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    • 2. 发明授权
    • Method for using a multipurpose system
    • 使用多用途系统的方法
    • US06901998B1
    • 2005-06-07
    • US10390514
    • 2003-03-17
    • Joop RoodenburgChristopher Louis BeatoRobert Frodo Van Kuilenburg
    • Joop RoodenburgChristopher Louis BeatoRobert Frodo Van Kuilenburg
    • E21B19/00E21B19/02E21B19/14
    • E21B19/143E21B19/002E21B19/02
    • The invention is a method for drilling a well and for well intervention using a multipurpose system on a pivoting, slidable cantilever on a platform to drill a well and to perform well intervention operations, wherein the method involves pulling a completion tubing out of the well; forming completion tubing segments pulled from the well; setting back the segments into a storage area; running the coiled tubulars into the well; removing used completion equipment from the well; preparing the well for new completion equipment with the coiled tubulars; pulling segments of new completion tubing from the storage area and breaking segments of new completion tubing into individual joints and removing the individual joints from the cantilever; running into the well with coiled tubulars and installing the new completion equipment; building segments from individual joints and setting the segments in the storage area; and running segments and new completion equipment into the well.
    • 本发明是一种用于钻井和用于在平台上的枢转的可滑动悬臂上的多用途系统进行良好干预的钻井方法,用于钻井并执行良好的介入操作,其中所述方法涉及将完井管道拉出井; 形成从井中拉出的完井管段; 将片段放回存储区域; 将盘管的管子运入井中; 从井中清除用完的设备; 用螺旋管制备新的完井设备的井; 从存储区域拉出新的完井管道的段,将新的完井管段分段成单个接头,并从悬臂中移除各个接头; 用盘管连接进入井,安装新的完井设备; 从单个关节建立段,并将段设置在存储区中; 并运行细分和新的完井设备进入井。
    • 3. 发明授权
    • Method for using a multipurpose unit with multipurpose tower and a surface blow out preventer
    • 将多用途单元与多功能塔和表面防喷器一起使用的方法
    • US07021402B2
    • 2006-04-04
    • US11012781
    • 2004-12-14
    • Christopher Louis BeatoJoop Roodenburg
    • Christopher Louis BeatoJoop Roodenburg
    • E21B29/12E21B15/02E21B19/09
    • E21B33/06E21B15/003E21B15/02E21B19/002
    • A method of drilling and completing an underwater well entails installing conductor casing from a floating vessel into a seabed; drilling a bore through the conductor casing to a defined depth in the seabed; and installing surface casing through the conductor casing. A high pressure wellhead and mudline suspension system engages the surface casing and are disposed on the first end. The lower stress joint is connected to a lower saver sub that connects to the casing riser's lower end. The casing riser on an upper end is connected to an upper saver sub that engages a upper stress joint. The method ends by connecting the upper stress joint to a surface wellhead in fluid communication with a surface BOP; and connecting the surface BOP and the surface wellhead to a tensioning system on the floating vessel; and using a telescoping joint.
    • 钻井和完井水下井的方法需要将导体套管从浮船安装到海底; 将钻孔通过导体套管钻孔到海底的一定深度; 并通过导体套管安装表面套管。 高压井口和泥线悬挂系统接合表面壳体并设置在第一端。 下部应力接头连接到连接到壳体提升管下端的下部保护器。 上端的壳体提升管连接到与上部应力接合部接合的上部保护部分。 该方法通过将上部应力接头连接到与表面BOP流体连通的表面井口来结束; 并将表面BOP和表面井口连接到浮动船上的张紧系统; 并使用伸缩接头。
    • 5. 发明授权
    • Modular drill system requiring limited field assembly and limited equipment support
    • 模块化钻机系统需要有限的现场组装和有限的设备支持
    • US07255180B2
    • 2007-08-14
    • US11119287
    • 2005-04-29
    • Christopher Louis BeatoJoop Roodenburg
    • Christopher Louis BeatoJoop Roodenburg
    • E21B7/12
    • E21B7/02E21B15/00
    • A modular transfigurable drilling rig comprises one or more transfigurable containers with drilling equipment to form an operational drilling rig. The transfigurable containers include a first and second load bearing support and a load bearing bottom disposed between the first and second load bearing supports, thereby forming a space. The container includes drilling equipment rotatably attached to the load bearing supports or the load bearing bottom. The drilling equipment is disposed within the space. The drilling rig further includes one or more connectors adapted to engage at least two transfigurable containers together. The drilling rig further includes piping adapted to connect the drilling equipment together, cabling adapted to provide communication between the drilling equipment, and a power source connected to the drilling equipment, wherein the power source is adapted to provide power to the drilling equipment.
