Creep-resistant optical fiber attachment
    2.
    发明授权
    Creep-resistant optical fiber attachment 失效
    抗蠕变光纤附件

    公开(公告)号:US06317555B1

    公开(公告)日:2001-11-13

    申请号:US09073701

    申请日:1998-05-06

    IPC分类号: G02B602

    摘要: A creep-resistant optical fiber attachment includes an optical fiber 10, having a cladding 12 and a core 14, having a variation region 16 (expanded or recessed) of an outer dimension on of the cladding and a structure, such as a ferrule 30, disposed against least a portion of the variation region 16. The fiber 10 is held in tension against the ferrule and the ferrule 30 has a size and shape that mechanically locks the ferrule 30 to the variation 16, thereby holding the fiber 10 in tension against the ferrule 30 with minimal relative movement (or creep) in at least one axail direction between the fiber 10 and the ferrule 30. The ferrule 30 may be attached to or part of a larger structure, such as a housing. The variation 16 and the ferrule 30 may have various different shapes and sizes. There may also be a buffer layer 18 between the cladding 12 and the ferrule 30 to protect the fiber 10 and/or to help secure the ferrule 30 to the fiber 10 to minimize creep.

    摘要翻译: 抗蠕变光纤附件包括具有包层12和芯14的光纤10,该包层12具有包层外部尺寸的变化区域16(扩展或凹陷)和诸如套圈30的结构, 设置在可变区域16的至少一部分上。纤维10被保持紧固在套圈上,并且套圈30具有将套圈30机械地锁定到变型16上的尺寸和形状,从而将纤维10保持紧固 套管30在纤维10和套管30之间的至少一个轴向方向上具有最小的相对运动(或蠕变)。套圈30可以附接到诸如壳体的较大结构的一部分。 变型16和套圈30可以具有各种不同的形状和尺寸。 在包层12和套管30之间还可以存在缓冲层18,以保护纤维10和/或有助于将套圈30固定到纤维10上以使蠕变最小化。

    Optical sensor device having creep-resistant optical fiber attachments
    3.
    发明授权
    Optical sensor device having creep-resistant optical fiber attachments 有权
    具有抗蠕变光纤附件的光学传感器装置

    公开(公告)号:US06768825B2

    公开(公告)日:2004-07-27

    申请号:US09873978

    申请日:2001-06-01

    IPC分类号: G02B600

    摘要: A method and device for pressure sensing using an optical fiber having a core, a cladding and a Bragg grating imparted in the core for at least partially reflecting an optical signal at a characteristic wavelength. The cladding has two variation regions located on opposite sides of the Bragg grating to allow attachment mechanisms to be disposed against the optical fiber. The attachment mechanisms are mounted to a pressure sensitive structure so as to allow the characteristic wavelength to change according to pressure in an environment. In particular, the variation region has a diameter different from the cladding diameter, and the attachment mechanism comprises a ferrule including a front portion having a profile substantially corresponding to at least a portion of the diameter of the variation region and a butting mechanism which holds the ferrule against the optical fiber.

    摘要翻译: 一种用于使用光纤的压力感测的方法和装置,所述光纤具有在芯中赋予的芯,包层和布拉格光栅,用于至少部分地反射特征波长的光信号。 包层具有位于布拉格光栅的相对侧上的两个变化区域,以允许将附着机构设置在光纤上。 附接机构安装在压敏结构上,以使特征波长根据环境中的压力而变化。 特别地,变化区域具有与包层直径不同的直径,并且附接机构包括套圈,该套圈包括具有基本上对应于变化区域的直径的至少一部分的轮廓的前部,以及保持 针对光纤的套圈。

    Fiber optic bragg grating pressure sensor
    6.
    发明授权
    Fiber optic bragg grating pressure sensor 有权
    光纤布拉格光栅压力传感器

    公开(公告)号:US06278811B1

    公开(公告)日:2001-08-21

    申请号:US09399504

    申请日:1999-09-20

    IPC分类号: G02B600

    CPC分类号: G01L11/025

    摘要: A fiber optic Bragg grating pressure sensor particularly suited for measuring ambient pressure of a fluid includes a pressuring detecting device 12 such as a glass element whose elastic deformation is proportional to applied pressure. An optical fiber 28 with an integral first grating 33 is wrapped at least once around the device and has at least a portion of its length fused to the device 12 such that elastic deformation of the device 12 generates a corresponding axial strain in the fiber 28 and/or the grating 33 and thus a corresponding change of the fiber length and/or characteristic reflectance wavelength of the grating 33. A second grating 35 may be formed near the pressure detecting device 12 so as to sense ambient temperature but not be affected by deformation of the device 12 for temperature compensation. Also, the fiber 28 may have more than one grating or be doped at least between a pair of gratings 160,162, to form a fiber laser or a DFB fiber laser which lasing wavelength changes with changing pressure.

