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    • 1. 发明公开
    • 해저 구성요소 모니터링 방법, 장치 및 시스템
    • 方法,设备和系统用于监控子系统组件
    • KR1020130024841A
    • 2013-03-08
    • KR1020120095022
    • 2012-08-29
    • 하이드릴 유에스에이 메뉴팩춰링 엘엘씨
    • 이베네저조셉프렘
    • E21B47/117G01D21/00E21B47/001E21B33/064
    • E21B33/0355E21B33/06
    • PURPOSE: A subsea component monitoring method, an apparatus thereof, and a system using the same are provided to predict the malfunction of a component effectively and increase the organization convenience of components. CONSTITUTION: A subsea component monitoring method includes the following steps: a step of receiving or inputting a BOP(BlowOut Preventer) component profile(S1001); a step of grouping two or more of multiple BOP components into one inspection group(S1002); a step of receiving one or more real BOP component profiles from BOP components grouped in an inspection group by a control unit(S1003); a step of analyzing a real BOP component profile by the control unit in order to determine whether any one of grouped BOP components operates in the state of deviating from a designated standard or not, any one of grouped BOP components malfunctions in reality or not, or any one of grouped BOP components is likely to malfunction or not(S1004). [Reference numerals] (S1001) Receiving or inputting a modeled and/or measured baseline BOP component profile for each of a plurality of BOP components; (S1002) Grouping two or more of the plurality of BOP components into a test group; (S1003) Receiving one or more actual BOP component profiles from the grouped BOP components; (S1004) Analyzing the received actual BOP component profile
    • 目的:提供一种海底部件监控方法及其装置及其使用方法,有效地预测部件故障,提高部件组织的便利性。 构成:海底部件监视方法包括以下步骤:接收或输入BOP(BlowOut Preventer)部件轮廓的步骤(S1001); 将两个或更多个BOP组件分组成一个检查组的步骤(S1002); 通过控制单元从组合在检查组中的BOP组件接收一个或多个实际BOP组件简档的步骤(S1003); 为了确定分组BOP组件中的任何一个是否以偏离指定标准的状态运行的步骤,通过控制单元分析真正的BOP组件配置文件的步骤,分组的BOP组件中的任何一个实际上是否发生故障,或者 分组的BOP组件中的任何一个可能会发生故障(S1004)。 (S1001)接收或输入多个BOP部件中的每一个的建模和/或测量的基准BOP分量轮廓; (S1002)将多个BOP成分中的2个以上分组分组成试验组; (S1003)从分组的BOP组件接收一个或多个实际BOP组件简档; (S1004)分析接收的实际BOP分量轮廓
    • 2. 发明公开
    • 정성적 지표를 이용하여 시추공 유입 상태를 결정하기 위한 장치 및 방법
    • 使用定性指标确定井下入口条件的装置和方法
    • KR1020130076772A
    • 2013-07-08
    • KR1020120155192
    • 2012-12-27
    • 하이드릴 유에스에이 메뉴팩춰링 엘엘씨
    • 저지로버트아놀드
    • E21B21/01E21B21/06
    • E21B21/08E21B47/00E21B47/10E21B47/1025E21B47/12
    • PURPOSE: A device and a method for determining a borehole inflow condition with a qualitative indicator is provided to accurately measure the flow rate of returning mud and to overcome the delay of flow rate measurement in returning mud on the water surface. CONSTITUTION: A device (100) for determining a borehole inflow condition with a qualitative indicator comprises a first sensor (110), a second sensor (120), a controller (130), and a third sensor (140). The first sensor measures the flow rate of inflow mud pumped into a well. The second sensor detects changes in flow rate of the returning mud discharged from the well. The controller is connected to the first sensor and the second sensor. The controller confirms a kick event based on monitoring and the comparison of progressive changes in the flow rates of the inflow mud and the returning mud. The third sensor is connected to the controller and supplies a measured value related to drilling to the controller.
