会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明申请
    • System and Method for Electric Power Generation Using Structured Stacked Piezoelectric Arrays
    • 使用结构堆叠压电阵列发电的系统和方法
    • US20160126866A1
    • 2016-05-05
    • US14529686
    • 2014-10-31
    • Namhyo KimAlvaro Jose ArrazolaJames Benjamin Bloys
    • Namhyo KimAlvaro Jose ArrazolaJames Benjamin Bloys
    • H02N2/18H01L41/083
    • H02N2/185H01L41/113
    • A piezoelectric power generation system includes a housing defining an opening therethrough and a support structure disposed within the housing, the support structure comprising a plurality of portions. The piezoelectric power generation system also includes one or more piezoelectric elements disposed between two of the plurality of portions of the support structure within the housing. Movement or vibration in the support structure compresses the one or more piezoelectric elements, wherein the one or more piezoelectric elements generate electric energy when compressed. The piezoelectric power generation system further includes one or more exciters coupled to the support structure, wherein the exciters move or vibrate when acted on by a flow of fluid, wherein the motion of vibration of the one or more exciters is translated to the support structure and ultimately to the one or more piezoelectric elements.
    • 压电发电系统包括限定穿过其中的开口的壳体和设置在壳体内的支撑结构,所述支撑结构包括多个部分。 压电发电系统还包括设置在壳体内的支撑结构的多个部分中的两个之间的一个或多个压电元件。 支撑结构中的移动或振动压缩一个或多个压电元件,其中一个或多个压电元件在压缩时产生电能。 所述压电发电系统还包括耦合到所述支撑结构的一个或多个激励器,其中所述激励器在被流体流动作用时移动或振动,其中所述一个或多个激励器的振动的运动被转换成所述支撑结构, 最终到达一个或多个压电元件。
    • 2. 发明申请
    • System and Method for Electric Power Generation Using Structured Piezoelectric Arrays
    • 使用结构压电阵列发电的系统和方法
    • US20160126865A1
    • 2016-05-05
    • US14529593
    • 2014-10-31
    • Namhyo KimAlvaro Jose ArrazolaJames Benjamin Bloys
    • Namhyo KimAlvaro Jose ArrazolaJames Benjamin Bloys
    • H02N2/18
    • H02N2/185
    • A piezoelectric power generation system includes a housing, the housing defining an opening therethrough. The piezoelectric power generation system further includes a support structure disposed within the housing, and one or more piezoelectric elements disposed on a surface of the support structure within the housing. Movement or vibration in the support structure is translated to the one or more piezoelectric elements, which actuates the one or more piezoelectric elements. The one or more piezoelectric elements generate power when actuated. The piezoelectric power generation system further includes one or more exciters coupled to the support structure. The exciters move or vibrate when acted on by a flow of fluid, wherein the motion of vibration of the one or more exciters is translated to the support structure and ultimately to the one or more piezoelectric elements.
    • 压电发电系统包括壳体,壳体限定穿过其中的开口。 压电发电系统还包括设置在壳体内的支撑结构,以及设置在壳体内的支撑结构的表面上的一个或多个压电元件。 支撑结构中的运动或振动被转换成致动一个或多个压电元件的一个或多个压电元件。 一个或多个压电元件在被致动时产生电力。 压电发电系统还包括耦合到支撑结构的一个或多个激励器。 激励器在被流体流动作用时移动或振动,其中一个或多个激励器的振动的运动被平移到支撑结构并且最终平移到一个或多个压电元件。
    • 7. 发明申请
    • ELECTRICALLY- POWERED SURFACE - CONTROLLED SUBSURFACE SAFETY VALVES
    • 电动表面 - 控制的表面安全阀
    • US20140144649A1
    • 2014-05-29
    • US14030841
    • 2013-09-18
    • Alvaro Jose ArrazolaMelvin Clark Thompson
    • Alvaro Jose ArrazolaMelvin Clark Thompson
    • E21B34/06
    • E21B34/066E21B34/10
    • A subsurface safety valve system for a wellbore within a subterranean formation is described. The system can include a power source that generates power, and a delivery system disposed within the wellbore and electrically coupled to the power source. The system can also include at least one safety valve disposed within the wellbore and electrically coupled to the delivery system, where the at least one safety valve remains open while the at least one safety valve receives the power from the delivery system, and where the at least one safety valve closes when the at least one safety valve stops receiving power from the delivery system. The system can further include production tubing mechanically coupled to a distal end of the at least one safety valve, where the at least one safety valve shuts in a cavity within production tubing when the at least one safety valve closes.