    摘要翻译: 特别适用于测量流体环境压力的光纤布拉格光栅压力传感器包括加压检测装置12,例如玻璃元件,其弹性变形与施加的压力成比例。 具有集成的第一光栅33的光纤28至少缠绕在设备周围,并且其长度的至少一部分与设备12融合,使得设备12的弹性变形在纤维28中产生相应的轴向应变,并且 /或光栅33,从而光栅33的光纤长度和/或特征反射波长的相应变化。第二光栅35可以形成在压力检测装置12附近,以便感测环境温度但不受变形影响 的温度补偿装置12。 此外,光纤28可以具有多于一个光栅或者至少在一对光栅160,162之间被掺杂,以形成激光波长随着变化的压力而变化的光纤激光器或DFB光纤激光器。

    Downhole cable gripping/shearing device
    9.
    发明授权
    Downhole cable gripping/shearing device 有权
    井下电缆夹紧/剪切装置

    公开(公告)号:US07963319B2

    公开(公告)日:2011-06-21

    申请号:US12350659

    申请日:2009-01-08

    IPC分类号: E21B29/04

    CPC分类号: E21B29/04 E21B17/026

    摘要: Embodiments of the present invention generally relate to methods and apparatuses for gripping and shearing a downhole cable. In one embodiment, a line cutter mandrel includes: a tubular mandrel; a pocket disposed along an outer surface of the mandrel and longitudinally coupled to the mandrel; a channel disposed through the pocket for receiving a cable; and a line cutter. The line cutter includes a blade, is operable to engage an outer surface of the cable in a gripping position, is operable to at least substantially sever the cable with the blade in a cutting position, and is operable from the gripping position to the cutting position by relative longitudinal movement between the cable and the pocket.

    摘要翻译: 本发明的实施例一般涉及用于夹紧和剪切井下电缆的方法和装置。 在一个实施例中,线切割器心轴包括:管状心轴; 沿所述心轴的外表面设置并纵向联接到所述心轴的口袋; 通过所述口袋设置的用于接收电缆的通道; 和线切割机。 线切割器包括刀片,其可操作以在夹持位置接合电缆的外表面,可操作以使刀片处于切割位置至少基本上切断电缆,并且可从夹持位置到切割位置操作 通过电缆和口袋之间的相对纵向运动。

    DOWNHOLE CABLE GRIPPING/SHEARING DEVICE
    10.
    发明申请
    DOWNHOLE CABLE GRIPPING/SHEARING DEVICE 有权
    卧式电缆牵引/剪切装置

    公开(公告)号:US20100170675A1

    公开(公告)日:2010-07-08

    申请号:US12350659

    申请日:2009-01-08

    IPC分类号: E21B29/04 E21B29/00

    CPC分类号: E21B29/04 E21B17/026

    摘要: Embodiments of the present invention generally relate to methods and apparatuses for gripping and shearing a downhole cable. In one embodiment, a line cutter mandrel includes: a tubular mandrel; a pocket disposed along an outer surface of the mandrel and longitudinally coupled to the mandrel; a channel disposed through the pocket for receiving a cable; and a line cutter. The line cutter includes a blade, is operable to engage an outer surface of the cable in a gripping position, is operable to at least substantially sever the cable with the blade in a cutting position, and is operable from the gripping position to the cutting position by relative longitudinal movement between the cable and the pocket.

    摘要翻译: 本发明的实施例一般涉及用于夹紧和剪切井下电缆的方法和装置。 在一个实施例中,线切割器心轴包括:管状心轴; 沿所述心轴的外表面设置并纵向联接到所述心轴的口袋; 通过所述口袋设置的用于接收电缆的通道; 和线切割机。 线切割器包括刀片,其可操作以在夹持位置接合电缆的外表面,可操作以使刀片处于切割位置至少基本上切断电缆,并且可从夹持位置到切割位置操作 通过电缆和口袋之间的相对纵向运动。