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    • 4. 发明申请
    • WELL CLEANUP TOOL WITH REAL TIME CONDITION FEEDBACK TO THE SURFACE
    • 良好的清洁工具与实时反馈到表面
    • WO2007140313A3
    • 2008-01-24
    • PCT/US2007069768
    • 2007-05-25
    • BAKER HUGHES INCLYNDE GERALD DDAVIS JOHN PROSENBLATT STEVE
    • LYNDE GERALD DDAVIS JOHN PROSENBLATT STEVE
    • E21B27/00E21B29/00E21B47/18
    • E21B47/18E21B27/005E21B29/002
    • A flow sensor is incorporated into a junk basket to sense a flow stoppage due to a plugged screen or plugged cuttings ports in a mill. The sensor triggers a signal to the surface to warn personnel that a problem exists before the equipment is damaged. The sensor signal to the surface can take a variety of forms including mud pulses, a detectable pressure buildup at the surface, electromagnetic energy, electrical signal on hard wire or radio signals in a wifi system to name a few options. Surface personnel can interrupt the signal to take corrective action that generally involves pulling out of the hole or reverse circulating to try to clear the screen or mill cuttings inlets. Other variables can be measured such as the volume or weight or rate of change of either and a signal can be sent to the surface corresponding to one of those variables to allow them to be detected at the surface in near real time.
    • 流量传感器被结合到垃圾篮中以感测由于在轧机中堵塞的筛网或堵塞的切屑端口引起的流动停止。 传感器触发信号到表面,以警告人员在设备损坏之前存在问题。 到表面的传感器信号可以采取各种形式,包括泥浆脉冲,表面上可检测的压力积聚,电磁能量,硬线上的电信号或WiFi系统中的无线电信号,以列举几个选项。 表面人员可以中断信号采取纠正措施,通常包括从孔中拉出或反向循环,以尝试清除屏幕或铣削进样口。 可以测量其他变量,例如任一个的体积或重量或变化率,并且可以将信号发送到与这些变量中的一个变量相对应的表面,以允许它们以近实时的方式在表面被检测。
    • 5. 发明申请
    • DEBRIS COLLECTION DEVICE WITH ENHANCED CIRCULATION FEATURE
    • DEBRIS收集装置与增强循环特征
    • WO2012082466A3
    • 2012-09-07
    • PCT/US2011063500
    • 2011-12-06
    • BAKER HUGHES INCLYNDE GERALD D
    • LYNDE GERALD D
    • E21B37/08E21B37/00
    • E21B37/10
    • A debris cleanup tool uses an eductor principle to induce flow into a lower end to bring debris into a housing where the debris will either settle out or be screened out and the remaining fluid drawn up into the eductor with motive force for the eductor coming from clean fluid pumped down a tubular string from the surface. The eductor performance is enhanced with a surrounding sleeve on the eductor outlet that directs eductor exhaust flow into an annular passage oriented in a downhole direction. The exterior of the sleeve has passages to allow some of the flow to go uphole while the sleeve wall has ports through it to allow flow in the annular passage to cut through to outside the sleeve for passage uphole or downhole.
    • 碎片清理工具使用喷射器原理来引导流入下端以将碎屑带入壳体中,其中碎屑将沉淀或被筛分,并且剩余的流体用动力从喷射器中排出到喷射器中 液体从表面向下抽出一根管状的管柱。 喷射器性能通过喷射器出口上的周围套筒增强,其将喷射器排气流引导到在井下方向定向的环形通道中。 套筒的外部具有通道,以允许一些流动在井上,同时套管壁具有通过其的端口,以允许在环形通道中流动以切穿到套管外部以通过井下或井下。
    • 6. 发明申请
    • SUBTERRANEAN CUTTING TOOL STRUCTURE TAILORED TO INTENDED USE
    • 专用切割工具结构定制使用
    • WO2012047406A4
    • 2012-06-21
    • PCT/US2011049423
    • 2011-08-26
    • BAKER HUGHES INCLYNDE GERALD D
    • LYNDE GERALD D
    • E21B29/00
    • E21B10/43E21B29/00
    • A mill cutting structure is differently configured in three zones. Those zones are the center, the outer edge and in between. At the center has highly wear resistant material that has good temperature bond strength and high impact resistance. The outer periphery can have a material that is highly resistant to wear and impact. In between can be inserts such as used in the Metal Muncher® mills using sintered carbide shapes that resist tracking and create a chipping rather than a grinding action. The shapes should have high edge retention capability and shapes such as a double sided pyramid can be used. The wear patterns of prior designs are addressed to allow longer and faster milling of the fish.
    • 铣削切割结构在三个区域中被不同地配置。 那些区域是中心,外边缘和中间。 在中心处具有耐磨性好的材料,具有良好的温度粘结强度和高抗冲击性。 外周可以具有高耐磨损和耐冲击的材料。 其间可以是诸如在使用金属Muncher®轧机中的刀片,其使用烧结的碳化物形状,其抵抗跟踪并产生切屑而不是磨削动作。 形状应具有高边缘保持能力,可以使用双面金字塔等形状。 现有设计的磨损模式旨在允许更长时间和更快速地研磨鱼。