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    • 1. 发明申请
    • AUTOMATED DIRECTIONAL DRILLING APPARATUS AND METHODS
    • 自动方向钻孔设备和方法
    • US20140151121A1
    • 2014-06-05
    • US14174522
    • 2014-02-06
    • Scott Gilbert BooneBrian EllisColin GillanBeat Küttel
    • Scott Gilbert BooneBrian EllisColin GillanBeat Küttel
    • E21B44/02E21B7/04
    • E21B44/02E21B7/04
    • Methods and systems for drilling to a target location include a control system that receives an input comprising a planned drilling path to a target location and determines a projected location of a bottom hole assembly of a drilling system. The projected location of the bottom hole assembly is compared to the planned drilling path to determine a deviation amount. A modified drilling path is created to the target location as selected based on the amount of deviation from the planned drilling path, and drilling rig control signals that steer the bottom hole assembly of the drilling system to the target location along the modified drilling path are generated to intersect the planned drilling path if the amount of deviation from the planned path exceeds a first threshold amount of deviation.
    • 用于钻到目标位置的方法和系统包括控制系统,其接收包括到目标位置的计划钻孔路径的输入并确定钻井系统的井底组件的投影位置。 将底孔组件的投影位置与计划的钻孔路径进行比较,以确定偏差量。 基于与计划的钻孔路径的偏差量来选择改变的钻孔路径到目标位置,并且生成将钻井系统的井底组件沿着改进的钻孔路径转向目标位置的钻机控制信号 如果与计划路径的偏差量超过第一阈值偏差量,则与计划的钻孔路径相交。
    • 4. 发明授权
    • Tubular handling device and methods
    • 管状处理装置及方法
    • US08720541B2
    • 2014-05-13
    • US12982644
    • 2010-12-30
    • Brian EllisCraig WeemsFaisal J. YousefBeat Küttel
    • Brian EllisCraig WeemsFaisal J. YousefBeat Küttel
    • E21B19/16
    • E21B19/16E21B19/07E21B19/10
    • A tubular handling apparatus including a tubular member running tool adapted to provide load-bearing, and preferably torquing, capacity upon the gripping of a tubular is provided. The running tool includes a slotted member having a plurality of elongated slots, a recessed member associated with the slotted member and having a plurality of recesses, and a plurality of gripping elements disposed between the slotted member and recessed member. Each such gripping element is adapted to move with an engaged tubular so as to grip the tubular. A tubular member elevator associated to the running tool, as well as related floor slips, are also encompassed. Methods of casing running are also included.
    • 提供了一种管状处理装置,其包括管状部件运行工具,该管状部件运行工具适于在夹持管状物时提供承载力,并且优选地扭矩。 运行工具包括具有多个细长槽的开槽构件,与开槽构件相关联并具有多个凹部的凹入构件以及设置在开槽构件和凹入构件之间的多个夹紧元件。 每个这样的夹持元件适于与接合的管状物一起移动以便夹紧管状物。 与运行工具相关联的管状构件电梯以及相关的底板也被包括在内。 还包括套管运行的方法。
    • 6. 发明申请
    • TUBULAR HANDLING DEVICE AND METHODS
    • 管状处理装置及方法
    • US20110147010A1
    • 2011-06-23
    • US12982644
    • 2010-12-30
    • Brian EllisCraig WeemsFaisal J. YousefBeat Küttel
    • Brian EllisCraig WeemsFaisal J. YousefBeat Küttel
    • E21B19/16
    • E21B19/16E21B19/07E21B19/10
    • A tubular handling apparatus including a tubular member running tool adapted to provide load-bearing, and preferably torquing, capacity upon the gripping of a tubular is provided. The running tool includes a slotted member having a plurality of elongated slots, a recessed member associated with the slotted member and having a plurality of recesses, and a plurality of gripping elements disposed between the slotted member and recessed member. Each such gripping element is adapted to move with an engaged tubular so as to grip the tubular. A tubular member elevator associated to the running tool, as well as related floor slips, are also encompassed. Methods of casing running are also included.
    • 提供了一种管状处理装置,其包括管状部件运行工具,该管状部件运行工具适于在夹持管状物时提供承载力,并且优选地扭矩。 运行工具包括具有多个细长槽的开槽构件,与开槽构件相关联并具有多个凹部的凹入构件以及设置在开槽构件和凹入构件之间的多个夹紧元件。 每个这样的夹持元件适于与接合的管状物一起移动以便夹持管状物。 与运行工具相关联的管状构件电梯以及相关的底板也被包括在内。 还包括套管运行的方法。
    • 10. 发明申请
    • MULTI-BUFFER SUPPORT FOR OFF-SCREEN SURFACES IN A GRAPHICS PROCESSING SYSTEM
    • 用于图形处理系统中的非屏幕表面的多缓冲器支持
    • US20090184972A1
    • 2009-07-23
    • US12116065
    • 2008-05-06
    • Steven Todd WeybrewBrian Ellis
    • Steven Todd WeybrewBrian Ellis
    • G09G5/36
    • G06T15/005
    • In general, the present disclosure describes various techniques for providing multi-buffer support for off-screen surfaces in a graphics system. One example device includes one or more buffer areas and one or more processors. The one or more processors are configured to allocate multiple buffers within the buffer space that are all associated with an off-screen surface using in graphics processing. The one or more processors are further configured to identify a first buffer within the buffers as a write buffer for the off-screen surface and to further identify a second buffer within the buffers as a read buffer for the off-screen surface, such that information relating to the off-screen surface is written into the first buffer during a write operation and information relating to the off-screen surface is read out of the second buffer during a read operation.
    • 通常,本公开描述了用于在图形系统中为屏幕外表面提供多缓冲器支持的各种技术。 一个示例性设备包括一个或多个缓冲区域和一个或多个处理器。 一个或多个处理器被配置为在缓冲器空间内分配多个缓冲器,这些缓冲器空间都与在图形处理中使用的离屏幕表面相关联。 一个或多个处理器还被配置为将缓冲器内的第一缓冲器识别为用于屏幕外表面的写缓冲器,并且进一步将缓冲器内的第二缓冲器识别为用于屏幕外表面的读缓冲器,使得信息 在写入操作期间,与屏幕外表面相关的信息被写入第一缓冲器,并且在读取操作期间从与第二缓冲器相关的与屏幕外表面相关的信息被读出。