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    • 1. 发明申请
    • POWER SOURCE FOR COMPLETION APPLICATIONS
    • 电源完成应用
    • US20130229142A1
    • 2013-09-05
    • US13409975
    • 2012-03-01
    • Sorin G. TeodorescuLev Ring
    • Sorin G. TeodorescuLev Ring
    • H02J7/00
    • H02J7/0054E21B41/0085H01M6/385
    • Methods and apparatus are provided for continuously powering tools downhole for extended periods of time, such as for the life of the producing well. Batteries may power the downhole tools, but traditionally, the batteries may last up to 2 years, and in some cases, up to 5 years may be reached with an optimized data sampling rate and power management scheme. After that time, operations may be halted temporarily for replacing the batteries. According to embodiments of the present invention, in contrast, rechargeable batteries may be utilized downhole to provide power to operate the tools, and rather than halting operations and retrieving the rechargeable batteries to the surface for recharging, reserve batteries may be used for recharging the rechargeable batteries. In many cases, these well tools may be designed to operate for a long period of time (e.g., around 10-20 years), depending on the life of the producing well.
    • 提供了方法和装置,用于在井下持续供电工具延长的时间,例如生产井的寿命。 电池可能为井下工具供电,但传统上电池可能持续长达2年,在某些情况下,可能会达到最长5年的优化数据采样率和电源管理方案。 之后,为了更换电池,可能暂时停止操作。 根据本发明的实施例,相比之下,可充电电池可以在井下利用以提供操作工具的电力,而不是停止操作并且将可再充电电池取回到表面以进行再充电,备用电池可以用于对可再充电 电池 在许多情况下,这些好的工具可以被设计为长时间运行(例如,大约10-20年),这取决于生产井的寿命。
    • 2. 发明授权
    • Power source for completion applications
    • 完成应用的电源
    • US08975861B2
    • 2015-03-10
    • US13409975
    • 2012-03-01
    • Sorin G. TeodorescuLev Ring
    • Sorin G. TeodorescuLev Ring
    • H02J7/00
    • H02J7/0054E21B41/0085H01M6/385
    • Methods and apparatus are provided for continuously powering tools downhole for extended periods of time, such as for the life of the producing well. Batteries may power the downhole tools, but traditionally, the batteries may last up to 2 years, and in some cases, up to 5 years may be reached with an optimized data sampling rate and power management scheme. After that time, operations may be halted temporarily for replacing the batteries. According to embodiments of the present invention, in contrast, rechargeable batteries may be utilized downhole to provide power to operate the tools, and rather than halting operations and retrieving the rechargeable batteries to the surface for recharging, reserve batteries may be used for recharging the rechargeable batteries. In many cases, these well tools may be designed to operate for a long period of time (e.g., around 10-20 years), depending on the life of the producing well.
    • 提供了方法和装置,用于在井下持续供电工具延长的时间,例如生产井的寿命。 电池可能为井下工具供电,但传统上电池可能持续长达2年,在某些情况下,可能会达到最长5年的优化数据采样率和电源管理方案。 之后,为了更换电池,可能暂时停止操作。 根据本发明的实施例,相比之下,可充电电池可以在井下利用以提供操作工具的电力,而不是停止操作并且将可再充电电池取回到表面以进行再充电,备用电池可以用于对可再充电 电池 在许多情况下,这些好的工具可以被设计为长时间运行(例如,大约10-20年),这取决于生产井的寿命。
    • 5. 发明授权
    • Compliant expansion swage
    • 符合扩张模具
    • US08356663B2
    • 2013-01-22
    • US13158018
    • 2011-06-10
    • Lev RingVaradaraju GandikotaMike A. LukeDavid S. Li
    • Lev RingVaradaraju GandikotaMike A. LukeDavid S. Li
    • E21B43/10
    • B21D31/04E21B43/105
    • The present invention generally relates to a swage assembly that is movable from a compliant configuration having a first shape to a substantially non-compliant configuration having a second shape. In one aspect, an expansion swage for expanding a wellbore tubular is provided. The expansion swage includes a body and a solid cone disposed on the body. The expansion swage further includes a deformable cone disposed on the body, wherein the solid cone is made from a first material and the deformable cone is made from a second material and wherein the deformable cone is movable relative to the body when the expansion swage is in a compliant configuration. In another aspect, a method of expanding a wellbore tubular is provided.
    • 本发明总体上涉及一种可从具有第一形状的柔性构造到具有第二形状的基本不顺应构造的可移动的模锻组件。 在一个方面,提供了用于膨胀井眼管的膨胀模。 膨胀模具包括设置在身体上的身体和实心锥体。 膨胀型进一步包括设置在主体上的可变形锥体,其中实心锥体由第一材料制成,并且可变形锥体由第二材料制成,并且其中可变形锥体在膨胀模具进入时可相对于主体移动 兼容配置。 另一方面,提供了一种膨胀井筒的方法。
    • 9. 发明授权
    • Compliant expansion swage
    • 符合扩张模具
    • US07980302B2
    • 2011-07-19
    • US12250080
    • 2008-10-13
    • Lev RingVaradaraju GandikotaMike A. LukeDavid S. Li
    • Lev RingVaradaraju GandikotaMike A. LukeDavid S. Li
    • E21B43/10
    • B21D31/04E21B43/105
    • The present invention generally relates to a swage assembly that is movable from a compliant configuration having a first shape to a substantially non-compliant configuration having a second shape. In one aspect, an expansion swage for expanding a wellbore tubular is provided. The expansion swage includes a body and a solid cone disposed on the body. The expansion swage further includes a deformable cone disposed on the body, wherein the solid cone is made from a first material and the deformable cone is made from a second material and wherein the deformable cone is movable relative to the body when the expansion swage is in a compliant configuration. In another aspect, a method of expanding a wellbore tubular is provided.
    • 本发明总体上涉及一种可从具有第一形状的柔性构造到具有第二形状的基本不顺应构造的可移动的模锻组件。 在一个方面,提供了用于膨胀井眼管的膨胀模。 膨胀模具包括设置在身体上的身体和实心锥体。 膨胀型进一步包括设置在主体上的可变形锥体,其中实心锥体由第一材料制成,并且可变形锥体由第二材料制成,并且其中可变形锥体在膨胀模具进入时可相对于主体移动 兼容配置。 另一方面,提供了一种膨胀井筒的方法。