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    • 3. 发明申请
    • DOWNHOLE ELECTRONICS WITH PRESSURE TRANSFER MEDIUM
    • 带压力传递介质的卧式电子
    • WO2010036244A1
    • 2010-04-01
    • PCT/US2008/077486
    • 2008-09-24
    • HALLIBURTON ENERGY SERVICES, INC.FRIPP, Michael, L.KYLE, Donald, G.DEJESUS, Orlando,SCHULTZ, Roger,
    • FRIPP, Michael, L.KYLE, Donald, G.DEJESUS, Orlando,SCHULTZ, Roger,
    • E21B47/00
    • E21B47/011
    • Disclosed embodiments include apparatus and methods for transferring a pressure to downhole electronics with a pressure transfer medium. An embodiment of the apparatus includes a body (102, 202) supporting a moveable pressure transfer member (110, 220, 240, 260, 408, 508), a pressure transfer medium (114, 224, 244, 264, 406, 506) contained by the body and the moveable pressure transfer member, and an electronic component disposed in the pressure transfer medium, wherein the pressure transfer member is moveable to transfer a pressure to the pressure transfer medium and the electronic component. Another embodiment of the apparatus includes a moveable enclosure (110, 220, 240, 260, 408, 508) and a non-conductive material (114, 224, 244, 264, 406, 506), wherein the non-conductive material isolates an electronic component from a downhole fluid and the moveable enclosure is operable to transfer a hydrostatic pressure to the non-conductive material and the electronic component. An embodiment of the method for pressurizing a downhole electronic component includes placing the electronic component in a flexible package including a pressure transfer medium coupled to the electronic component, disposing the package downhole, exposing the package to a downhole fluid and a hydrostatic pressure, isolating the electronic component from the downhole fluid, and transferring the hydrostatic pressure to the electronic component via the flexible package and the pressure transfer medium.
    • 公开的实施例包括用压力传递介质将压力传送到井下电子装置的装置和方法。 装置的一个实施例包括支撑可移动的压力传递构件(110,220,240,260,408,508)的主体(102,202),压力传递介质(114,224,244,264,406,506) 由所述主体和所述可移动压力传递构件容纳的电子部件和设置在所述压力传递介质中的电子部件,其中所述压力传递部件可移动以将压力传递到所述压力传递介质和所述电子部件。 该装置的另一实施例包括可移动外壳(110,220,240,260,408,508)和非导电材料(114,224,244,264,406,506),其中非导电材料将 来自井下流体的电子部件和可移动外壳可操作以将静水压力传递到非导电材料和电子部件。 用于对井下电子部件加压的方法的一个实施例包括将电子部件放置在柔性封装中,该柔性封装包括耦合到电子部件的压力传递介质,在井下设置封装,将封装暴露于井下流体和静水压力, 来自井下流体的电子部件,以及通过柔性包装和压力传递介质将静水压力传递到电子部件。
    • 4. 发明申请
    • FLUID DISCRIMINATION FOR USE WITH A SUBTERRANEAN WELL
    • 流体歧视用于下层井
    • WO2013070182A1
    • 2013-05-16
    • PCT/US2011/059534
    • 2011-11-07
    • HALLIBURTON ENERGY SERVICES, INC.DYKSTRA, Jason, D.FRIPP, Michael, L.
    • DYKSTRA, Jason, D.FRIPP, Michael, L.
    • E21B43/12E21B34/06
    • G02B1/10B01D17/0217E21B43/12F15D1/14G02B1/11G02B1/14
    • A fluid discrimination system can include a fluid discriminator which selects through which of multiple outlet flow paths a fluid composition flows, the selection being based on a direction of flow of the fluid composition through the discriminator, and the direction being dependent on a fluid type in the fluid composition. Another fluid discriminator can include a structure which displaces in response to a fluid composition flow, whereby an outlet flow path of the fluid composition changes in response to a change in a ratio of fluids in the fluid composition. A method of discriminating between fluids can include providing a fluid discriminator which selects through which of multiple outlet flow paths a fluid composition flows in the well, the selection being based on a direction of flow of the fluid composition through the discriminator, and the direction being dependent on a ratio of the fluids in the fluid composition.
    • 流体鉴别系统可以包括流体鉴别器,其选择流体组合物流过的多个出口流动路径中的哪一个,该选择基于通过鉴别器的流体组合物的流动方向,并且该方向取决于流体类型 流体组成。 另一种液体鉴别器可以包括响应于流体组成流而移位的结构,由此流体组合物中的流体比例变化响应于流体组合物的出口流动路径。 区分流体的方法可以包括提供流体鉴别器,其选择流体组合物通过多孔出口流路中的哪一个在井中流动,所述选择基于流体组合物通过鉴别器的流动方向,并且该方向为 取决于流体组合物中流体的比例。
    • 7. 发明申请
    • A DEVICE FOR DIRECTING THE FLOW OF A FLUID USING A CENTRIFUGAL SWITCH
    • 用于引导使用离心开关的流体流动的装置
    • WO2012151036A2
    • 2012-11-08
    • PCT/US2012/033534
    • 2012-04-13
    • HALLIBURTON ENERGY SERVICES, INC.FRIPP, Michael, L.DYKSTRA, Jason, D.
    • FRIPP, Michael, L.DYKSTRA, Jason, D.
    • E21B43/12E21B34/08
    • F15D1/0015Y10T137/2087Y10T137/2093Y10T137/2098Y10T137/2104Y10T137/2109Y10T137/2229Y10T137/8593Y10T137/87265
    • According to an embodiment, a device for directing the flow of a fluid comprises: a fluid chamber; a first outlet; a second outlet; a first outlet fluid passageway, wherein the first outlet fluid passageway is operatively connected to the first outlet; and a second outlet fluid passageway, wherein the second outlet fluid passageway is operatively connected to the second outlet; wherein the fluid rotationally flows about the inside of the chamber, and wherein the fluid flowing through the first outlet fluid passageway conjoins with the fluid flowing through the second outlet fluid passageway at a point downstream of the first and second outlet. According to another embodiment, a device for directing the flow of a fluid comprises: a sensor; a first outlet connected to the sensor; a second outlet connected to the sensor; a first outlet fluid passageway; and a second outlet fluid passageway; wherein as the total number of phases of the fluid increases, the sensor directs at least a first phase of the fluid into the first outlet fluid passageway and directs at least a second phase of the fluid into the second outlet fluid passageway, and wherein the fluid flowing through the first outlet fluid passageway conjoins with the fluid flowing through the second outlet fluid passageway at a point downstream of the first and second outlet.
    • 根据实施例,用于引导流体流动的装置包括:流体室; 第一个出口 第二个出口 第一出口流体通道,其中第一出口流体通道可操作地连接到第一出口; 和第二出口流体通道,其中第二出口流体通道可操作地连接到第二出口; 其中所述流体围绕所述室的内部旋转流动,并且其中流过所述第一出口流体通道的流体与在所述第一和第二出口下游的点处流过所述第二出口流体通道的流体相结合。 根据另一个实施例,用于引导流体流动的装置包括:传感器; 连接到传感器的第一出口; 连接到传感器的第二出口; 第一出口流体通道; 和第二出口流体通道; 其中当所述流体的总相数增加时,所述传感器将所述流体的至少第一相引导到所述第一出口流体通道中并将所述流体的至少第二相引导到所述第二出口流体通道中,并且其中所述流体 流过第一出口流体通道与在第一和第二出口下游的点处流过第二出口流体通道的流体结合。