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    • 2. 发明申请
    • BYPASS VALVE WITH BLENDING FEATURE
    • 旁通阀与混合功能
    • WO2007076225A3
    • 2007-12-27
    • PCT/US2006061619
    • 2006-12-05
    • AQUION PARTNERS LTD PARTNERSHIRIVI GLEN
    • RIVI GLEN
    • B01D35/14
    • F16K11/085C02F1/001C02F1/42F16K11/207Y10T137/2574Y10T137/87346
    • A bypass valve assembly for directing fluid flow having at least one inlet and at least one outlet for fluid flow, the bypass valve assembly being attachable to a fluid treatment system. The bypass valve assembly also includes at least one bypass valve in the bypass valve assembly, the bypass valve having a service configuration and a bypass configuration wherein in the service configuration at least a portion of fluid entering the bypass valve assembly through the inlet is transmitted to the water treatment system and wherein in the bypass configuration fluid entering the bypass valve assembly is not transmitted to the fluid treatment system. At least one blending valve is operatively interconnected to the bypass valve assembly, wherein when the bypass valve is in the service configuration the blending valve allows a portion of fluid entering the inlet to be transmitted to the outlet without being transmitted to the fluid treatment system.
    • 一种用于引导流体流动的旁通阀组件,其具有用于流体流动的至少一个入口和至少一个出口,所述旁通阀组件可附接到流体处理系统。 旁路阀组件还包括旁路阀组件中的至少一个旁路阀,旁路阀具有维修配置和旁路配置,其中在维修配置中,通过入口进入旁路阀组件的流体的至少一部分被传送到 水处理系统并且其中在旁路配置中进入旁通阀组件的流体不被传送到流体处理系统。 至少一个混合阀可操作地互连到旁通阀组件,其中当旁通阀处于服务配置时,混合阀允许一部分进入入口的流体被传送到出口而不被传送到流体处理系统。
    • 4. 发明申请
    • A SODA MACHINE WITH A PRESSURE ADJUSTMENT FITTING
    • 具有压力调节配件的SODA机器
    • WO2012123388A1
    • 2012-09-20
    • PCT/EP2012/054206
    • 2012-03-12
    • SPARKLING DRINK SYSTEMS INNOVATION CENTER LIMITEDSPARKLING DRINK SYSTEMS - INNOVATION CENTER S.R.L.SONG, Ning
    • SONG, Ning
    • B01F3/04A23L2/54F16K17/04G05D16/10F16K17/20F16K27/02
    • F17C13/002A23L2/54B01F3/04794F16K17/0486F16K17/06F16K17/065F17C2205/0332Y10T137/2574
    • A soda machine with a pressure adjustment fitting, which includes a carbon dioxide steel cylinder (1), a soda cylinder (2), a gas outlet controller fitted to the carbon dioxide steel cylinder and a gas inlet means (3) fitted to the soda cylinder (2); said gas outlet controller including a gas inlet body (4), a drive rod (5), a valve core (6) and a valve core seat (7), the gas inlet body (4) including a drive rod channel (41), a valve core seat chamber (42) and a gas outlet (43); the drive rod (5) and the valve core seat (7) being made of a single piece, and a limit disk being provided at a junction area of the drive rod and the valve core; characterised in that it further includes a pressure adjustment valve (14), a top cover of said gas inlet means (3) having a gas outlet aperture (31), which communicates to the pressure adjustment valve (14); said pressure adjustment valve (14) including a valve housing (141), a drive rod (142), a limit nut (143), a gas block (144), an adjustment screw rod (145), an adj ustment - fixing sleeve (146), a spring (147) and a rotating knob (148), said valve housing (141) having a drive channel (15), a valve core chamber (16) and an adjustment rod channel (17) along a line; a hollow gas block seat (18) being provided at a junction area of the drive channel (15) and the valve core chamber (16), a gas inlet hole (19) communicating to the hollow gas block seat (18), and a pressure relief hole (20) being provided on the valve core chamber (16); said drive rod (142) slidably engaging and hermetically sealing the drive channel (15), a guide rod at a base of the drive rod (142) slidably engaging a central threaded hole of the limit nut (143), and a mandrel at a top of the drive rod (142) extending into the hollow gas block seat (18) with clearances fit; the gas block (144) slidably engaging the valve core chamber (16), and the gas block (144) engaging the hollow gas block seat (18); the adjustment screw rod (145) slidably engaging and hermetically sealing the adjustment rod channel (17), the adjustment - fixing sleeve (146) being inserted into the adjustment rod channel (17), a thread of an upper portion of the adjustment screw rod being screwed to the adjustment - fixing sleeve (146), a limit nut (143) engaging the adjustment - fixing sleeve (146), a top portion of the adjustment screw rod (145) extending beyond the limit nut (143), and the rotating knob (148) being connected to the top portion of the adjustment screw rod (145); the spring (147) engaging the gas block (144) and the adjustment screw rod (145).
