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    • 1. 发明申请
    • EXTENDED REACH PLACEMENT OF WELLBORE COMPLETIONS
    • 扩展完成的扩展完成
    • WO2014014959A1
    • 2014-01-23
    • PCT/US2013/050758
    • 2013-07-16
    • TEMPRESS TECHNOLOGIES, INC.
    • E21B23/08
    • E21B23/08E21B23/04E21B34/10E21B43/10
    • A self-actuated cyclical flow interruption valve on a deployment tool is positioned at a proximal end of a well completion assembly. Fluid is pumped though the self-actuated cyclical flow interruption valve and vented immediately distal of the valve, to return to surface of the well. A water hammer pulse is generated each time the self-actuated cyclical flow interruption valve closes, thereby generating an impact force that acts to push the completion equipment distally into the well. The continuous cyclic force of the impact facilitates placement of the completion equipment where desired in the well, including within a horizontal extension of the well. Fluid discharged through the self-actuated cyclical flow interruption valve circulates up to the surface through a vertical and inclined section of the well.
    • 部署工具上的自动循环流动中断阀位于完井组件的近端。 流体被泵送通过自动循环流动中断阀并且直接排出阀的远端,以返回到井的表面。 每当自动循环流动中断阀关闭时产生水击脉冲,从而产生作用以将完井设备向远侧推入井中的冲击力。 冲击的连续循环力有助于在井中的需要的情况下将完井设备放置在井中,包括在井的水平延伸部内。 通过自动循环流动阻断阀排出的流体通过井的垂直和倾斜的部分循环到表面。
    • 2. 发明申请
    • SLEEVED HOSE ASSEMBLY AND METHOD FOR JET DRILLING OF LATERAL WELLS
    • 用于喷射钻井的软管组件和方法
    • WO2006083848A3
    • 2007-12-21
    • PCT/US2006003373
    • 2006-02-01
    • TEMPRESS TECHNOLOGIES INCKOLLE JACK
    • KOLLE JACK
    • E21B7/04E21B7/18
    • E21B7/061E21B7/06E21B7/067E21B7/18E21B17/20
    • A sleeved hose assembly for lateral jet drilling through an ultra-short radius curve. The sleeved hose assembly includes a wire-wound high-pressure hose inserted inside a reinforcing sleeve. In general, wire-wound high-pressure hoses exhibit transverse moduli that are insufficient to resist buckling forces encountered during lateral drilling. A sleeve is selected to encompass a wire-wound high-pressure hose and to exhibit a transverse stiffness sufficient to prevent the combination of the wire-wound high-pressure hose and the sleeve (i.e., a "sleeved hose assembly") from buckling during lateral drilling. Also disclosed are a method for drilling a lateral borehole using such a sleeved hose assembly, and a method for drilling an ultra-short radius curve using such a sleeved hose assembly. In a particularly preferred exemplary embodiment, the sleeve includes a fiber reinforced epoxy composite having a transverse modulus of about 10 GPa.
    • 用于通过超短半径曲线的侧向射流钻孔的套管软管组件。 套筒软管组件包括插入加强套筒内的绕线高压软管。 通常,绕线高压软管显示横向模量,其不足以抵抗横向钻孔期间遇到的弯曲力。 选择套筒以包围绕线高压软管,并显示足够的横向刚度,以防止绕线高压软管和套筒(即,“套管式软管组件”)的组合在弯曲期间屈曲 横向钻孔。 还公开了一种使用这种套筒软管组件钻出横向钻孔的方法,以及使用这种套筒式软管组件钻出超短半径曲线的方法。 在特别优选的示例性实施方案中,套筒包括具有约10GPa的横向模量的纤维增强环氧复合材料。
    • 3. 发明申请
    • METHODS FOR METAL WORKING USING HIGH PRESSURE FLUID PULSES
    • 使用高压流体脉冲进行金属加工的方法
    • WO2002090041A1
    • 2002-11-14
    • PCT/US2001/014340
    • 2001-05-03
    • TEMPRESS TECHNOLOGIES, INC.
    • KOLLE, Jack
    • B23P17/00
    • B21J15/06B21C23/007F16B19/12Y10T29/49805Y10T29/49806Y10T29/49938Y10T29/49956
    • An ultra high-pressure fluid pulse (12) performs metal working operations, including joining and cold working. In one application, an ultra high-pressure fluid pulse (12) is directed into a hollow rivet (14) seated within an orifice formed in two metal sheets (18, 20), causing the fastener (14) to expand outwardly, in an interference fit with the orifice joining the metal sheets (18, 20) together. The ultra high-pressure fluid pulse (12) can alternatively be applied to the metal sheets (18, 20), plastically deforming them into a cavity to form a clinch fastener joint (102). Further, the ultra high-pressure fluid pulse (21) is usable to plastically deform the interface between stacked metal sheets (18, 20) or other components into surface features provided on one of the sheets (18, 20), to form a mechanical interlock. An ultra high-pressure fluid pulse generator (10) includes a fast acting valve (34) that opens to enable an ultra high-pressure pulse (12) to pass through a tapered fluid channel (12) in the nozzle (46).
