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    • 81. 发明申请
    • FLUID SYSTEM CONNECTION NOZZLE ASSEMBLY
    • 流体系统连接喷嘴总成
    • WO2016176538A1
    • 2016-11-03
    • PCT/US2016/029983
    • 2016-04-29
    • OPW - ENGINEERED SYSTEMS, INC.
    • COSSE, CarlosGILL, JaskaranJOHNSON, Don
    • B60K15/04B60K15/05B67D7/02B67D7/04B67D7/42
    • F16L37/36F16L37/18
    • A connection nozzle assembly includes an inner fluid product tube, a tube sleeve secured about the fluid product tube, an outer nozzle sleeve, and a locking mechanism disposed between the fluid product tube and the nozzle sleeve. The nozzle sleeve includes a body portion and a rear portion, each being moveable between a plurality of locking positions. The body portion has at least one J-groove bracket disposed therein and the rear portion has a guide element extending into the bracket. The nozzle sleeve is moved between the plurality of locking positions, thereby engaging the locking mechanism to secure the connection nozzle assembly to a receptacle coupling. The connection nozzle assembly can be uncoupled by reversing the nozzle sleeve.
    • 连接喷嘴组件包括内部流体产品管,围绕流体产品管固定的管套管,外部喷嘴套筒以及设置在流体产品管和喷嘴套筒之间的锁定机构。 喷嘴套筒包括主体部分和后部部分,每个部分可在多个锁定位置之间移动。 主体部分具有设置在其中的至少一个J形槽支架,并且后部具有延伸到支架中的引导元件。 喷嘴套筒在多个锁定位置之间移动,从而接合锁定机构以将连接喷嘴组件固定到插座联接件上。 连接喷嘴组件可以通过使喷嘴套筒反转而脱开。
    • 82. 发明申请
    • DUAL SERVICE COMPRESSOR SYSTEM FOR CONDITIONING HYDROCARBON GAS
    • 用于调节碳氢化合物的双重压缩机系统
    • WO2016057021A1
    • 2016-04-14
    • PCT/US2014/059395
    • 2014-10-07
    • GE Oil & Gas, Inc.
    • ATHIRATHNAM, RajeshKAPOOR, ManikKHAN, Mohsin
    • E21B43/00B67D7/04B67D7/58
    • F04B37/18E21B43/34F04B27/02F04B35/002F04B39/0094F04B39/16
    • A system for compressing gas from a wellbore that uses a single reciprocating compressor unit to boost pressure of the gas to an intermediate stage, and from the intermediate stage to a final stage. The final stage is at a destination pressure for distribution. Between the intermediate and final stages the gas is treated to remove water and higher molecular weight hydrocarbons so that the gas pressurized to the final stage is compressed natural gas. The reciprocating compressor is made up of a series of throw assemblies that are all driven by a single shaft. Each throw assembly includes a cylinder with a piston that reciprocates within the cylinder to compress and pressurize the fluid therein. The reciprocating compressor can be a non-lube design thereby eliminating lube oil contamination of downstream compressed natural gas or higher molecular weight hydrocarbons.
    • 一种用于从井筒压缩气体的系统,其使用单个往复式压缩机单元将气体的压力升高到中间阶段,并且从中间阶段到最后阶段。 最后阶段是分配目的地的压力。 在中间阶段和最后阶段之间,处理气体以除去水和较高分子量的烃,使得加压到最后阶段的气体是压缩的天然气。 往复式压缩机由一系列由单个轴驱动的投掷组件组成。 每个投掷组件包括具有在气缸内往复运动的活塞的气缸,以压缩并加压其中的流体。 往复式压缩机可以是非润滑设计,从而消除下游压缩天然气或较高分子量烃的润滑油污染。
    • 83. 发明申请
    • FUEL DISPENSER PUMP ASSEMBLY
    • 燃油分配泵组件
    • WO2015187976A3
    • 2016-04-07
    • PCT/US2015034244
    • 2015-06-04
    • GILBARCO INC
    • JUNAGADE RAKESHWALTON JOEKOSLOWSKY UWEMELNYK MIKEBREUER DIETER
    • B67D7/00B67D7/04B67D7/76
    • B67D7/04B67D7/222B67D7/36B67D7/66B67D7/763
    • Systems and methods for optimizing the operation of a fuel dispensing system comprising a pump assembly in a fuel dispenser. The fuel dispenser comprises a control system in electronic communication with a motor of a pump and with a displacement sensor operatively connected to a fuel flow meter. The pump is located within the fuel dispenser housing, and the motor is operative to turn a shaft coupled with a pumping element to pump fuel from a storage tank through the fuel dispenser. A method of controlling the fuel dispenser comprises receiving at the control system information representative of the flow rate of fuel through the fuel flow meter, receiving at the control system information representative of at least one operational characteristic of the motor, and comparing the information representative of the flow rate of fuel to the information representative of the at least one operational characteristic of the motor.
    • 用于优化燃料分配系统的操作的系统和方法,其包括在燃料分配器中的泵组件。 燃料分配器包括与泵的电动机电连接的控制系统以及可操作地连接到燃料流量计的位移传感器。 泵位于燃料分配器壳体内,并且马达可操作地转动与泵送元件耦合的轴,以通过燃料分配器从储罐泵送燃料。 控制燃料分配器的方法包括在控制系统处接收表示通过燃料流量计的燃料流量的信息,在控制系统处接收代表电动机的至少一个操作特性的信息,并将代表 燃料的流量与代表电动机的至少一个操作特性的信息。
    • 85. 发明申请
    • FUEL DISPENSER PUMP ASSEMBLY
    • 燃油分配泵组件
    • WO2015187976A2
    • 2015-12-10
    • PCT/US2015/034244
    • 2015-06-04
    • GILBARCO INC.
    • JUNAGADE, RakeshWALTON, JoeKOSLOWSKY, UweMELNYK, MikeBREUER, Dieter
    • B67D7/04
    • B67D7/04B67D7/222B67D7/36B67D7/66B67D7/763
    • Systems and methods for optimizing the operation of a fuel dispensing system comprising a pump assembly in a fuel dispenser. The fuel dispenser comprises a control system in electronic communication with a motor of a pump and with a displacement sensor operatively connected to a fuel flow meter. The pump is located within the fuel dispenser housing, and the motor is operative to turn a shaft coupled with a pumping element to pump fuel from a storage tank through the fuel dispenser. A method of controlling the fuel dispenser comprises receiving at the control system information representative of the flow rate of fuel through the fuel flow meter, receiving at the control system information representative of at least one operational characteristic of the motor, and comparing the information representative of the flow rate of fuel to the information representative of the at least one operational characteristic of the motor.
    • 用于优化燃料分配系统的操作的系统和方法,其包括在燃料分配器中的泵组件。 燃料分配器包括与泵的电动机电连接的控制系统以及可操作地连接到燃料流量计的位移传感器。 泵位于燃料分配器壳体内,并且马达可操作地转动与泵送元件耦合的轴,以通过燃料分配器从储罐泵送燃料。 控制燃料分配器的方法包括在控制系统处接收表示通过燃料流量计的燃料流量的信息,在控制系统处接收代表电动机的至少一个操作特性的信息,并将代表 燃料的流量与代表电动机的至少一个操作特性的信息。