    • 一种具有压力调节配件的苏打机,包括二氧化碳钢缸(1),汽缸(2),安装在二氧化碳钢缸上的气体出口控制器和安装在苏打水上的气体入口装置(3) 气缸(2); 所述气体出口控制器包括气体入口体(4),驱动杆(5),阀芯(6)和阀芯座(7),气体入口体(4)包括驱动杆通道(41) ,阀芯座室(42)和气体出口(43); 驱动杆(5)和阀芯座(7)由单件制成,限位盘设置在驱动杆和阀芯的接合区域; 其特征在于,还包括压力调节阀(14),所述气体入口装置(3)的顶盖具有气体出口孔(31),其与压力调节阀(14)连通; 所述压力调节阀(14)包括阀壳体(141),驱动杆(142),限位螺母(143),气体块(144),调节螺杆(145),调节固定套 (146),弹簧(147)和旋转旋钮(148),所述阀壳体(141)沿着一条线具有驱动通道(15),阀芯室(16)和调节杆通道(17) 在所述驱动通道(15)和所述阀芯室(16)的接合区域处设置有中空气块座(18),与所述中空气体座椅(18)连通的气体入口孔(19) 压力释放孔(20)设置在阀芯室(16)上; 所述驱动杆(142)可滑动地接合并气密地密封所述驱动通道(15),所述驱动杆(142)的基部处可滑动地接合所述限位螺母(143)的中心螺纹孔的导向杆和 驱动杆(142)的顶部以间隙配合延伸到中空气体座椅座(18)中; 所述气块(144)可滑动地接合所述阀芯室(16),并且所述气体块(144)接合所述中空气体座座(18); 调节螺杆(145)可滑动地接合和密封调节杆通道(17),调节固定套(146)插入调节杆通道(17)中,调节螺杆的上部的螺纹 被拧到调节固定套(146)上,接合调节固定套(146)的限位螺母(143),延伸超过极限螺母(143)的调节螺杆(145)的顶部,以及 旋转旋钮(148)连接到调节螺杆(145)的顶部; 与气块(144)和调节螺杆(145)接合的弹簧(147)。
    • 6. 发明申请
    • BYPASS VALVE WITH BLENDING FEATURE
    • 旁路阀与混合功能
    • WO2007076225A2
    • 2007-07-05
    • PCT/US2006/061619
    • 2006-12-05
    • AQUION PARTNERS LIMITED PARTNERSHIPRIVI, Glen
    • RIVI, Glen
    • B01D35/14
    • F16K11/085C02F1/001C02F1/42F16K11/207Y10T137/2574Y10T137/87346
    • A bypass valve assembly for directing fluid flow having at least one inlet and at least one outlet for fluid flow, the bypass valve assembly being attachable to a fluid treatment system. The bypass valve assembly also includes at least one bypass valve in the bypass valve assembly, the bypass valve having a service configuration and a bypass configuration wherein in the service configuration at least a portion of fluid entering the bypass valve assembly through the inlet is transmitted to the water treatment system and wherein in the bypass configuration fluid entering the bypass valve assembly is not transmitted to the fluid treatment system. At least one blending valve is operatively interconnected to the bypass valve assembly, wherein when the bypass valve is in the service configuration the blending valve allows a portion of fluid entering the inlet to be transmitted to the outlet without being transmitted to the fluid treatment system.