    • 超高压液体脉冲(12)执行金属加工操作,包括接合和冷加工。 在一个应用中,超高压流体脉冲(12)被引导到位于形成在两个金属板(18,20)中的孔口内的中空铆钉(14)中,使紧固件(14)向外扩张 与将金属板(18,20)连接在一起的孔的过盈配合。 替代地,超高压流体脉冲(12)可以施加到金属板(18,20),使其塑性变形成空腔以形成紧固件接头(102)。 此外,超高压流体脉冲(21)可用于将叠置的金属板(18,20)或其它部件之间的界面塑性变形成设置在其中一个片材(18,20)上的表面特征,以形成机械 联锁。 超高压流体脉冲发生器(10)包括快门阀(34),其被打开以使得超高压脉冲(12)能够通过喷嘴(46)中的锥形流体通道(12)。
    • 4. 发明申请
    • SLEEVED HOSE ASSEMBLY AND METHOD FOR JET DRILLING OF LATERAL WELLS
    • 用于喷射钻井的软管组件和方法
    • WO2006083848A2
    • 2006-08-10
    • PCT/US2006/003373
    • 2006-02-01
    • TEMPRESS TECHNOLOGIES, INC.KOLLE, Jack
    • KOLLE, Jack
    • E21B7/04E21B7/18
    • E21B7/061E21B7/06E21B7/067E21B7/18E21B17/20
    • A sleeved hose assembly for lateral jet drilling through an ultra-short radius curve. The sleeved hose assembly includes a wire-wound high-pressure hose inserted inside a reinforcing sleeve. In general, wire-wound high-pressure hoses exhibit transverse moduli that are insufficient to resist buckling forces encountered during lateral drilling. A sleeve is selected to encompass a wire-wound high-pressure hose and to exhibit a transverse stiffness sufficient to prevent the combination of the wire-wound high-pressure hose and the sleeve (i.e., a "sleeved hose assembly") from buckling during lateral drilling. Also disclosed are a method for drilling a lateral borehole using such a sleeved hose assembly, and a method for drilling an ultra-short radius curve using such a sleeved hose assembly. In a particularly preferred exemplary embodiment, the sleeve includes a fiber reinforced epoxy composite having a transverse modulus of about 10 GPa.
    • 用于通过超短半径曲线的侧向射流钻孔的套管软管组件。 套筒软管组件包括插入加强套筒内的绕线高压软管。 通常,绕线高压软管显示横向模量,其不足以抵抗横向钻孔期间遇到的弯曲力。 选择套筒以包围绕线高压软管,并显示足够的横向刚度,以防止绕线高压软管和套筒(即,“套管式软管组件”)的组合在弯曲期间屈曲 横向钻孔。 还公开了一种使用这种套筒软管组件钻出横向钻孔的方法,以及使用这种套筒式软管组件钻出超短半径曲线的方法。 在特别优选的示例性实施方案中,套筒包括具有约10GPa的横向模量的纤维增强环氧复合材料。
    • 5. 发明申请
    • LOW FRICTION FACE SEALED REACTION TURBINE ROTORS
    • 低摩擦面密封反应涡轮转子
    • WO2005049955A2
    • 2005-06-02
    • PCT/US2004/038501
    • 2004-11-17
    • TEMPRESS TECHNOLOGIES, INC.MARVIN, MarkKOLLE, Jack
    • MARVIN, MarkKOLLE, Jack
    • E21B
    • B05B3/026B05B3/002B05B3/06E21B7/18E21B37/00
    • Rotary jetting tool including a rotor with axially-opposed pressure-balanced mechanical face seals. Vented upper mechanical face seal enables the rotor to be operated with the relativity low starting torque achievable using reaction forces from offset jets energized with a pressurized fluid. When rotor is displaced axially due to set-down conditions, a pressure chamber exerts a pressure imbalance on the rotor, forcing the rotor to return to a normal operating position. Alternate structure to achieve low starting torque includes a volume disposed adjacent to a lower mechanical face seal, the volume being coupled in fluid communication with the pressurized fluid. Mechanical face seal surfaces are fabricated from ultra-hard materials, such as tungsten carbide, silicon carbide, and diamond. A gage ring designed to ensure the jets remove all of the material from the gage of the protective housing before the tool can advance can be incorporated.
