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    • 1. 发明授权
    • System, apparatus and method for deliquefying produced fluids from a well
    • 用于从井中液化产生的流体的系统,装置和方法
    • US09062538B2
    • 2015-06-23
    • US13274931
    • 2011-10-17
    • Jose Luis ArellanoKenneth Carmon
    • Jose Luis ArellanoKenneth Carmon
    • E21B43/12
    • E21B43/121
    • An apparatus, system, and method are provided for deliquefying a produced fluid being produced from a gas well. The apparatus can be a nozzle configured to be disposed in a production tube extending from a subsurface gas reservoir to a surface location and configured to provide a pathway for transmission of the produced fluid from the reservoir to the surface location. The nozzle generally can define a first end for receiving the produced fluid from the reservoir, a second end distal to the first end, and an inner surface extending between the ends. The inner surface can define an inwardly tapered inlet portion at the first end, an outwardly tapered outlet portion proximate the second end, and a venturi neck portion between the inlet and outlet portions. The nozzle can be configured to reduce the pressure of the produced fluid and thereby deliquefy the produced fluid passing therethrough.
    • 提供了一种装置,系统和方法,用于对从气井产生的产生的流体进行液化。 该设备可以是被配置为设置在从地下气体储存器延伸到表面位置的生产管中的喷嘴,并被配置成提供用于将所产生的流体从储存器传输到地面位置的路径。 喷嘴通常可以限定用于从储存器接收所产生的流体的第一端,远离第一端的第二端和在端部之间延伸的内表面。 内表面可以在第一端处限定向内锥形的入口部分,靠近第二端的向外锥形的出口部分和在入口部分和出口部分之间的文丘里管颈部分。 喷嘴可以被配置为降低产生的流体的压力,从而使通过其中的产生的流体脱水。
    • 2. 发明申请
    • TABBED COMPRESSION PLATE AND METHOD OF USE
    • 板式压缩板及其使用方法
    • US20110295324A1
    • 2011-12-01
    • US13052863
    • 2011-03-21
    • Brian DonleyLuis ArellanoJamy GannoeJeff Tyber
    • Brian DonleyLuis ArellanoJamy GannoeJeff Tyber
    • A61B17/80
    • A61B17/8061A61B17/8014
    • An orthopedic fixation system includes a compression plate member, a lag screw member, and a plurality of threaded screw members for applying compression across a fracture site. The compression plate member has a generally planar body, an upper surface, and bone contacting surface. The planar body includes a plurality of through-apertures and a hinged tab member having an elongated through aperture, which is adapted to receive the lag screw member and cause the tab member to recess towards a bone divot formed in the underlying bone. The compression plate member is also adapted to receive the plurality of screw members within the through-apertures for fixably and threadably coupling the compression plate member across a fracture site. The lag screw member applies a direct compressive force across the fracture site through the deformable tab that is recessed in the bone divot.
    • 矫形固定系统包括压缩板构件,拉力螺钉构件和用于在骨折部位施加压力的多个螺纹构件。 压缩板构件具有大致平面的主体,上表面和骨接触表面。 平面体包括多个通孔和具有细长通孔的铰接片构件,该突出构件适于容纳滞后螺钉构件,并使突舌构件朝向形成在下面的骨中的骨头凹槽凹陷。 压缩板构件还适于在通孔内容纳多个螺钉构件,用于将压缩板构件固定地并且可螺纹地联接在断裂部位上。 拉伸螺钉构件通过凹陷在骨头中的可变形突片施加穿过断裂部位的直接压缩力。
    • 4. 发明申请
    • SYSTEM, APPARATUS AND METHOD FOR WELL DELIQUIFICATION
    • 系统,设备和方法进行良好的退化
    • US20150053410A1
    • 2015-02-26
    • US14464221
    • 2014-08-20
    • Jose Luis ArellanoEmee Ermel
    • Jose Luis ArellanoEmee Ermel
    • E21B43/16E21B43/14E21B43/12
    • E21B43/38E21B43/121
    • Embodiments of an apparatus, a system, and a method are provided for deliquification of a production well. The apparatus can be a production tube that receives produced fluid from a subterranean reservoir and provides a pathway for transmission of the produced fluid to a surface location. The production tube includes a nozzle disposed therewithin and an opening positioned proximate to the nozzle through which a foaming agent is introduced into the production tube. The nozzle has a first end that defines an inlet, a second end distal to the first end that defines an outlet, and a passageway extending between the first end and the second end such that the produced fluid received by the inlet is delivered to the outlet. The passageway defines a region of decreased cross-sectional area that agitates the produced fluid passing through the nozzle thereby increasing mixing of the foaming agent.