    • 用于引导具有至少一个入口和至少一个用于流体流动的出口的流体流的旁通阀组件,旁通阀组件可附接到流体处理系统。 旁通阀组件还包括旁通阀组件中的至少一个旁通阀,旁通阀具有维修配置和旁路配置,其中在维修配置中,通过入口进入旁通阀组件的流体的至少一部分被传输到 水处理系统,并且其中在旁路构造中进入旁通阀组件的流体不传递到流体处理系统。 至少一个混合阀可操作地互连到旁通阀组件,其中当旁通阀处于使用构造中时,混合阀允许进入入口的一部分流体被传递到出口而不被传递到流体处理系统。
    • 7. 发明申请
    • APPARATUS AND METHOD FOR CONTROLLING A FLUID FLOWING THROUGH A PIPELINE
    • 用于控制通过管道流动的流体的装置和方法
    • WO2010068831A1
    • 2010-06-17
    • PCT/US2009/067615
    • 2009-12-11
    • CHEVRON U.S.A. INC.RHYNE, Lee, D.STOY, James, R.
    • RHYNE, Lee, D.STOY, James, R.
    • F15D1/02F15D1/00
    • G05D7/0635Y10T137/0324Y10T137/2559Y10T137/2574Y10T137/2577
    • An apparatus and method for controlling the passage of a multiple-phase fluid through a pipeline are provided. The apparatus can generally include a first tubular passage that defines an inlet and an outlet, and a valve that is fluidly positioned between the inlet and the outlet and configured to control the flow of fluid through the first tubular passage. A second tubular passage extends from a first position upstream of the valve to a second position downstream of the valve so that the second tubular passage is configured to receive fluid from the first tubular passage upstream of the valve and deliver the fluid to the first tubular passage downstream of the valve. The valve can be selectively controlled to an open configuration to allow gas in the fluid to flow through the first tubular passage while liquid accumulates in the second tubular passage and a closed configuration to direct gas in the fluid to flow through the second tubular passage and thereby deliver liquid accumulated in the accumulation volume as a slug through the outlet of the first tubular passage.
    • 提供了一种用于控制多相流体通过管道的通道的装置和方法。 该设备通常可以包括限定入口和出口的第一管状通道和流体地定位在入口和出口之间并被配置为控制通过第一管状通道的流体流动的阀。 第二管状通道从阀的上游的第一位置延伸到阀的下游的第二位置,使得第二管状通道构造成从阀的上游的第一管状通道接收流体并将流体输送到第一管状通道 阀门下游。 阀可以选择性地控制到打开构型,以允许流体中的气体流过第一管状通道,同时液体积聚在第二管状通道中,并且封闭构造以引导流体中的气体流过第二管状通道 通过第一管状通道的出口将蓄积在积聚体积中的液体作为块塞输送。
    • 10. 发明申请
    • COMPACT TURBOMACHINE SYSTEM WITH IMPROVED SLUG FLOW HANDLING
    • 具有改进的SLUG流量处理的紧凑型涡轮机系统
    • WO2013070547A1
    • 2013-05-16
    • PCT/US2012/063549
    • 2012-11-05
    • DRESSER-RAND COMPANYMAIER, William C.LARDY, PascalGILARRANZ, Jose L.
    • MAIER, William C.LARDY, PascalGILARRANZ, Jose L.
    • F04D15/00F17D5/02G05D7/00
    • F04D31/00B01D17/02Y10T137/0324Y10T137/2574
    • A turbomachine system and method, with the system including a slug detector coupled to a main line to detect a slug flow in a multiphase fluid in the main line. The system also includes a compressor fluidly coupled to the main line and disposed downstream of the slug detector, and a bypass line fluidly coupled to the main line upstream of the compressor and downstream of the compressor. The system further includes at least an upstream control valve fluidly coupled to the main line upstream of the compressor and communicably coupled to the slug detector. The upstream control valve is configured to actuate between a normal position, in which the upstream control valve directs fluid to the compressor, and a bypass position, in which the upstream control valve directs fluid to the bypass line, according to when the slug detector detects a slug flow.
    • 一种涡轮机系统和方法,其中该系统包括连接到主管线的塞子检测器,以检测主线路中的多相流体中的团状流。 该系统还包括流体耦合到主线并设置在段塞检测器的下游的压缩机,以及与压缩机上游的压缩机上游的压缩机主流线流体耦合的旁路管路。 该系统还包括至少一个上游控制阀,其流体地联接到压缩机上游的主线路并且可通信地耦合到段状探测器。 上游控制阀被构造成在上游控制阀引导流体到压缩机的正常位置和旁路位置之间启动,在旁路位置,上游控制阀根据段检测器检测器检测到的流体将流体引导到旁路管线 lug lug流。