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    • 84. 发明申请
    • TECHNIQUES FOR OPTIMIZING PERFORMANCE OF CYCLONES
    • 优化气旋性能的技巧
    • WO2015031308A3
    • 2015-11-05
    • PCT/US2014052628
    • 2014-08-26
    • CIDRA CORPORATE SERVICES INC
    • VAN DER SPEK ALEX MZUZUNAGA AMERICO JRUSSELL JERIN JMARON ROBERT J
    • G06F19/00G01F1/20G01F1/74
    • B04C11/00B04C5/24G01N15/02G01N15/10G01N2015/0053G01N2015/1087
    • Apparatus is provided including a signal processor or signal processing module configured at least to: respond to signaling containing information about particle sizes of solids forming part of a slurry stream being fed with a common feed flow into a battery of cyclones; and determine which combinations of cyclones in the battery produce overflow that has undesirable particle size characteristics using a statistical algorithm or technique, based upon the signaling received. The signal processor or signal processing module provides corresponding signaling containing about which combinations of cyclones in the battery produce overflow that has undesirable particle size characteristics, including control signaling to control the operation of the battery, including information about certain combinations of cyclones to avoid, or preferentially to use, to minimize the total amount of coarse material having the undesirable particle size characteristics produced by the battery.
    • 提供了包括信号处理器或信号处理模块的设备,所述信号处理器或信号处理模块至少被配置为:响应于包含关于形成部分浆料流的固体颗粒尺寸的信息的信号, 并且基于接收到的信号,使用统计算法或技术确定电池中旋风分离器的哪些组合产生具有不希望的粒度特征的溢流。 信号处理器或信号处理模块提供相应的信号,该信号包含电池产生溢流时具有不希望的粒度特征的哪些旋风器组合,包括控制信号以控制电池的操作,包括关于某些旋风器组合的信息以避免,或者 优选使用,以最小化具有由电池产生的不希望的粒度特性的粗糙材料的总量。
    • 85. 发明申请
    • TECHNIQUES FOR OPTIMIZING PERFORMANCE OF CYCLONES
    • 优化CYCLONES性能的技术
    • WO2015031308A2
    • 2015-03-05
    • PCT/US2014/052628
    • 2014-08-26
    • CIDRA CORPORATE SERVICES INC.
    • VAN DER SPEK, Alex M.ZUZUNAGA, Americo J.RUSSELL, Jerin J.MARON, Robert J.
    • G06F19/00B04C5/00
    • B04C11/00B04C5/24G01N15/02G01N15/10G01N2015/0053G01N2015/1087
    • Apparatus is provided including a signal processor or signal processing module configured at least to: respond to signaling containing information about particle sizes of solids forming part of a slurry stream being fed with a common feed flow into a battery of cyclones; and determine which combinations of cyclones in the battery produce overflow that has undesirable particle size characteristics using a statistical algorithm or technique, based upon the signaling received. The signal processor or signal processing module provides corresponding signaling containing about which combinations of cyclones in the battery produce overflow that has undesirable particle size characteristics, including control signaling to control the operation of the battery, including information about certain combinations of cyclones to avoid, or preferentially to use, to minimize the total amount of coarse material having the undesirable particle size characteristics produced by the battery.
    • 提供了包括信号处理器或信号处理模块的装置,所述信号处理器或信号处理模块被配置为至少响应于包含关于形成部分浆料流的固体颗粒尺寸的信息的信号,所述浆料流被馈送到共同的进料流进入旋风分离器; 并且基于接收到的信令,使用统计算法或技术来确定电池中的旋风分离器的组合产生具有不期望的粒度特性的溢出。 信号处理器或信号处理模块提供相应的信号,其包含电池中的旋风分离器的哪些组合产生具有不期望的粒度特性的溢出,包括控制信号以控制电池的操作,包括关于要避免的旋风分离器的某些组合的信息,或 优选使用,以使由电池产生的不期望的粒度特性的粗材料的总量最小化。
    • 89. 发明申请
    • OIL SEPARATION AND PUMPING SYSTEMS
    • 油分离和泵送系统
    • WO1998013579A2
    • 1998-04-02
    • PCT/EP1997005292
    • 1997-09-26
    • BAKER HUGHES LIMITED
    • BAKER HUGHES LIMITEDSHAW, Christopher, K.THOMPSON, Peter, K.
    • E21B43/38
    • B04C5/24B04C5/00B04C5/26B04C5/28E21B34/06E21B43/121E21B43/122E21B43/127E21B43/14E21B43/385
    • The system for producing a hydrocarbon-rich stream from a well having a hydrocarbon producing zone (24) closely spaced from a disposal zone (26) therein and disposing a water-rich stream without transporting it to the surface comprises a well bore penetrating the hydrocarbon producing zone and the disposal zone in the earth; a packer (102) disposed in the well bore between the producing zone and the disposal zone; tubing (36) extending from the surface; and an assembly (86) coupled to the tubing, the assembly comprising a motor (98), a pump (92) coupled to the motor and a separator (91) in fluid communication with the pump, wherein the separator is disposed on the disposal zone side of the packer and has an inlet in fluid communication with the producing zone, a hydrocarbon-rich stream outlet (104) in fluid communication with the tubing and a water-rich stream outlet (100) in fluid communication with the disposal zone, wherein the pump is disposed to direct the flow of liquid from the producing zone into contact with the motor and through the separator.
    • 用于从具有与其中的处理区(26)紧密间隔开的烃生产区(24)的井中生产富烃流的系统,并且将不富有水的流排放到表面包括渗透烃的井 生产区和地下处置区; 设置在生产区域和处置区域之间的井眼中的封隔器(102); 从表面延伸的管道(36) 以及联接到所述管道的组件(86),所述组件包括马达(98),联接到所述马达的泵(92)和与所述泵流体连通的分离器(91),其中所述分离器设置在所述处置 并且具有与所述生产区流体连通的入口,与所述管道流体连通的富烃流出口(104)和与所述处理区流体连通的富水流出口(100) 其中所述泵设置成引导来自所述生产区的液体流与所述马达接触并通过所述分离器。
    • 90. 发明申请
    • HYDROCYCLONE ASSEMBLY
    • HYDROCYCLONE装配
    • WO1991016987A1
    • 1991-11-14
    • PCT/SE1991000301
    • 1991-04-29
    • CELLECO HEDEMORA ABANDERSSON, Roine
    • CELLECO HEDEMORA AB
    • B04C05/24
    • D21D5/24B04C5/24B04C5/28
    • A hydrocyclone assembly comprises at least one hydrocyclone (1) having at least two through flow members (2, 3) for distribution of liquid between the outside and the interior of the hydrocyclone, and circular cylindrical pipes (4, 5) of the same number as that of the through flow members of the hydrocyclone, the through flow members of the hydrocyclone being connected to the pipes, respectively. According to the invention each through flow member (2, 3) defines an annular end portion (6), which extends around a radial bore (7) in its associated pipe (4, 5) and abuts sealingly against the mantle surface of the pipe via a gasket (8) extending around said bore in the pipe.
    • 水力旋流器组件包括至少一个具有至少两个用于在水力旋流器的外部和内部之间分配液体的流动构件(2,3)的水力旋流器(1)和相同数量的圆柱形管道(4,5) 与水力旋流器的贯流构件相同,水力旋流器的贯流构件分别与管连接。 根据本发明,每个通过流动构件(2,3)限定环形端部(6),该环形端部部分(6)围绕其相关联的管道(4,5)中的径向孔(7)延伸并且密封地抵靠管道的地幔表面 通过在管道中围绕所述孔延伸的垫圈(8)。