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    • 2. 发明申请
    • MANAGING TREATMENT OF SUBTERRANEAN ZONES
    • 管理亚细亚地区的治理
    • WO2012173972A3
    • 2013-04-25
    • PCT/US2012042024
    • 2012-06-12
    • HALLIBURTON ENERGY SERV INCDYKSTRA JASON DFRIPP MICHAEL LINLEY
    • DYKSTRA JASON DFRIPP MICHAEL LINLEY
    • E21B21/10E21B21/08E21B34/16
    • E21B43/24F04B47/02F04B49/22
    • A downhole heated fluid generation system includes: a compressor-valve assembly having a compressor and a valve, the assembly operable to compress and regulate a fluid used in generating a heated treatment fluid; a combustor fluidly coupled to the compressor-valve assembly, the combustor operable to provide the heated treatment fluid into a wellbore; and a controller communicably coupled to the compressor-valve assembly, the controller operable to: determine an input indicative of a desired position of the valve; determine a value indicative of an actual position of the valve; determine a desired operating condition of the compressor based, at least in part, on the input indicative of the desired position of the valve and the value indicative of an actual position of the valve; and adjust an operating parameter of the compressor based on the desired operating pressure to compress a fluid flowing through the compressor and the valve.
    • 井下加热流体产生系统包括:具有压缩机和阀的压缩机 - 阀组件,所述组件可操作以压缩和调节用于产生加热的处理流体的流体; 流体地联接到压缩机 - 阀组件的燃烧器,所述燃烧器可操作以将加热的处理流体提供到井筒中; 以及可通信地联接到所述压缩机 - 阀组件的控制器,所述控制器可操作以:确定指示所述阀的期望位置的输入; 确定指示阀的实际位置的值; 至少部分地基于指示阀的期望位置的输入和指示阀的实际位置的值来确定压缩机的期望操作条件; 并且基于所需的操作压力来调节压缩机的操作参数,以压缩流过压缩机和阀的流体。
    • 3. 发明申请
    • MANAGING TREATMENT OF SUBTERRANEAN ZONES
    • 管理亚细亚地区的治理
    • WO2012173928A3
    • 2013-03-14
    • PCT/US2012041890
    • 2012-06-11
    • HALLIBURTON ENERGY SERV INCDYKSTRA JASON DFRIPP MICHAEL LINLEY
    • DYKSTRA JASON DFRIPP MICHAEL LINLEY
    • E21B34/16E21B34/08E21B34/10
    • E21B43/24
    • A downhole heated fluid generation system includes an air subsystem having at least one of an air compressor and an air flow control valve; a fuel subsystem having at least one of a fuel compressor and a fuel flow control valve; a treatment fluid subsystem having a fluid pump; a combustor fluidly coupled to at least one of the air subsystem, the fuel subsystem, or the treatment fluid subsystem, and operable to provide a heated fluid into a wellbore; and a controller operable to receive an input representing a heated fluid parameter; determine a virtual heated fluid generation rate based at least partially on the heated fluid parameter; and control at least one of the air subsystem, the fuel subsystem, or the treatment fluid subsystem by the virtual heated fluid generation rate.
    • 井下加热流体产生系统包括具有空气压缩机和空气流量控制阀中的至少一个的空气子系统; 具有燃料压缩机和燃料流量控制阀中的至少一个的燃料子系统; 具有流体泵的处理液体子系统; 流体耦合到空气子系统,燃料子系统或处理流体子系统中的至少一个的燃烧器,并且可操作以将加热的流体提供到井筒中; 以及控制器,其可操作以接收表示加热的流体参数的输入; 至少部分地基于加热的流体参数确定虚拟加热流体产生速率; 并且通过虚拟加热的流体产生速率来控制空气子系统,燃料子系统或处理流体子系统中的至少一个。
    • 4. 发明申请
    • MANAGING TREATMENT OF SUBTERRANEAN ZONES
    • 管理亚细亚地区的治理
    • WO2012174113A3
    • 2013-06-06
    • PCT/US2012042256
    • 2012-06-13
    • HALLIBURTON ENERGY SERV INCDYKSTRA JASON DFRIPP MICHAEL LINLEY
    • DYKSTRA JASON DFRIPP MICHAEL LINLEY
    • E21B34/16E21B34/08E21B34/10
    • E21B43/24
    • A downhole heated fluid generation system includes: a plurality of subsystems, including an air subsystem having an air compressor or an air flow control valve, a fuel subsystem having a fuel compressor or a fuel flow control valve, a treatment fluid subsystem having a fluid pump; a combustor coupled to at least one of the plurality of subsystems to provide a heated fluid into at least one of a wellbore or a subterranean zone; and a controller operable to: receiving an input indicative of a desired flow rate of the heated fluid; receiving an input indicative of a desired quality of the heated fluid; determining a virtual flow rate of the heated fluid based, at least in part, on the input indicative of the desired flow rate; and controlling the plurality of subsystems with the virtual flow rate of the heated fluid.