    • 目的:提供一种利用定性指标确定钻孔入流条件的装置和方法,以准确测量返回泥浆的流量,克服水面上返回泥浆中流量测量的延迟。 构造:用于通过定性指示器确定钻孔流入状态的装置(100)包括第一传感器(110),第二传感器(120),控制器(130)和第三传感器(140)。 第一个传感器测量泵入井的流入泥浆的流量。 第二传感器检测从井排出的返回泥浆的流量变化。 控制器连接到第一传感器和第二传感器。 控制器基于监测和比较流入泥浆和返回泥浆的流量的逐渐变化来确认踢脚事件。 第三个传感器连接到控制器,并将与钻孔相关的测量值提供给控制器。
    • 7. 发明公开
    • 블로우아웃 방지 장치 내 파이프 전단 장치, 블로우아웃 방지 장치용 전단 램 어셈블리, 및 전단 블레이드 부착 방법
    • 剪刀和连接剪刀的方法
    • KR1020130076770A
    • 2013-07-08
    • KR1020120155110
    • 2012-12-27
    • 하이드릴 유에스에이 메뉴팩춰링 엘엘씨
    • 샤바이랄카바흐윌리엄엘칠더스레오나르드지
    • E21B33/06
    • E21B33/063
    • PURPOSE: A pipe shear device in a blow-out preventing device, a shear ram assembly for the blow-out preventing device, and an attachment method for a shear blade are provided to improve rigidity of a shear blade by preventing the surface reduction in the front surface of the shear blade. CONSTITUTION: A pipe shear device in a blow-out preventing device comprises a shear ram block (13), a blade (17), a plurality of face bolt passages (20), a face bolt, one or more inclined bolt passages (28), and an inclined bolt (26). The shear ram block comprises a front end and a longitudinal axis. The blade comprises a front surface (23) and a rear surface. The front surface is formed on the opposite side of the front surface and is connected to the front end of the shear ram block. The face bolt passages penetrate the blade and are extended to the inside of the front end of the shear ram block. The face bolt passages are parallel to each longitudinal axis. The face bolt is located in each face bolt passage and fixes the blade to the shear ram block. The inclined bolt passages are connected to the lower inside from the upper surface of the shear ram block and are extended to the inside of the blade. The inclined bolt is inserted into the inclined bolt passages and fixes the blade to the shear ram block.
    • 目的:提供一种防漏装置中的管剪切装置,用于防吹出装置的剪切柱塞组件和用于剪切刀片的附接方法,以通过防止剪切刀片的表面减小来提高剪切刀的刚度 剪切刀片的前表面。 构成:防爆装置中的管剪装置包括剪切柱塞块(13),叶片(17),多个面螺栓通道(20),面螺栓,一个或多个倾斜螺栓通道(28 )和倾斜螺栓(26)。 剪切柱塞块包括前端和纵向轴线。 叶片包括前表面(23)和后表面。 前表面形成在前表面的相对侧上并且连接到剪切柱塞的前端。 面螺栓通道穿过刀片并延伸到剪切柱塞前端的内侧。 面螺栓通道平行于每个纵向轴线。 面螺栓位于每个面螺栓通道中,并将刀片固定到剪切柱塞块上。 倾斜螺栓通道从剪切柱塞块的上表面连接到下部内侧并延伸到叶片的内部。 倾斜的螺栓插入倾斜的螺栓通道中并将叶片固定在剪切柱塞块上。
    • 8. 发明公开
    • 보닛 로킹장치 및 보닛을 분출방지장치에 로킹하는 방법
    • 用于吹扫预防器网络的安全
    • KR1020090005323A
    • 2009-01-13
    • KR1020087025262
    • 2007-03-22
    • 하이드릴 유에스에이 메뉴팩춰링 엘엘씨
    • 헴필에드워드리안베르켄호프마이클웨인
    • E21B33/00
    • E21B33/062
    • A bonnet locking apparatus is disclosed. The bonnet locking apparatus includes a segmented radial lock disposed around a bonnet and configured to engage a corresponding radial lock disposed in a body of a blowout preventer, at least one spring configured to bias at least one segment of the segmented radial lock in a locked position, and a backup sleeve disposed around the bonnet, wherein at least a portion of the backup sleeve is configured to secure engagement of the segmented radial lock with the corresponding radial lock disposed in the body of the blowout preventer. A method of locking a bonnet to a blowout preventer is also disclosed. The method includes assembling a segmented radial lock around a bonnet, wherein at least one segment of the radial lock is biased towards a locked position, inserting the bonnet into an opening in the blowout preventer, wherein an outer surface of the segmented radial lock contacts a surface of the opening, thereby moving the at least one segment of the segmented radial lock radially inward, until the at least one segment of the segmented radial lock extends radially outward into engagement with a corresponding radial lock disposed in the blowout preventer, and position a backup sleeve into a position wherein at least a portion of the backup sleeve is radially inward of the segmented radial lock.
    • 公开了一种发动机罩锁定装置。 发动机罩锁定装置包括分段的径向锁,其设置在发动机罩周围并且被配置为接合设置在防喷器主体中的相应的径向锁,至少一个弹簧,其构造成将分段的径向锁的至少一个部分偏置在锁定位置 以及设置在所述发动机罩周围的备用套筒,其中所述备用套筒的至少一部分被配置为确保所述分段的径向锁与布置在所述防喷器的主体中的对应的径向锁的接合。 还公开了将发动机罩锁定到防喷器的方法。 该方法包括在发动机罩周围组装分段的径向锁,其中径向锁的至少一个部分被朝向锁定位置偏置,将发动机罩插入防喷器的开口中,其中分段径向锁的外表面接触 从而使分段的径向锁的至少一个部分径向向内移动,直到分段的径向锁的至少一个部分径向向外延伸,与设置在防喷器中的对应的径向锁接合,并将位置a 备用套筒进入其中备用套筒的至少一部分在分段径向锁的径向内侧的位置。