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    • 3. 发明申请
    • Wireless Logging of Fluid Filled Boreholes
    • 流体填充井眼的无线测井
    • US20080239872A1
    • 2008-10-02
    • US11691071
    • 2007-03-26
    • Douglas E. MillerPhilip SullivanRichard Timothy CoatesFrancois AuzeraisTarek M. HabashyDominique GuillotRod Shampine
    • Douglas E. MillerPhilip SullivanRichard Timothy CoatesFrancois AuzeraisTarek M. HabashyDominique GuillotRod Shampine
    • G01L11/04
    • G01V1/52E21B47/0005E21B47/042E21B47/06E21B47/065E21B47/091E21B47/18G01V1/48
    • A predetermined condition in a fluid-filled wellbore system can be detected by generating at least one sound in the wellbore system in response to the condition, such that a detectable change is created in some characteristic of the emitted sound, and detecting the at least one sound and the change, the detection being indicative that the predetermined condition has occurred. Equipment for facilitating detection of the condition can include a trigger operable in response to the condition; a generator operable to emit sound in the borehole and to create a detectable change in some characteristic of the emitted sound in response to the trigger; and at least one sensor operable to monitor the sound and detect the change, the detection being indicative that the predetermined condition has occurred. It is also possible to estimate a value of a property of a fluid-filled wellbore system. This can be accomplished by recording data including at least one of pressure and rate of flow at one or more locations in the wellbore system, and then estimating the value of the property by employing a model for predicting at least one of pressure and rate of flow dependent upon parameters detailing at least one of wellbore system geometry, viscoacoustic properties of the fluid and entrained solids contained in the wellbore system, locations of boundaries and entrained solids, and characteristics and locations of disturbances to pressure and flow in the wellbore system, in order to determine a best prediction of some attribute of the recorded data.
    • 在流体填充的井眼系统中的预定条件可以通过响应于条件在井眼系统中产生至少一个声音来检测,使得在发射声音的一些特征中产生可检测的变化,并且检测至少一个 声音和变化,检测指示预定条件已经发生。 用于便于检测条件的设备可以包括可响应于该条件操作的触发器; 发射器,其可操作以响应于所述触发而在所述井眼中发射声音并且产生可发射的声音的一些特性的可检测变化; 以及至少一个可操作以监测声音并检测该变化的传感器,所述检测指示预定条件已经发生。 还可以估计流体填充的井眼系统的性质的值。 这可以通过记录包括在井眼系统中的一个或多个位置处的压力和流量中的至少一个的数据,然后通过采用用于预测压力和流量中的至少一个的模型来估计该属性的值来实现 依赖于详细描述井筒系统几何形状,井眼系统中包含的流体和夹带固体的粘度声学性质,边界和夹带固体的位置以及井眼系统中的压力和流动的特征和位置的参数的参数,按顺序 以确定记录数据的一些属性的最佳预测。
    • 5. 发明授权
    • System and method to provide well service unit with integrated gas delivery
    • 系统和方法为井服务单位提供综合气体输送
    • US08590612B2
    • 2013-11-26
    • US12427045
    • 2009-04-21
    • Rod Shampine
    • Rod Shampine
    • E21B19/22
    • E21B19/22E21B43/16
    • A technique enables improved efficiency with respect to various coiled tubing and well servicing operations. The technique utilizes a combined mobile unit having several types of equipment combined into at least one transportable unit. The combined mobile unit may comprise a coiled tubing reel having coiled tubing, a well servicing system mounted to deliver material through the coiled tubing, and/or other well servicing components with the gas delivery system. The gas delivery system has a pressurized liquid gas vessel to deliver gas that can be used for well servicing operations, including purging material from coiled tubing.
    • 一种技术可以提高各种连续油管和油井维护作业的效率。 该技术利用组合的移动单元,其具有组合到至少一个可移动单元中的多种类型的设备。 组合的移动单元可以包括具有连续油管的连续油管卷轴,安装用于通过连续油管输送材料的井服务系统和/或与气体输送系统的其它井维修部件。 气体输送系统具有加压液体气体容器,用于输送可用于井服务操作的气体,包括从连续油管清洗材料。
    • 7. 发明授权
    • Apparatus and method for engaging a tubular
    • 用于接合管状物的装置和方法
    • US08376041B2
    • 2013-02-19
    • US12048335
    • 2008-03-14
    • Rod ShampineJean-Louis PessinJoseph K. FlowersRobin Mallalieu
    • Rod ShampineJean-Louis PessinJoseph K. FlowersRobin Mallalieu
    • E21B19/22
    • E21B33/068
    • An apparatus for engaging with an outside diameter of a tubular comprises a device body having an internal surface that defines an internal diameter in a first position and allowing the tubular to pass therethrough and an actuator operable to move the internal surface of the device body from the first position to a second position, the second position defining an internal diameter less than the first position internal diameter. The internal surface of the device body is sized with a predetermined grip length for engaging with the outside diameter of the tubular. The grip length is determined by a function of the outside diameter of the tubular and the coefficient of friction between of the outside diameter of the tubular and the interior surface of the device body and the device body is operable to engage with a tubular having a predetermined range of outside diameters.
    • 一种用于与管状物的外径接合的装置包括具有内表面的装置本体,该内表面限定了第一位置的内径,并允许管状物通过其中,并且致动器可操作以将装置主体的内表面从 第一位置到第二位置,第二位置限定小于第一位置内径的内径。 装置主体的内表面具有预定的抓握长度,用于与管的外径接合。 握持长度由管状物的外径和管状体的外径与装置主体的内表面之间的摩擦系数的函数确定,并且装置主体可操作地与具有预定的 外径范围。
    • 10. 发明申请
    • Pump Assembly
    • 泵组装
    • US20120164004A1
    • 2012-06-28
    • US13393634
    • 2010-08-27
    • Hubertus V. ThomeerRod Shampine
    • Hubertus V. ThomeerRod Shampine
    • F04B9/02B23P15/00F04B23/04
    • F04B53/147F04B1/124F04B1/16F04B37/12F04B53/144Y10T29/49236
    • A pump has power and fluid ends wherein one or more of the drive rods are offset from the plungers. An offset coupler connects a drive rod to an offset plunger. A method includes connecting the offset power end to the standard fluid end using the offset coupler. A repair and maintenance system includes inventories of standard fluid ends, power ends including offset power ends, and adapters, and a population of in service pumps, whereby the pumps can be repaired by removing and replacing the power ends from inventory using the adaptor where the replacement power end unit is offset. Another method includes removing and replacing the power end with one from the inventory, wherein the adapter is used in the case of an offset power end, whereby the offset and standard power ends may be used interchangeably.
    • 泵具有动力和流体端,其中一个或多个驱动杆从柱塞偏移。 偏移联接器将驱动杆连接到偏移柱塞。 一种方法包括使用偏移耦合器将偏移功率端连接到标准流体端。 修理和维护系统包括标准流体端的清单,包括偏移功率端的功率端和适配器,以及一组在使用中的泵,其中泵可以通过使用适配器从库存中移除和替换功率端而被修复,其中, 更换电源端单元偏移。 另一种方法包括从库存中移除和替换电源端,其中在偏移功率端的情况下使用适配器,由此偏移和标准功率端可互换使用。