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    • 1. 发明申请
    • Pipeline Inspection System
    • 管道检验系统
    • US20090244276A1
    • 2009-10-01
    • US12465713
    • 2009-05-14
    • G. Gregory PenzaGeorge LohrHermann Herrlich
    • G. Gregory PenzaGeorge LohrHermann Herrlich
    • H04N7/18
    • G01N21/88F16K7/10F16L41/06F16L55/26F16L55/30F16L55/46F16L2101/30G01N21/954
    • An inspection system configured for “no-blow” use in a pressurized gas pipeline includes a push rod wound around a spool for convenient deployment and portability. A camera disposed on one end of the push rod is configured to relay images back to a monitor. A motor is configured for remote actuation by an operator, and provides for self-propelled movement of the camera in the pipeline. An entry tube is configured for sealed entry into the pipeline to facilitate entry of the camera and push rod. A guide shoe at the end of the entry tube provides a smooth transition for the camera and push rod as it leaves the entry tube and enters the pipeline. An automatically deployable and retractable positioning system is used to keep the camera away from an interior surface of the pipeline, and in the case of smaller pipelines, centers the camera within the pipeline.
    • 在加压气体管道中使用的“无吹”的检查系统包括卷绕在卷轴上的推杆,便于展开和便携。 设置在推杆的一端的相机被配置为将图像中继回到监视器。 电动机被配置为由操作者进行远程致动,并且提供相机在管道中的自推进运动。 入口管被配置为密封进入管道以便于相机和推杆的进入。 入口管末端的导靴在摄像机和推杆离开入口管并进入管道时提供平滑过渡。 使用自动展开和可缩回的定位系统来保持相机远离管道的内表面,而在较小的管道的情况下,相机将管道居中。
    • 2. 发明授权
    • Pipeline inspection system
    • 管道检查系统
    • US08723943B2
    • 2014-05-13
    • US13075877
    • 2011-03-30
    • G. Gregory PenzaGeorge LohrHermann Herrlich
    • G. Gregory PenzaGeorge LohrHermann Herrlich
    • F16L55/46F16L55/30F16L101/30G03B37/00
    • G01N21/88F16K7/10F16L41/06F16L55/26F16L55/30F16L55/46F16L2101/30G01N21/954
    • An inspection system configured for “no-blow” use in a pressurized gas pipeline includes a push rod wound around a spool for convenient deployment and portability. A camera disposed on one end of the push rod is configured to relay images back to a monitor. A motor is configured for remote actuation by an operator, and provides for self-propelled movement of the camera in the pipeline. An entry tube is configured for sealed entry into the pipeline to facilitate entry of the camera and push rod. A guide shoe at the end of the entry tube provides a smooth transition for the camera and push rod as it leaves the entry tube and enters the pipeline. An automatically deployable and retractable positioning system is used to keep the camera away from an interior surface of the pipeline, and in the case of smaller pipelines, centers the camera within the pipeline.
    • 在加压气体管道中使用的“无吹”的检查系统包括卷绕在卷轴上的推杆,便于展开和便携。 设置在推杆的一端的相机被配置为将图像中继回到监视器。 电动机被配置为由操作者进行远程致动,并且提供相机在管道中的自推进运动。 入口管被配置为密封进入管道以便于相机和推杆的进入。 入口管末端的导靴在摄像机和推杆离开入口管并进入管道时提供平滑过渡。 使用自动展开和可缩回的定位系统来保持相机远离管道的内表面,而在较小的管道的情况下,相机将管道居中。
    • 3. 发明申请
    • Pipeline Inspection System
    • 管道检验系统
    • US20110175996A1
    • 2011-07-21
    • US13075877
    • 2011-03-30
    • G. Gregory PenzaGeorge LohrHermann Herrlich
    • G. Gregory PenzaGeorge LohrHermann Herrlich
    • H04N7/18
    • G01N21/88F16K7/10F16L41/06F16L55/26F16L55/30F16L55/46F16L2101/30G01N21/954
    • An inspection system configured for “no-blow” use in a pressurized gas pipeline includes a push rod wound around a spool for convenient deployment and portability. A camera disposed on one end of the push rod is configured to relay images back to a monitor. A motor is configured for remote actuation by an operator, and provides for self-propelled movement of the camera in the pipeline. An entry tube is configured for sealed entry into the pipeline to facilitate entry of the camera and push rod. A guide shoe at the end of the entry tube provides a smooth transition for the camera and push rod as it leaves the entry tube and enters the pipeline. An automatically deployable and retractable positioning system is used to keep the camera away from an interior surface of the pipeline, and in the case of smaller pipelines, centers the camera within the pipeline.
    • 在加压气体管道中使用的“无吹”的检查系统包括卷绕在卷轴上的推杆,便于展开和便携。 设置在推杆的一端的相机被配置为将图像中继回到监视器。 电动机被配置为由操作者进行远程致动,并且提供相机在管道中的自推进运动。 入口管被配置为密封进入管道以便于相机和推杆的进入。 入口管端的导靴在离开入口管并进入管道时为相机和推杆提供平滑过渡。 使用自动展开和可缩回的定位系统来保持相机远离管道的内表面,而在较小的管道的情况下,相机将管道居中。
    • 4. 发明授权
    • Pipeline inspection system
    • 管道检查系统
    • US07940297B2
    • 2011-05-10
    • US12465713
    • 2009-05-14
    • G. Gregory PenzaGeorge LohrHermann Herrlich
    • G. Gregory PenzaGeorge LohrHermann Herrlich
    • G01N21/88F16L55/46F16L101/30
    • G01N21/88F16K7/10F16L41/06F16L55/26F16L55/30F16L55/46F16L2101/30G01N21/954
    • An inspection system configured for “no-blow” use in a pressurized gas pipeline includes a push rod wound around a spool for convenient deployment and portability. A camera disposed on one end of the push rod is configured to relay images back to a monitor. A motor is configured for remote actuation by an operator, and provides for self-propelled movement of the camera in the pipeline. An entry tube is configured for sealed entry into the pipeline to facilitate entry of the camera and push rod. A guide shoe at the end of the entry tube provides a smooth transition for the camera and push rod as it leaves the entry tube and enters the pipeline. An automatically deployable and retractable positioning system is used to keep the camera away from an interior surface of the pipeline, and in the case of smaller pipelines, centers the camera within the pipeline.