    • 旋转喷射工具包括具有轴向相对的压力平衡机械表面密封件的转子。 通风上部机械表面密封使得转子能够使用通过加压流体激励的偏移喷嘴的反作用力实现的相对低的起动转矩来操作。 当转子由于设定条件而轴向位移时,压力室对转子施加压力不平衡,迫使转子返回到正常的操作位置。 实现低启动扭矩的替代结构包括邻近下机械面密封设置的体积,该体积与加压流体流体连通地联接。 机械表面密封表面由超硬材料制成,如碳化钨,碳化硅和金刚石。 可以结合设计用于确保喷射器在工具可以前进之前从保护壳体的量规中移除所有材料的量规环。
    • 8. 发明申请
    • FLOATING HEAD REACTION TURBINE ROTOR WITH IMPROVED JET QUALITY
    • 具有改善的喷射质量的浮动头反应式涡轮转子
    • WO2006074017A8
    • 2007-08-16
    • PCT/US2005047305
    • 2005-12-29
    • TEMPRESS TECHNOLOGIES INCKOLLE JACKMARVIN MARK
    • KOLLE JACKMARVIN MARK
    • B05B3/06F01D3/00
    • B05B3/003B05B3/06E21B7/18E21B10/60E21B37/00
    • A rotary jetting tool including a possum-balanced rotor, which is achieved using a vented volume. Axial movement of the rotor relative to the housing caused by pressure imbalances acting on the rotor selectively uncovers or opens a vent that places the volume in fluid communication an ambient volume, enabling the rotor to achieve a pressure balanced condition. A plurality of radial clearance seals between the rotor and the housing are used to provide hydrodynamic bearings to reduce friction between the rotor and housing. The diameters of the seals are manipulated to facilitate pressure balancing of the rotor. In one embodiment, the rotor includes a centrifugal brake configured to control a maximum rotational speed of the rotor. Pressurized fluid is introduced into the rotor in an axial direction, enabling a relatively large upstream settling chamber to be incorporated into the rotor, thereby reducing inlet turbulence and improving jet quality.
    • 一种旋转喷射工具,包括一个负极平衡式转子,使用通气量实现。 由作用在转子上的压力不平衡引起的转子相对于壳体的轴向运动选择性地打开或打开通风口,该通风口使体积与环境体积流体连通,使转子达到压力平衡状态。 转子和壳体之间的多个径向间隙密封件用于提供流体动力轴承以减小转子和壳体之间的摩擦。 操纵密封件的直径以促进转子的压力平衡。 在一个实施例中,转子包括配置成控制转子的最大转速的离心式制动器。 加压流体被引入所述转子在轴向方向上,从而使相对较大的上游沉降室被结合到转子,从而减少入口湍流并提高喷射质量。
    • 9. 发明申请
    • HYDROKINETIC SPEED GOVERNOR
    • 水动员总督
    • WO2006086462A2
    • 2006-08-17
    • PCT/US2006/004414
    • 2006-02-09
    • TEMPRESS TECHNOLOGIES, INC.KOLLE, JackMARVIN, Mark
    • KOLLE, JackMARVIN, Mark
    • B64C11/42
    • F04D5/002F04D29/588
    • A method for governing the speed of a fluid turbine by establishing a circulating flow and a rotational flow with a rotor, and interrupting the rotational flow with an opposing stator. A related braking apparatus includes a housing, a rotatable shaft, a rotor configured to rotatingly engage the shaft and engage a fluid in the housing with a plurality of radial vanes, and a non-rotating stator comprising a plurality of fluid pockets. The stator is disposed such that the radial vanes of the rotor and the fluid pockets of the stator are oriented in a facing relationship. When the shaft is rotated, the fluid in the housing experiences both a circulating flow and a rotational flow. Thus, the rotational flow is present proximate the radial vanes, but not in the fluid pockets, and the fluid imparts a braking torque on the rotating shaft via the rotor's radial vanes.
    • 一种用于通过与转子建立循环流和旋转流来控制流体涡轮的速度并且用相对的定子中断旋转流的方法。 相关的制动装置包括壳体,可旋转轴,转子,其构造成旋转地接合轴并且与多个径向叶片接合壳体中的流体,以及包括多个流体袋的非旋转定子。 定子被布置成使得转子的径向叶片和定子的流体袋以面对的关系定向。 当轴旋转时,壳体中的流体同时经受循环流和旋转流。 因此,旋转流动存在于径向叶片附近,但不存在于流体腔中,并且流体通过转子的径向叶片在旋转轴上施加制动转矩。