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    • 4. 发明申请
    • ENHANCED IN-LINE ROTARY SEPARATOR
    • 增强型在线旋转分离器
    • WO2012009158A3
    • 2012-04-12
    • PCT/US2011042205
    • 2011-06-28
    • DRESSER RAND COKUMAR JAYKIDD H ALLANMAIER WILLIAM C
    • KUMAR JAYKIDD H ALLANMAIER WILLIAM C
    • B01D17/038B01D19/00B04B5/02B04B5/04
    • B01D17/0217B01D19/0052B04B1/04B04B7/12B04C2009/007
    • Apparatus and methods for separating a fluid, with the apparatus including a rotatable drum having an inner drum wall and an outer drum wall disposed around the inner drum wall to define a separation passage therebetween. The apparatus also includes radial separator blades that are curved in a circumferential direction and are disposed in the separation passage of the drum, the radial separator blades extending radially at least partially between the inner drum wall and the outer drum wall. The apparatus further includes a first circumferential separator blade that is curved in a radial direction and is disposed in the separation passage of the drum, the first circumferential separator blade extending at least partially around the inner drum wall. The apparatus also includes a housing disposed around the drum and configured to receive a higher-density component of the fluid separated in the separation passage.
    • 用于分离流体的设备和方法,该设备包括具有内鼓壁的可旋转滚筒和设置在内鼓壁周围的外鼓壁,以在其间限定分隔通道。 该设备还包括在圆周方向上弯曲并且设置在滚筒的分离通道中的径向分离器叶片,径向分离器叶片至少部分地在内鼓壁和外滚筒壁之间径向延伸。 该装置还包括沿径向弯曲并设置在滚筒的分离通道中的第一圆周分离器叶片,第一周向分离器叶片至少部分地围绕内滚筒壁延伸。 该设备还包括围绕滚筒设置并构造成容纳在分离通道中分离的流体的较高密度分量的壳体。
    • 5. 发明申请
    • ROTARY SEPARATOR DRUM SEAL
    • 旋转分离器鼓密封
    • WO2008036221A3
    • 2008-07-03
    • PCT/US2007020101
    • 2007-09-17
    • DRESSER RAND COMAIER WILLIAM C
    • MAIER WILLIAM C
    • F16J15/447
    • F04D29/083F04D29/102F04D29/701F16J15/44F16J15/444
    • A seal assembly for a compressor includes a static member fixedly disposed within a compressor casing and having an end surface and a rotatable separator coupled with a compressor shaft and spaced from the static member. The separator has an axial end with a radial end surface located adjacent to the static member end surface such that a clearance space is defined therebetween. The separator has a plurality of openings extending inwardly from the end surface and spaced about the shaft axis such that land surface sections are defined on the end surface. The land surface sections or/and the openings are configured to prevent fluid flow radially inwardly through the clearance space. The static member has two annular walls receiving an end portion of the separator, with annular ridges providing labyrinth seals disposed against inner and outer surfaces of the separator, and an annular deflector with an angled deflector surface.
    • 用于压缩机的密封组件包括固定地设置在压缩机壳体内的静止部件,并且具有与压缩机轴并与静止部件间隔开的端面和可旋转分离器。 分离器具有轴向端部,其具有邻近静止部件端面的径向端面,从而在它们之间限定间隙空间。 分离器具有从端表面向内延伸并且围绕轴线间隔开的多个开口,使得在端表面上限定陆面表面部分。 陆面部分或/和开口构造成防止流体径向向内流过间隙空间。 静态构件具有接收隔板的端部的两个环形壁,环形凸脊提供抵靠隔板的内表面和外表面设置的迷宫式密封件,以及具有成角度的偏转器表面的环形偏转器。
    • 7. 发明申请
    • MULTISTAGE SEPARATION SYSTEM
    • 多级分离系统
    • WO2012006113A3
    • 2012-04-19
    • PCT/US2011042235
    • 2011-06-28
    • DRESSER RAND COLARDY PASCALKIDD H ALLANMAIER WILLIAM C
    • LARDY PASCALKIDD H ALLANMAIER WILLIAM C
    • B01D19/00B01D17/038B04B5/00
    • B01D45/06B01D45/00B01D45/02B01D45/04B01D45/14
    • A "bolt on" static separator is disclosed for use in conjunction with a rotating separator to handle higher liquid volumes that are not able to be effectively separated by the rotating separator alone. The static separator may be positioned upstream of the rotating separator, generally right in front of the rotating separator, i.e., immediately ahead of the inlet to the rotating separator and generally attached directly to the front end of the rotary separator. The static separator may include a significant change in flow path direction that is sufficient to cause coarse fluid separation. The output of the static separator is in communication with the input of the rotating separator. Additionally, the drain of the static separator is in communication with the drain of the rotating separator and is at the same pressure.