    • 提供了一种装置,系统和方法的实施例,用于生产井的脱色。 该设备可以是从地下储层接收产生的流体并且提供用于将所产生的流体传输到地面位置的路径的生产管。 生产管包括设置在其中的喷嘴和靠近喷嘴定位的开口,发泡剂通过喷嘴引入生产管中。 喷嘴具有限定入口的第一端,限定出口的第一端的第二端,以及在第一端和第二端之间延伸的通道,使得由入口接收的产生的流体被输送到出口 。 通道限定了横截面积减小的区域,其搅动通过喷嘴的产生的流体,从而增加发泡剂的混合。
    • 5. 发明申请
    • SYSTEM, APPARATUS AND METHOD FOR DELIQUEFYING PRODUCED FLUIDS FROM A WELL
    • 系统,装置和方法,用于从一个井中分离生产的流体
    • US20130092373A1
    • 2013-04-18
    • US13274931
    • 2011-10-17
    • Jose Luis ArellanoKenneth Carmon
    • Jose Luis ArellanoKenneth Carmon
    • E21B43/00
    • E21B43/121
    • An apparatus, system, and method are provided for deliquefying a produced fluid being produced from a gas well. The apparatus can be a nozzle configured to be disposed in a production tube extending from a subsurface gas reservoir to a surface location and configured to provide a pathway for transmission of the produced fluid from the reservoir to the surface location. The nozzle generally can define a first end for receiving the produced fluid from the reservoir, a second end distal to the first end, and an inner surface extending between the ends. The inner surface can define an inwardly tapered inlet portion at the first end, an outwardly tapered outlet portion proximate the second end, and a venturi neck portion between the inlet and outlet portions. The nozzle can be configured to reduce the pressure of the produced fluid and thereby deliquefy the produced fluid passing therethrough.
    • 提供了一种装置,系统和方法,用于对从气井产生的产生的流体进行液化。 该设备可以是被配置为设置在从地下气体储存器延伸到表面位置的生产管中的喷嘴,并被配置成提供用于将所产生的流体从储存器传输到地面位置的路径。 喷嘴通常可以限定用于从储存器接收所产生的流体的第一端,远离第一端的第二端和在端部之间延伸的内表面。 内表面可以在第一端处限定向内锥形的入口部分,靠近第二端的向外锥形的出口部分和在入口部分和出口部分之间的文丘里管颈部分。 喷嘴可以被配置为降低产生的流体的压力,从而使通过其中的产生的流体脱水。
    • 8. 发明授权
    • Modular connection assembly
    • 模块化连接组件
    • US07247045B1
    • 2007-07-24
    • US11481191
    • 2006-07-05
    • Jose Luis Arellano
    • Jose Luis Arellano
    • H01R11/20
    • H01R13/514H01R4/2408H01R25/14H01R31/08
    • The modular connection assembly comprises a connector (4) made of insulating material, a conductor connecting bridge (10) and a fixing and contact member (9); the connector (4) has side socket members (5) to relate to similar units (4) and it also includes passages (6)(7)(8) for cables (3), for bridges (10) and for fixing members (9); the bridge (10) includes modular sections (10a) and threaded holes (10b) for the fixing member (9); which are screws ending in contact ends (9a) able to perforate the sheath (3a) of the conductor cable (3) and contact it. The side socket member (5) allow the group of several connectors (4) integrated in a modular connection set. The conductor cables (3) are inserted into the first passage (6) of the connectors (4). The bridges (10), after cutting and separating the unnecessary modular sections (10a), are inserted into the second passage (7) of the connectors (4).
    • 模块化连接组件包括由绝缘材料制成的连接器(4),导体连接桥(10)和固定和接触构件(9); 连接器(4)具有涉及类似单元(4)的侧插座构件(5),并且还包括用于电缆(3),用于桥接件(10)和用于固定构件的通道(6)(7)(8) 9); 桥(10)包括用于固定构件(9)的模块化部分(10a)和螺纹孔(10b)。 这些螺钉是以可穿透导体电缆(3)的护套(3a)并接触它的接触端(9a)的方式终止的。 侧插座构件(5)允许集成在模块化连接组中的多个连接器(4)的组。 导体电缆(3)插入连接器(4)的第一通道(6)中。 在切割和分离不必要的模块部分(10a)之后,桥(10)被插入到连接器(4)的第二通道(7)中。
    • 9. 发明专利
    • meio de conexão modular
    • BRPI0602767B1
    • 2018-12-26
    • BRPI0602767
    • 2006-07-04
    • JOSE LUIS ARELLANO
    • JOSE LUIS ARELLANO
    • H01R4/24H01R4/36H01R11/20H01R13/514H01R25/14
    • "meio de conexão modular". este meio de conexão compreende um conector (4) de material isolante, uma ponte (10) de vinculação condutora e um meio de sujeição e contacto (9); o conector (4) tem meios de encaixe lateral (5) para sua vinculação com unidades similares (4) e também tem umas passagens (6)(7)(8) para cabos (3), para pontes (10) e para meios de sujeição (9); a ponte (10) compreende trechos modulares (10a) e orifícios com roscas (10b) para os meios de sujeição (9); estes últimos podem ser parafusos terminado em extremos de contacto (9a) capazes de perfurar a camada (3a) do cabo condutor (3) e fazer contacto com o mesmo. os meios de encaixe lateral (5) permitem agrupar vários conectores (4) que se integram em um conjunto modular de conexão. os cabos condutores (3) se insertam na primeira passagem (6) dos conectores (4). as pontes (10), logo depois de cortar e separar os trechos modulares (10a) desnecessários, se insertam na segunda passagem (7) dos ditos conectores (4).