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    • 73. 发明申请
    • PLUGGING DEVICES AND DEPLOYMENT IN SUBTERRANEAN WELLS
    • 在地下井中的堵塞装置和部署
    • WO2017070105A1
    • 2017-04-27
    • PCT/US2016/057514
    • 2016-10-18
    • THRU TUBING SOLUTIONS, INC.
    • FUNKHOUSER, Gary, P.WATSON, Brock, W.FERGUSON, Andrew, M.ROBERTSON, Jenna, N.SCHULTZ, Roger, L.
    • E21B33/12E21B23/06E21B17/00
    • E21B43/261C09K2208/08E21B33/138E21B43/26
    • A method can include deploying a plugging device into a well, the plugging device including a body, and an outer material enveloping the body and having a greater flexibility than a material of the body, and conveying the plugging device by fluid flow into engagement with the opening, the body preventing the plugging device from extruding through the opening, and the outer material blocking the fluid flow between the body and the opening. In another method, the plugging device can include at least two bodies, and a washer element connected between the bodies, the washer element being generally disk-shaped and comprising a hole, a line extending through the hole and connected to the bodies on respective opposite sides of the washer element, the washer element preventing the plugging device from being conveyed through the opening, and the washer element blocking the fluid flow through the opening.
    • 一种方法可以包括将堵塞装置配置到井中,堵塞装置包括主体和包围主体并具有比主体的材料更大的柔性的外部材料,并且将堵塞物 装置通过流体流动与开口接合,主体防止堵塞装置通过开口挤出,并且外部材料阻塞主体和开口之间的流体流动。 在另一种方法中,堵塞装置可以包括至少两个本体以及连接在本体之间的垫圈元件,垫圈元件大致为盘形并且包括孔,延伸穿过该孔并且分别连接到本体的线 垫圈元件的侧面,垫圈元件防止堵塞装置通过开口输送,垫圈元件阻止流体流过开口。
    • 74. 发明申请
    • PLUGGING DEVICE DEPLOYMENT
    • 安装设备部署
    • WO2017014820A1
    • 2017-01-26
    • PCT/US2016/029357
    • 2016-04-26
    • THRU TUBING SOLUTIONS, INC.
    • WATSON, Brock, W.FUNKHOUSER, Gary, P.
    • E21B33/13E21B33/134E21B33/138
    • E21B33/13
    • A method of deploying plugging devices in a well can include a spacing between the plugging devices by controlling a ratio flow rates through intersecting pipes. A deployment apparatus can include an actuator and a release structure that releases the plugging devices into a conduit connected to a tubular string in the well. Another method of deploying plugging devices in a well can include operating an actuator, thereby displacing a release structure, and the release structure releasing the plugging devices into the well in response to operating the actuator. Another deployment apparatus can include intersecting pipes and a valve that selectively permits and prevents displacement of the plugging devices through one of the pipes.
    • 在井中部署堵塞装置的方法可以通过控制通过相交管的流量比率来包括堵塞装置之间的间隔。 展开装置可以包括致动器和释放结构,其将堵塞装置释放到连接到井中的管状串的导管中。 在井中部署堵塞装置的另一种方法可以包括操作致动器,从而移动释放结构,并且释放结构响应于操作致动器而将堵塞装置释放到井中。 另一个展开装置可以包括交叉的管道和一个选择性地允许和防止堵塞装置通过其中一个管道的位移的阀门。
    • 79. 发明申请
    • HYDRAULIC JAR WITH LOW RESET FORCE
    • 低复位力液压油缸
    • WO2014028254A3
    • 2014-08-28
    • PCT/US2013053571
    • 2013-08-05
    • THRU TUBING SOLUTIONS INC
    • WATSON BROCK WSHULTZ ROGER L
    • E21B31/113
    • E21B19/22E21B31/1135
    • A hydraulic jar for delivering impacts downhole. The jarring mechanism includes a cup-type piston that moves through a seal bore. The cup is deformable in response to fluid pressure so that it expands each time it moves through the seal bore to compensate for wear on the lip. Since only minimum interference is required between the piston and seal bore, less material may be used. This reduces the force required to reset the tool, which is particularly advantageous in horizontal wells. The seal bore may be slightly wider at the exit; the cup expands to this exit diameter, ensuring an interference fit as the cup travels back through the smaller diameter entry section. The entry end of the seal bore may include longitudinal grooves. This prevents the piston cup from rupturing by preventing a fluid seal around the lip until the most of cup is inside the seal bore.
    • 用于在井下输送冲击的液压罐。 振动机构包括移动穿过密封孔的杯形活塞。 杯子响应于流体压力而变形,使得其每次穿过密封孔时都会膨胀,以补偿唇缘上的磨损。 由于在活塞和密封孔之间只需要最小的干扰,所以可以使用更少的材料。 这减少了重置工具所需的力,这在水平井中是特别有利的。 密封孔可以在出口处稍宽一些; 杯子膨胀到该出口直径,确保当杯子通过较小直径入口部分返回时过盈配合。 密封孔的进入端可以包括纵向凹槽。 这防止活塞杯通过防止围绕唇缘的流体密封而破裂,直到杯的大部分位于密封孔内。