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    • 1. 发明授权
    • System and method for proppant transfer
    • 支撑剂转移系统和方法
    • US09169087B2
    • 2015-10-27
    • US13062292
    • 2009-09-04
    • John MackenziePeter WrightJan Thore Eia
    • John MackenziePeter WrightJan Thore Eia
    • E21B21/06B65G53/12B63B27/00
    • B65G53/12B63B27/20E21B21/065E21B21/066
    • A method of transferring proppant materials, wherein the method includes providing a first pressurized container (102) containing proppant materials on a first vessel (106). The method also includes connecting the first pressurized container (102) on the first vessel (106) to a second container (102) on a second vessel (114) and transferring pneumatically, proppant materials from the first pressurized container (102) on the first vessel (106) to the second container (102) on the second vessel (114). Also, a method of transferring proppant materials, the method including removing a wellbore fluid comprising excess proppant materials from a well, and screening the excess proppant materials from the wellbore fluid. The method also includes transferring the excess proppant materials to a first pressurized container (102) and transferring pneumatically, the excess proppant materials from the first pressurized container to a second pressurized container.
    • 一种转移支撑剂材料的方法,其中所述方法包括在第一容器(106)上提供含有支撑剂材料的第一加压容器(102)。 该方法还包括将第一容器(106)上的第一加压容器(102)连接到第二容器(114)上的第二容器(102),并将第一加压容器(102)上的气动支撑剂材料从第一加压容器 容器(106)到第二容器(114)上的第二容器(102)。 而且,一种转移支撑剂材料的方法,该方法包括从井中除去包含过量支撑剂材料的井眼流体​​,以及从井眼流体中筛选过量的支撑剂材料。 该方法还包括将过量的支撑剂材料转移到第一加压容器(102)并将气态地传递过量的支撑剂材料从第一加压容器转移到第二加压容器。
    • 2. 发明申请
    • SYSTEM AND METHOD FOR PROPPANT TRANSFER
    • 用于传播的系统和方法
    • US20110162838A1
    • 2011-07-07
    • US13062292
    • 2009-09-04
    • John MackenziePeter WrightJan Thore Eia
    • John MackenziePeter WrightJan Thore Eia
    • E21B43/00B65G53/12B63B27/24
    • B65G53/12B63B27/20E21B21/065E21B21/066
    • A method of transferring proppant materials, wherein the method includes providing a first pressurized container (102) containing proppant materials on a first vessel (106). The method also includes connecting the first pressurized container (102) on the first vessel (106) to a second container (102) on a second vessel (114) and transferring pneumatically, proppant materials from the first pressurized container (102) on the first vessel (106) to the second container (102) on the second vessel (114). Also, a method of transferring proppant materials, the method including removing a wellbore fluid comprising excess proppant materials from a well, and screening the excess proppant materials from the wellbore fluid. The method also includes transferring the excess proppant materials to a first pressurized container (102) and transferring pneumatically, the excess proppant materials from the first pressurized container to a second pressurized container.
    • 一种转移支撑剂材料的方法,其中所述方法包括在第一容器(106)上提供含有支撑剂材料的第一加压容器(102)。 该方法还包括将第一容器(106)上的第一加压容器(102)连接到第二容器(114)上的第二容器(102),并将第一加压容器(102)上的气动支撑剂材料从第一加压容器 容器(106)到第二容器(114)上的第二容器(102)。 而且,一种转移支撑剂材料的方法,该方法包括从井中除去包含过量支撑剂材料的井眼流体​​,以及从井眼流体中筛选过量的支撑剂材料。 该方法还包括将过量的支撑剂材料转移到第一加压容器(102)并将气态地传递过量的支撑剂材料从第一加压容器转移到第二加压容器。
    • 3. 发明申请
    • WELLBORE FLUID MIXING SYSTEM
    • 井筒混合系统
    • US20100319921A1
    • 2010-12-23
    • US12743137
    • 2008-11-19
    • Jan Thore EiaPeter WrightMagnar Kongestol
    • Jan Thore EiaPeter WrightMagnar Kongestol
    • E21B43/16B01F15/02
    • E21B21/062
    • A system for mixing fluids for oilfield applications, the system including a first storage vessel (101) configured to hold a first material and a first mixing device (108) in fluid communication with the first storage vessel. The system also including a second mixing device (115) in fluid communication with the first mixing device and a second storage vessel (102) in fluid communication with the second mixing device, wherein the second storage vessel is configured to hold a second material. Additionally, the system including a pump (109) in fluid communication with at least the second storage vessel and the first mixing device, wherein the pump is configured to provide a flow of the second material from the second storage vessel to the first mixing device, and wherein the first mixing device is configured to mix the first material and the second material to produce a wellbore fluid.