    • 在加压气体管道中使用的“无吹”的检查系统包括卷绕在卷轴上的推杆,便于展开和便携。 设置在推杆的一端的相机被配置为将图像中继回到监视器。 电动机被配置为由操作者进行远程致动,并且提供相机在管道中的自推进运动。 入口管被配置为密封进入管道以便于相机和推杆的进入。 入口管端的导靴在离开入口管并进入管道时为相机和推杆提供平滑过渡。 使用自动展开和可缩回的定位系统来保持相机远离管道的内表面,而在较小的管道的情况下,相机将管道居中。
    • 5. 发明授权
    • Pipeline inspection system
    • 管道检查系统
    • US07551197B2
    • 2009-06-23
    • US11222086
    • 2005-09-08
    • G. Gregory PenzaGeorge LohrHermann Herrlich
    • G. Gregory PenzaGeorge LohrHermann Herrlich
    • G03B37/02F16L55/30F16L55/46
    • G01N21/88F16K7/10F16L41/06F16L55/26F16L55/30F16L55/46F16L2101/30G01N21/954
    • An inspection system configured for “no-blow” use in a pressurized gas pipeline includes a push rod wound around a spool for convenient deployment and portability. A camera disposed on one end of the push rod is configured to relay images back to a monitor. A motor is configured for remote actuation by an operator, and provides for self-propelled movement of the camera in the pipeline. An entry tube is configured for sealed entry into the pipeline to facilitate entry of the camera and push rod. A guide shoe at the end of the entry tube provides a smooth transition for the camera and push rod as it leaves the entry tube and enters the pipeline. An automatically deployable and retractable positioning system is used to keep the camera away from an interior surface of the pipeline, and in the case of smaller pipelines, centers the camera within the pipeline.
    • 在加压气体管道中使用的“无吹”的检查系统包括卷绕在卷轴上的推杆,便于展开和便携。 设置在推杆的一端的相机被配置为将图像中继回到监视器。 电动机被配置为由操作者进行远程致动,并且提供相机在管道中的自推进运动。 入口管被配置为密封进入管道以便于相机和推杆的进入。 入口管末端的导靴在摄像机和推杆离开入口管并进入管道时提供平滑过渡。 使用自动展开和可缩回的定位系统来保持相机远离管道的内表面,而在较小的管道的情况下,相机将管道居中。
    • 8. 发明授权
    • Inspection apparatus for pipelines
    • 管道检查装置
    • US07345757B2
    • 2008-03-18
    • US10952019
    • 2004-09-28
    • G. Gregory Penza
    • G. Gregory Penza
    • G01N21/00
    • G01N21/954G01N21/8806
    • An inspection system is provided that includes a camera and a laser distance measuring device. The camera has high magnification capabilities and can be panned and tilted as needed. The laser distance measuring device provides information regarding the distance from the camera to the object being imaged. The camera and laser distance measuring device are carried by a frame, which has an elongated member attached thereto for resting the frame on a surface. This configuration makes the inspection system well suited to inspect horizontal pipelines without feeding the camera along the length of the pipeline.
    • 提供一种包括摄像机和激光距离测量装置的检查系统。 相机具有高放大能力,可根据需要进行平移和倾斜。 激光距离测量装置提供关于从相机到被成像对象的距离的信息。 相机和激光距离测量装置由框架承载,该框架具有连接到其上的细长构件,用于将框架搁置在表面上。 这种配置使得检查系统非常适合于检查水平管道,而不会沿着管道的长度进给相机。
    • 9. 发明授权
    • Method for managing corrosion of an underground structure
    • 管理地下结构腐蚀的方法
    • US07235961B1
    • 2007-06-26
    • US11395016
    • 2006-03-31
    • G. Gregory PenzaJoseph T. MandaraPhilip J. Fowles
    • G. Gregory PenzaJoseph T. MandaraPhilip J. Fowles
    • G01N27/00C23F13/00
    • C23F13/02C23F2213/32
    • A method for managing corrosion of an underground structure includes placing an anode in the ground and electrically connecting it to the underground structure. Access to the ground is obtained through a container at least partially buried in the ground, such that the surface of the ground proximate the container does not need to be penetrated in order to position the anode. A hole is bored through a wall of the container to access the ground proximate the container. Material is removed from the ground to provide a location for the anode. The anode is placed in the ground and backfilled with an electrically conductive backfill. A wire leading from the anode is then terminated inside the container at an electrical connection with another electrical conductor connected to the underground structure. The lid is replaced on the container, and the entire process is performed without penetrating the surface of the ground proximate the container.
    • 用于管理地下结构的腐蚀的方法包括将阳极放置在地面中并将其电连接到地下结构。 通过至少部分地埋在地下的容器获得对地面的接近,使得接近容器的地面的表面不需要被穿透以便定位阳极。 一个洞穿过容器的一个墙壁,以接近容器附近的地面。 将材料从地面上移除以提供阳极的位置。 将阳极放置在地下,并用导电填充物回填。 然后从与阳极连接的另一个电导体以电连接的方式将从阳极引出的电线端接在容器内部。 在容器上更换盖,并且在不渗透靠近容器的地面的表面的情况下执行整个过程。