formation parameters and operational variables, related to an injection well. A regime of operation for the injection well is determined. The regime of operation is determined using a heuristic model. In one aspect, one or more operational variables, including completion design, reservoir development procedures, and/or injection procedures, is designed based at least in part on the determined regime of operation. Water or other fluid may then be injected into the subsurface formation. The step of determining the regime of operation for the injection well may use a full physics computational simulation to construct a mathematical model that can estimate the operating regime for the water injection well. Alternatively or in addition, field data may be used.
    • 提供了将流体注入地下地层的方法。 每个方法包括与注入井有关的获得数据,包括地层参数和操作变量。 确定注射井的操作方案。 使用启发式模型确定操作制度。 在一个方面,至少部分地基于确定的操作方案来设计一个或多个操作变量,包括完成设计,油藏开发程序和/或注射程序。 然后可以将水或其它流体注入地下地层。 确定注入井操作方式的步骤可以使用完整的物理计算模拟来构建可以估计注水井的操作状态的数学模型。 或者或另外,可以使用现场数据。
    • 6. 发明授权
    • Fluid injection completion techniques
    • 流体注射完成技术
    • US09175555B2
    • 2015-11-03
    • US12596316
    • 2009-06-25
    • Brian W. DuffyRahul PakalTed A. LongBruce A. Dale
    • Brian W. DuffyRahul PakalTed A. LongBruce A. Dale
    • G01V1/40E21B43/16G01V11/00
    • E21B43/16G01V11/00
    • Methods for injecting a fluid into a subsurface formation are provided. Each of the methods includes the obtaining data, including formation parameters and operational variables, related to an injection well. A regime of operation for the injection well is determined. The regime of operation is determined using a heuristic model. In one aspect, one or more operational variables, including completion design, reservoir development procedures, and/or injection procedures, is designed based at least in part on the determined regime of operation. Water or other fluid may then be injected into the subsurface formation. The step of determining the regime of operation for the injection well may use a full physics computational simulation to construct a mathematical model that can estimate the operating regime for the water injection well. Alternatively or in addition, field data may be used.
    • 提供了将流体注入地下地层的方法。 每个方法包括与注入井有关的获得数据,包括地层参数和操作变量。 确定注射井的操作方案。 使用启发式模型确定操作制度。 在一个方面,至少部分地基于确定的操作方案来设计一个或多个操作变量,包括完成设计,油藏开发程序和/或注射程序。 然后可以将水或其它流体注入地下地层。 确定注入井操作方式的步骤可以使用完整的物理计算模拟来构建可以估计注水井的操作状态的数学模型。 或者或另外,可以使用现场数据。