    • 公开了一种“螺栓连接”静态分离器,与旋转分离器结合使用,以处理较高的液体体积,该液体体积不能仅通过旋转分离器单独有效分离。 静态分离器可以定位在旋转分离器的上游,通常在旋转分离器的正前方,即紧邻旋转分离器的入口的前方,并且通常直接附接到旋转分离器的前端。 静态分离器可以包括足以引起粗糙流体分离的流动路径方向的显着变化。 静态分离器的输出与旋转分离器的输入端连通。 此外,静态分离器的排放口与旋转分离器的排放口连通并处于相同的压力下。
    • 8. 发明申请
    • HYDRAULICALLY-POWERED COMPRESSOR
    • 液压式压缩机
    • WO2011143394A3
    • 2012-03-01
    • PCT/US2011036208
    • 2011-05-12
    • DRESSER RAND COKIDD H ALLANMAIER WILLIAM C
    • KIDD H ALLANMAIER WILLIAM C
    • F04D13/04F01D15/08F04D13/00
    • E21B43/01F03B13/02
    • Apparatus and method for processing a process fluid at a remote location, with the apparatus including a pump located at a first location and configured to provide a pressurized working fluid. The apparatus also includes an umbilical coupled to the pump such that the umbilical receives the pressurized working fluid from the pump and transports the pressurized working fluid therefrom. The apparatus further includes a hydraulic turbine disposed at the remote location and coupled to the umbilical such that the hydraulic turbine receives the pressurized working fluid from the umbilical. The apparatus additionally includes one or more shaft energy conversion devices operatively coupled to the hydraulic turbine and disposed at the remote location.
    • 用于在远程位置处理过程流体的设备和方法,其中该设备包括位于第一位置处并被配置为提供加压工作流体的泵。 该设备还包括联接到泵的脐带,使得脐带接收来自泵的加压工作流体并且从其输送加压的工作流体。 该设备还包括设置在远处的水轮机并且联接到脐带,使得水轮机从脐带接收加压的工作流体。 该装置还包括一个或多个轴能量转换装置,其可操作地联接到水轮机并且设置在远程位置。
    • 9. 发明申请
    • IMPROVED STATIC FLUID SEPARATOR DEVICE
    • 改进的静态流体分离器装置
    • WO2008039491A2
    • 2008-04-03
    • PCT/US2007020768
    • 2007-09-26
    • DRESSER RAND COMAIER WILLIAM C
    • MAIER WILLIAM C
    • B01D35/28
    • B04C11/00B01D19/0057B01D45/16B04C3/06B04C2003/006
    • A fluid separator includes a casing and a tubular main body disposed in the casing and having a central axis, inlet and outlet ends spaced along the axis, inner and outer circumferential surfaces; and drain passage(s) extending radially between the inner and outer surfaces. A collection chamber is defined between the outer surface and the casing and the inner surface defines a central flow passage, such that liquid contacting the inner surface flows through the drain passage(s) and into the collection chamber. A deflector disposed within the flow passage includes a hub located on the central axis with a bore and a plurality of vanes extending radially between the hub and the main body inner surface. Each vane has a first channeling surface facing toward the body inlet and a second channeling surface facing away from the inlet. Recirculation members fluidly connect the collection chamber with the hub bore.
    • 流体分离器包括壳体和设置在壳体中并具有中心轴线的入口端和出口端,所述入口端和出口端沿轴线间隔开,所述流体分离器包括内部和外部圆周表面; 和在内表面和外表面之间径向延伸的排放通道。 收集室限定在外表面和壳体之间,并且内表面限定中央流动通道,使得接触内表面的液体流过排放通道并进入收集室。 设置在流动通道内的偏转器包括位于中心轴线上的毂,孔具有孔和在毂和主体内表面之间径向延伸的多个叶片。 每个叶片具有面向主体入口的第一沟道表面和背离入口的第二沟道表面。 再循环构件将收集室与轮毂孔流体连接。