    • 模块化可变形钻机包括一个或多个具有钻井设备的可变形容器,以形成操作的钻机。 可变形容器包括第一和第二承载支撑件和设置在第一和第二承重支承件之间的承载底座,从而形成空间。 容器包括可旋转地附接到承载支撑件或承载底部的钻孔设备。 钻井设备设置在空间内。 钻机还包括适于将至少两个可变形容器接合在一起的一个或多个连接器。 钻机还包括适于将钻井设备连接在一起的管线,适于提供钻井设备之间的通信的电缆以及连接到钻井设备的电源,其中电源适于向钻井设备提供动力。
    • 6. 发明授权
    • Mooring system for a tender for production platforms
    • 生产平台投标系泊系统
    • US06463870B2
    • 2002-10-15
    • US09847019
    • 2001-05-01
    • Christopher Louis BeatoYi Suang David Tein
    • Christopher Louis BeatoYi Suang David Tein
    • B63B2124
    • B63B21/50B63B1/107B63B35/44B63B2001/128
    • A mooring system for a semisubmersible tender which comprises a deck, a shape that results in a combined environmental load of less than 1000 kips in a 100-year extreme weather condition, a plurality of supports connected to the deck, a plurality of pontoons connecting to the supports, at least two hawsers for connecting the tender to a production platform, each having adequate elasticity to accommodate the wave frequency between the production platform and the tender, and adequate stiffness to synchronize the average and low frequency movement between the production platform and the tender under an environmental load produced during a storm having a designation of up to a 10-year storm in the tendering position, connectors securing each hawser, a hawser guidance system; and an at least 8-point mooring system with each mooring lines consisting of: a first length of steel wire rope; a length of polymer rope secured to the first length of steel wire rope; a second length of steel wire rope secured to the polymer rope; and creating global equilibrium between the production platform's mooring system and the at least 8 point mooring system of the tender.
    • 一种用于半潜式投标的系泊系统,其包括甲板,在100年极端天气状况下导致小于1000千克的组合环境负荷的形状,连接到甲板的多个支撑件,多个连接到 支撑件,用于将招标连接到生产平台的至少两个颚板,每个具有足够的弹性以适应生产平台和招标之间的波频率,以及足够的刚度以使生产平台与生产平台之间的平均和低频运动同步 在暴风雨期间产生的环境负荷下的招标,指定在招标位置达到10年的风暴,连接器固定每个船员,监视器引导系统; 和至少8点系泊系统,每个系泊线由以下组成:第一长度的钢丝绳; 固定在钢丝绳第一长度上的一段聚合物绳索; 固定在聚合物绳索上的钢丝绳的第二长度; 并在生产平台的系泊系统和招标的至少8点系泊系统之间建立全球平衡。
    • 7. 发明授权
    • Tender for production platforms
    • 投标生产平台
    • US06390008B1
    • 2002-05-21
    • US09847018
    • 2001-05-01
    • Christopher Louis BeatoYi Suang David Tein
    • Christopher Louis BeatoYi Suang David Tein
    • B63B2100
    • B63B35/44B63B1/107B63B21/50B63B2001/128
    • A mooring and tender system comprising: a deck; a shape that results in a combined environmental load of less than 1000 kips in a 100-year extreme weather condition; a plurality of supports connected to the deck; a plurality of pontoons connecting to the supports, at least two hawsers for connecting the tender to a production platform, each having adequate elasticity to accommodate the wave frequency between the production platform and the tender, and adequate stiffness to synchronize the mean and low frequency movement between the production platform and the tender under an environmental load produced during a storm having a designation of up to a 10-year storm in the tendering position, connecting means securing each hawser; a hawser guidance system; an at least 8-point mooring system with each mooring lines consisting of: a first length of steel wire rope; a length of polymer rope secured to the first length of steel wire rope; a second length of steel wire rope secured to the polymer rope; and means for creating global equilibrium between the production platform's mooring means and the at least 8 point mooring system of the tender.
