会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 61. 发明申请
    • FLOW RESTRICTION DEVICES
    • 流量限制装置
    • US20120298370A1
    • 2012-11-29
    • US13568877
    • 2012-08-07
    • Yang XuMartin P. Coronado
    • Yang XuMartin P. Coronado
    • E21B34/00
    • E21B43/12E21B43/32
    • An inflow control device may include flow control elements along a flow path. The flow control elements may change the inertial direction of the fluid flowing in the flow path. The change in inertial direction occurs at junctures along the flow path. The flow control elements may also be configured to form segmented pressure drops across the flow path. The segmented pressure drops may include a first pressure drop segment and a second pressure drop segment that is different from the first pressure drop segment. The pressure drop segments may be generated by a passage, an orifice or a slot. In embodiments, the plurality of flow control elements may separate the fluid into at least two flow paths. The flow control elements may also be configured to cause an increase in a pressure drop in the flow path as a concentration of water increases in the fluid.
    • 流入控制装置可以包括沿着流动路径的流量控制元件。 流量控制元件可以改变在流路中流动的流体的惯性方向。 沿惯性方向的变化发生在沿着流路的交界处。 流量控制元件还可以被配置为在流动路径上形成分段的压降。 分段压降可以包括不同于第一压降段的第一压降段和第二压降段。 压降段可以由通道,孔口或狭槽产生。 在实施例中,多个流量控制元件可将流体分离成至少两个流动路径。 流量控制元件还可以被配置为随着流体中水的浓度增加而导致流路中的压降的增加。
    • 62. 发明授权
    • Flow restriction device
    • 流量限制装置
    • US08312931B2
    • 2012-11-20
    • US11871685
    • 2007-10-12
    • Yang XuMartin P. Coronado
    • Yang XuMartin P. Coronado
    • E21B43/12
    • E21B43/12E21B43/32
    • An inflow control device may include flow control elements along a flow path. The flow control elements may change the inertial direction of the fluid flowing in the flow path. The change in inertial direction occurs at junctures along the flow path. The flow control elements may also be configured to form segmented pressure drops across the flow path. The segmented pressure drops may include a first pressure drop segment and a second pressure drop segment that is different from the first pressure drop segment. The pressure drop segments may be generated by a passage, an orifice or a slot. In embodiments, the plurality of flow control elements may separate the fluid into at least two flow paths. The flow control elements may also be configured to cause an increase in a pressure drop in the flow path as a concentration of water increases in the fluid.
    • 流入控制装置可以包括沿着流动路径的流量控制元件。 流量控制元件可以改变在流路中流动的流体的惯性方向。 沿惯性方向的变化发生在沿着流路的交界处。 流量控制元件还可以被配置为在流动路径上形成分段的压降。 分段压降可以包括不同于第一压降段的第一压降段和第二压降段。 压降段可以由通道,孔口或狭槽产生。 在实施例中,多个流量控制元件可将流体分离成至少两个流动路径。 流量控制元件还可以被配置为随着流体中水的浓度增加而导致流路中的压降的增加。
    • 66. 发明申请
    • Fixed Swirl Inducing Blast Liner
    • 固定涡流诱导爆破衬管
    • US20090301710A1
    • 2009-12-10
    • US12134975
    • 2008-06-06
    • Nicholas J. ClemMartin P. Coronado
    • Nicholas J. ClemMartin P. Coronado
    • E21B17/22
    • E21B43/04E21B17/22E21B43/045
    • Wear is reduced in abrasive slurry service at an outlet into an annular space defined by the wellbore and around the tool. In a gravel packing application with a crossover, the slurry exits a central passage and goes into an internal annulus in the tool. Turning vanes that make at least one full turn and that have a height at least partially the height of the annular space are there to impart a swirl movement to at least a portion of the slurry stream. The swirling motion has beneficial effects of reducing turbulence which allows a velocity reduction for a comparable output volume. As a result of the lower turbulence leading to the final exit from the tool into the surrounding annulus, the exit ports experience reduced erosion and longer service life.