    • 描述了地下地层内井眼的地下安全阀系统。 该系统可以包括产生电力的电源以及设置在井眼内并且电耦合到电源的输送系统。 该系统还可以包括设置在井孔内并电耦合到输送系统的至少一个安全阀,其中至少一个安全阀保持打开,同时至少一个安全阀从输送系统接收动力,并且其中在 当至少一个安全阀停止从输送系统接收电力时,至少一个安全阀关闭。 该系统还可以包括机械联接到至少一个安全阀的远端的生产管道,其中当至少一个安全阀关闭时,至少一个安全阀关闭在生产管道内的空腔中。
    • 8. 发明授权
    • Pre-tensing sections of concentric tubulars
    • 同心管的预张紧部分
    • US09574424B2
    • 2017-02-21
    • US13971350
    • 2013-08-20
    • George Taylor ArmisteadAlvaro Jose Arrazola
    • George Taylor ArmisteadAlvaro Jose Arrazola
    • E21B36/00E21B17/04E21B23/01E21B17/18
    • E21B36/00E21B17/04E21B17/18E21B23/01E21B36/003
    • A method for pre-tensing sections of concentric tubulars in a wellbore. The method can include mechanically coupling an inside tubing pipe to an inside tubing string disposed in the wellbore. The method can also include mechanically coupling a second tubing to a second tubing string disposed in the wellbore. The method can further include suspending, by the first tubing, the first tubing, the first tubing string, the second tubing string, and the second tubing. The method can also include inserting, while suspending the first tubing, the first tubing string, the second tubing string, and the second tubing by the first tubing, a first slip into the first space between the first tubing and the second tubing. The method can further include inserting the first tubing, the first tubing string, the second tubing string, the second tubing, and the first slip further into the wellbore.
    • 一种用于在井筒中预张紧同心管段的部分的方法。 该方法可以包括将内管管机械连接到设置在井眼中的内管柱。 该方法还可以包括将第二管道机械地联接到设置在井眼中的第二管柱。 该方法还可以包括通过第一管道悬挂第一管道,第一管道管线,第二管道管线和第二管道。 该方法还可以包括在通过第一管道的同时悬挂第一管道,第一管道管柱,第二管道管道和第二管道时,首先在第一管道和第二管道之间插入第一空间。 该方法还可以包括将第一管,第一管柱,第二管柱,第二管和第一滑入件进一步插入井眼。
    • 9. 发明授权
    • Electrically-powered surface-controlled subsurface safety valves
    • 电动表面控制地下安全阀
    • US08857522B2
    • 2014-10-14
    • US14030841
    • 2013-09-18
    • Alvaro Jose ArrazolaMelvin Clark Thompson
    • Alvaro Jose ArrazolaMelvin Clark Thompson
    • E21B34/06E21B34/10
    • E21B34/066E21B34/10
    • A subsurface safety valve system for a wellbore within a subterranean formation is described. The system can include a power source that generates power, and a delivery system disposed within the wellbore and electrically coupled to the power source. The system can also include at least one safety valve disposed within the wellbore and electrically coupled to the delivery system, where the at least one safety valve remains open while the at least one safety valve receives the power from the delivery system, and where the at least one safety valve closes when the at least one safety valve stops receiving power from the delivery system. The system can further include production tubing mechanically coupled to a distal end of the at least one safety valve, where the at least one safety valve shuts in a cavity within production tubing when the at least one safety valve closes.
    • 描述了地下地层内井眼的地下安全阀系统。 该系统可以包括产生电力的电源以及设置在井眼内并且电耦合到电源的输送系统。 该系统还可以包括设置在井孔内并电耦合到输送系统的至少一个安全阀,其中至少一个安全阀保持打开,同时至少一个安全阀从输送系统接收动力,并且其中在 当至少一个安全阀停止从输送系统接收电力时,至少一个安全阀关闭。 该系统还可以包括机械联接到至少一个安全阀的远端的生产管道,其中当至少一个安全阀关闭时,至少一个安全阀在生产管道内的空腔中关闭。
    • 10. 发明申请
    • PRE-TENSING SECTIONS OF CONCENTRIC TUBULARS
    • 中央管的预调节
    • US20150053406A1
    • 2015-02-26
    • US13971350
    • 2013-08-20
    • George Taylor ArmisteadAlvaro Jose Arrazola
    • George Taylor ArmisteadAlvaro Jose Arrazola
    • E21B43/18E21B23/01E21B36/00E21B17/04
    • E21B36/00E21B17/04E21B17/18E21B23/01E21B36/003
    • A method for pre-tensing sections of concentric tubulars in a wellbore. The method can include mechanically coupling an inside tubing pipe to an inside tubing string disposed in the wellbore. The method can also include mechanically coupling a second tubing to a second tubing string disposed in the wellbore. The method can further include suspending, by the first tubing, the first tubing, the first tubing string, the second tubing string, and the second tubing. The method can also include inserting, while suspending the first tubing, the first tubing string, the second tubing string, and the second tubing by the first tubing, a first slip into the first space between the first tubing and the second tubing. The method can further include inserting the first tubing, the first tubing string, the second tubing string, the second tubing, and the first slip further into the wellbore.
    • 一种用于在井筒中预张紧同心管段的部分的方法。 该方法可以包括将内管管机械连接到设置在井眼中的内管柱。 该方法还可以包括将第二管道机械地联接到设置在井眼中的第二管柱。 该方法还可以包括通过第一管道悬挂第一管道,第一管道管线,第二管道管线和第二管道。 该方法还可以包括在通过第一管道的同时悬挂第一管道,第一管道管柱,第二管道管道和第二管道时,首先在第一管道和第二管道之间插入第一空间。 该方法还可以包括将第一管,第一管柱,第二管柱,第二管和第一滑入件进一步插入井眼。