    • 系泊和招标系统,包括:甲板; 这种形状在100年极端天气条件下导致小于1000 ips的组合环境负荷; 连接到甲板的多个支撑件; 连接到支撑件的多个浮筒,用于将招标连接到生产平台的至少两个虎钳,每个具有足够的弹性以适应生产平台和招标之间的波频率,以及足够的刚度以使平均和低频运动 在风暴期间产生的环境负荷之间的生产平台和投标之间,指定在招标位置达到10年的风暴,连接装置固定每个手套; 指导系统; 一个至少8点的系泊系统,每个系泊线包括:第一长度的钢丝绳; 固定在钢丝绳第一长度上的一段聚合物绳索; 固定在聚合物绳索上的钢丝绳的第二长度; 以及在生产平台的系泊手段与招标的至少8点系泊系统之间建立全球平衡的手段。
    • 8. 发明授权
    • Multipurpose unit for drilling and well intervention
    • 用于钻井和井身干预的多功能单元
    • US06932553B1
    • 2005-08-23
    • US10390228
    • 2003-03-17
    • Joop RoodenburgChristopher Louis BeatoRobert Frodo Van Kuilenburg
    • Joop RoodenburgChristopher Louis BeatoRobert Frodo Van Kuilenburg
    • E21B15/00E21B15/02E21B19/00E21B19/22
    • E21B19/22E21B15/003E21B15/02
    • The invention is a multipurpose system for a drilling and well intervention made of a pivotable, slidable cantilever on a platform adapted to pivot and to slide along an x-y axis; a tower disposed on the cantilever with a mast, a hoist winch, a splittable block connected to the mast, a trolley with a holding member wherein the trolley is moveably mounted to the mast and the splittable block, and a hoist cable that passes over the mast through the splittable block to the trolley; a storage device for storing tubulars; a racking arm secured to the tower for moving tubulars; a reel with coiled tubulars; a moveable injector head for running and retrieving coiled tubulars from the reel; and a retractable trolley moveably mounted on the mast with a holding member and adapted for positioning the tubulars over a well and over an additional work area.
    • 本发明是一种用于钻井和井道介入的多用途系统,其由可枢转的可滑动的悬臂构成,其适于沿x-y轴枢转和滑动; 设置在具有桅杆的悬臂上的塔架,起重绞盘,连接到桅杆的可拆卸块,具有保持构件的手推车,其中手推车可移动地安装到桅杆和可拆卸块,以及提升绳索, 通过可拆卸的块到桅杆; 用于存储管的存储装置; 固定在塔上用于移动管子的货架臂; 带盘管的卷轴; 用于从卷轴运行和回收卷绕的管的可移动的注射器头; 以及可移动的手推车,其具有可移动地安装在具有保持构件的所述桅杆上并且适于将所述管件定位在井上并在另外的工作区域上方。
    • 10. 发明授权
    • Method for tendering
    • US06575111B2
    • 2003-06-10
    • US10136501
    • 2002-05-01
    • Christopher Louis Beato
    • Christopher Louis Beato
    • B63B2100
    • B63B35/44B63B1/107B63B21/50B63B2001/128
    • A method of using a semi-submersible tender with a deck, a shape that results in a combined environmental load less than 1000 kips in a 100-year extreme weather condition, a plurality of supports each with a rounded shape connected to the deck, a plurality of pontoons connecting the supports with each pontoon being capable of ballast transfer, wherein the tender is used for mooring in a tendering position relative to an offshore platform during a 1-year, 10-year, and 100-year storm, as well as non-storm conditions, using hawsers with adequate elasticity to accommodate the wave frequency between the platform and the tender and adequate stiffness to synchronize the mean/low frequency movement between the platform and the tender under an environmental load produced during a 10-year winter storm, and enough slack during a 10-year storm to enable the tender to move to a tender standby position, and wherein the tender uses an at least 6-point mooring system for creating global equilibrium between the platform and the tender.