    • 井下加热流体产生系统包括:多个子系统,包括具有空气压缩机或空气流量控制阀的空气子系统,具有燃料压缩机或燃料流量控制阀的燃料子系统,具有流体泵 ; 燃烧器,其耦合到所述多个子系统中的至少一个子系统,以将加热的流体提供到井筒或地下区域中的至少一个中; 以及控制器,其可操作以:接收指示所述加热流体的期望流量的输入; 接收指示加热流体的期望质量的输入; 至少部分地基于指示期望流量的输入来确定加热流体的虚拟流速; 以及以加热流体的虚拟流量来控制多个子系统。
    • 5. 发明申请
    • ESTIMATING A WELLBORE PARAMETER
    • 估计一个井筒参数
    • WO2013009801A3
    • 2013-03-21
    • PCT/US2012046156
    • 2012-07-11
    • HALLIBURTON ENERGY SERV INCFRIPP MICHAEL LINLEYDYKSTRA JASON D
    • FRIPP MICHAEL LINLEYDYKSTRA JASON D
    • E21B49/08E21B47/003
    • E21B41/00E21B43/2406
    • A system for estimating a wellbore parameter includes a first component located at or near a terranean surface; a second component at least partially disposed within a wellbore at or near a subterranean zone, the second component associated with a sensor; and a controller communicably coupled to the first and second components operable to: adjust a characteristic of an input fluid to the wellbore through a range of input values; receive, from the sensor, a plurality of output values of the input fluid that vary in response to the input values, the output values representative of a downhole condition; and estimate a wellbore parameter distinct from the downhole condition based on the measured output values.
    • 用于估计井筒参数的系统包括位于地下表面处或附近的第一部件; 至少部分地设置在地下区域内或附近的井筒内的第二部件,所述第二部件与传感器相关联; 以及可通信地耦合到所述第一和第二组件的控制器,其可操作以:通过一定范围的输入值来调节输入流体到井筒的特性; 从传感器接收响应于输入值而变化的输入流体的多个输出值,表示井下状况的输出值; 并且基于测量的输出值来估计与井下状况不同的井筒参数。
    • 8. 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
    • WO2012151036A3
    • 2013-01-03
    • PCT/US2012033534
    • 2012-04-13
    • HALLIBURTON ENERGY SERV INCFRIPP MICHAEL LDYKSTRA JASON D
    • FRIPP MICHAEL LDYKSTRA 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。
    • 9. 发明申请
    • SELF-RELEASING PLUG FOR USE IN A SUBTERRANEAN WELL
    • 自我释放插头用于一个地下室
    • WO2012036917A2
    • 2012-03-22
    • PCT/US2011050255
    • 2011-09-01
    • HALLIBURTON ENERGY SERV INCDYKSTRA JASON DGANO JOHN C
    • DYKSTRA JASON DGANO JOHN C
    • E21B23/06E21B33/12
    • E21B34/08
    • A flow control system for use in a subterranean well can include a flow chamber through which a fluid composition flows, and a plug which is released in response to an increase in a ratio of undesired fluid to desired fluid in the fluid composition. Another flow control system can include a flow chamber through which a fluid composition flows, a plug, and a structure which supports the plug, but which releases the plug in response to degrading of the structure by the fluid composition. Yet another flow control system can include a flow chamber through which a fluid composition flows, and a plug which is released in response to an increase in a velocity of the fluid composition in the flow chamber.
    • 用于地下井的流量控制系统可以包括流体组合物流过的流动室和响应于不期望的流体与流体组合物中所需流体的比例增加而释放的塞子。 另一个流量控制系统可以包括流体组合物流过的流动室,塞子和支撑塞子的结构,但是响应于由流体组合物降低结构而释放塞子。 另一个流量控制系统可以包括流体组合物流过的流动室和响应于流动室中的流体组合物的速度增加而释放的塞子。