    • 在出口处的磨料浆料服务中的磨损减少到由井筒和工具周围限定的环形空间中。 在具有交叉的砾石包装应用中,浆料离开中心通道并进入工具中的内部环形空间。 使至少一整圈的转动叶片至少部分地具有至少部分高度的环形空间,这样就可以向浆液流的至少一部分施加漩涡运动。 旋转运动具有减少湍流的有益效果,其允许相当的输出体积的速度降低。 由于较低的湍流导致从工具最终退出到周围的环空中,出口经历减少的侵蚀和更长的使用寿命。
    • 69. 发明申请
    • Water Sensing Adaptable In-Flow Control Device and Method of Use
    • 水传感适应性流量控制装置及其使用方法
    • US20090101355A1
    • 2009-04-23
    • US11875669
    • 2007-10-19
    • Elmer R. PetersonMartin P. CoronadoBennett M. RichardMichael H. Johnson
    • Elmer R. PetersonMartin P. CoronadoBennett M. RichardMichael H. Johnson
    • E21B43/12
    • E21B43/12E21B43/32
    • A device and system for controlling fluid flow into a wellbore tubular may include a flow path in a production control device and at least one in-flow control element along the flow path. A media in the in-flow control element adjusts a cross-sectional flow area of the flow path by interacting with water. The media may be an inorganic solid, a water swellable polymer, or ion exchange resin beads. A method for controlling a fluid flow into a wellbore tubular may include conveying the fluid via a flow path from the formation into a flow bore of the wellbore; and adjusting a cross-sectional flow area of at least a portion of the flow path using a media that interacts with water. The method may include calibrating the media to permit a predetermined amount of flow across the media after interacts with water.
    • 用于控制流入井眼管的流体的装置和系统可以包括生产控制装置中的流动路径和沿着流动路径的至少一个流入控制元件。 流入控制元件中的介质通过与水相互作用来调节流路的横截面流动面积。 介质可以是无机固体,水溶胀性聚合物或离子交换树脂珠。 用于控制进入井筒管的流体流的方法可包括将流体经由流经路径从地层输送到井筒的流动孔中; 以及使用与水相互作用的介质来调节所述流动路径的至少一部分的横截面流动面积。 该方法可以包括校准介质以允许在与水相互作用之后跨过介质的预定量的流动。
    • 70. 发明授权
    • Rotating blast liner
    • 旋转鼓风筒
    • US07096946B2
    • 2006-08-29
    • US10748099
    • 2003-12-30
    • Rami J. JasserMartin P. CoronadoJohn V. SalerniJohn A. Nelson
    • Rami J. JasserMartin P. CoronadoJohn V. SalerniJohn A. Nelson
    • E21B43/04
    • E21B43/267E21B17/1007E21B17/1085E21B43/045
    • An improved blast liner assembly for use in gravel packing or fracturing operations wherein solid materials, in slurry form, are flowed out of the flowbore of a working tool and into the annulus of a wellbore. The blast liner is a cylindrical member that provides a protective shield to the interior retaining section. An angular flow diverter is provided within the blast liner and has a plurality of angled flow diversion channels formed into the inner surface of the blast liner body. Flow of slurry through the blast liner will cause the blast liner to rotate within the retaining section due to the reaction forces imparted to the blast liner from diverting the slurry flow. In this manner, the impingement area presented by the blast liner is increased, and the life of the blast liner extended. The blast liner may also be caused to move axially within the retaining section to further increase the impingement area.
    • 用于砾石填充或压裂操作的改进的鼓风衬套组件,其中浆料形式的固体材料从工作工具的流道中流出并进入井眼的环形空间。 鼓风衬套是向内部保持部分提供防护罩的圆柱形构件。 鼓风衬套内设有角流分流器,并且具有形成在鼓风衬套主体内表面上的多个成角度的分流通道。 浆料通过鼓风衬套的流动将导致鼓风衬套在保持部分内旋转,这是由于赋予鼓风衬套的反作用力导致浆料流转向。 以这种方式,由鼓风衬垫呈现的冲击区域增加,鼓风筒的寿命延长。 还可以使鼓风衬套在保持部分内轴向移动,以进一步增加冲击面积。