    • 一种用于混合用于油田应用的流体的系统,该系统包括构造成保持第一材料的第一储存容器(101)和与第一储存容器流体连通的第一混合装置(108)。 该系统还包括与第一混合装置流体连通的第二混合装置(115)和与第二混合装置流体连通的第二储存容器(102),其中第二储存容器构造成容纳第二材料。 另外,该系统包括与至少第二储存容器和第一混合装置流体连通的泵(109),其中该泵构造成提供第二材料从第二储存容器到第一混合装置的流动, 并且其中所述第一混合装置被配置为混合所述第一材料和所述第二材料以产生井眼流体。
    • 5. 发明授权
    • Wellbore fluid mixing system
    • 井筒流体混合系统
    • US09175530B2
    • 2015-11-03
    • US12743137
    • 2008-11-19
    • Jan Thore EiaPeter WrightMagnar Kongestol
    • Jan Thore EiaPeter WrightMagnar Kongestol
    • E21B21/06B01F5/10B01F15/02
    • E21B21/062
    • A system for mixing fluids for oilfield applications, the system including a first storage vessel (101) configured to hold a first material and a first mixing device (108) in fluid communication with the first storage vessel. The system also including a second mixing device (115) in fluid communication with the first mixing device and a second storage vessel (102) in fluid communication with the second mixing device, wherein the second storage vessel is configured to hold a second material. Additionally, the system including a pump (109) in fluid communication with at least the second storage vessel and the first mixing device, wherein the pump is configured to provide a flow of the second material from the second storage vessel to the first mixing device, and wherein the first mixing device is configured to mix the first material and the second material to produce a wellbore fluid.
    • 一种用于混合用于油田应用的流体的系统,该系统包括构造成保持第一材料的第一储存容器(101)和与第一储存容器流体连通的第一混合装置(108)。 该系统还包括与第一混合装置流体连通的第二混合装置(115)和与第二混合装置流体连通的第二储存容器(102),其中第二储存容器构造成容纳第二材料。 另外,该系统包括与至少第二储存容器和第一混合装置流体连通的泵(109),其中该泵构造成提供第二材料从第二储存容器到第一混合装置的流动, 并且其中所述第一混合装置被配置为混合所述第一材料和所述第二材料以产生井眼流体。
    • 6. 发明授权
    • High efficiency amplifier circuits having bypass paths
    • 具有旁路路径的高效率放大器电路
    • US07385445B2
    • 2008-06-10
    • US11187258
    • 2005-07-21
    • Peter Wright
    • Peter Wright
    • H03F1/14
    • H03F3/72H03F1/0244H03F3/602H03F2200/451H03F2200/504H03F2203/7239
    • Described herein are representative embodiments of amplifier bypass paths and amplifiers using such bypass paths. In certain exemplary embodiments, the amplifiers are operated as linear power amplifiers, such as may be used in wireless communications systems. According to one exemplary embodiment, an amplifier circuit is described comprising an amplifier path coupled between a first node and a second node. The amplifier path comprises one or more amplifiers. The circuit further comprises a bypass path coupled between the first node and the second node. The bypass path comprises two impedance inverting networks and a ground path that is selectively coupled to the bypass path at a third node located between the two impedance inverting networks. In this embodiment, the third node is configured to remain coupled to the two impedance inverting networks when the ground path is coupled to the bypass path.
    • 这里描述了使用这种旁路路径的放大器旁路路径和放大器的代表性实施例。 在某些示例性实施例中,放大器作为线性功率放大器操作,诸如可以用于无线通信系统中。 根据一个示例性实施例,描述了放大器电路,其包括耦合在第一节点和第二节点之间的放大器路径。 放大器路径包括一个或多个放大器。 电路还包括耦合在第一节点和第二节点之间的旁路路径。 旁路路径包括两个阻抗反相网络和在位于两个阻抗反相网络之间的第三节点选择性地耦合到旁路路径的接地路径。 在该实施例中,当接地路径耦合到旁路路径时,第三节点被配置为保持耦合到两个阻抗反相网络。