Methods for magnetic imaging of geological structures
    4.
    发明授权
    Methods for magnetic imaging of geological structures 失效
    地质结构磁成像方法

    公开(公告)号:US08269501B2

    公开(公告)日:2012-09-18

    申请号:US12350914

    申请日:2009-01-08

    IPC分类号: G01V3/00 G01V3/08

    CPC分类号: G01V3/26

    摘要: Methods for imaging geological structures include injecting magnetic materials into the geological structures, placing at least one magnetic probe in a proximity to the geological structures, generating a magnetic field in the geological structures and detecting a magnetic signal. The at least one magnetic probe may be on the surface of the geological structures or reside within the geological structures. The methods also include injecting magnetic materials into the geological structures, placing at least one magnetic detector in the geological structures and measuring a resonant frequency in the at least one magnetic detector. Methods for using magnetic materials in dipole-dipole, dipole-loop and loop-loop transmitter-receiver configurations for geological structure electromagnetic imaging techniques are also disclosed.

    摘要翻译: 成像地质结构的方法包括将磁性材料注入到地质结构中,将至少一个磁探针放置在地质结构附近,在地质结构中产生磁场并检测磁信号。 至少一个磁探针可以在地质结构的表面上或者位于地质结构内。 所述方法还包括将磁性材料注入到地质结构中,将至少一个磁性检测器放置在地质结构中并测量至少一个磁性检测器中的谐振频率。 还公开了在偶极偶极子中使用磁性材料的方法,用于地质结构电磁成像技术的偶极环和环路发射器 - 接收器配置。

    METHODS FOR MAGNETIC IMAGING OF GEOLOGICAL STRUCTURES
    6.
    发明申请
    METHODS FOR MAGNETIC IMAGING OF GEOLOGICAL STRUCTURES 审中-公开
    地质构造磁场成像方法

    公开(公告)号:US20120306501A1

    公开(公告)日:2012-12-06

    申请号:US13587333

    申请日:2012-08-16

    IPC分类号: G01V3/08

    CPC分类号: G01V3/26

    摘要: Methods for imaging geological structures include injecting magnetic materials into the geological structures, placing at least one magnetic probe in a proximity to the geological structures, generating a magnetic field in the geological structures and detecting a magnetic signal. The at least one magnetic probe may be on the surface of the geological structures or reside within the geological structures. The methods also include injecting magnetic materials into the geological structures, placing at least one magnetic detector in the geological structures and measuring a resonant frequency in the at least one magnetic detector. Methods for using magnetic materials in dipole-dipole, dipole-loop and loop-loop transmitter-receiver configurations for geological structure electromagnetic imaging techniques are also disclosed.

    摘要翻译: 成像地质结构的方法包括将磁性材料注入到地质结构中,将至少一个磁探针放置在地质结构附近,在地质结构中产生磁场并检测磁信号。 至少一个磁探针可以在地质结构的表面上或者位于地质结构内。 所述方法还包括将磁性材料注入到地质结构中,将至少一个磁性检测器放置在地质结构中并测量至少一个磁性检测器中的谐振频率。 还公开了在偶极偶极子中使用磁性材料的方法,用于地质结构电磁成像技术的偶极环和环路发射器 - 接收器配置。

    EMBEDDED ARRAYS OF VERTICALLY ALIGNED CARBON NANOTUBE CARPETS AND METHODS FOR MAKING THEM
    9.
    发明申请
    EMBEDDED ARRAYS OF VERTICALLY ALIGNED CARBON NANOTUBE CARPETS AND METHODS FOR MAKING THEM 有权
    垂直对准碳纳米管地毯的嵌入阵列及其制备方法

    公开(公告)号:US20120107597A1

    公开(公告)日:2012-05-03

    申请号:US12297115

    申请日:2007-04-23

    摘要: According to some embodiments, the present invention provides a system and method for supporting a carbon nanotube array that involve an entangled carbon nanotube mat integral with the array, where the mat is embedded in an embedding material. The embedding material may be depositable on a carbon nanotube. A depositable material may be metallic or nonmetallic. The embedding material may be an adhesive material. The adhesive material may optionally be mixed with a metal powder. The embedding material may be supported by a substrate or self-supportive. The embedding material may be conductive or nonconductive. The system and method provide superior mechanical and, when applicable, electrical, contact between the carbon nanotubes in the array and the embedding material. The optional use of a conductive material for the embedding material provides a mechanism useful for integration of carbon nanotube arrays into electronic devices.

    摘要翻译: 根据一些实施方案,本发明提供了一种用于支撑碳纳米管阵列的系统和方法,所述碳纳米管阵列涉及与所述阵列整合的缠结碳纳米管垫,其中所述垫嵌入嵌入材料中。 嵌入材料可以沉积在碳纳米管上。 可存放材料可以是金属或非金属的。 嵌入材料可以是粘合剂材料。 粘合剂材料可以任选地与金属粉末混合。 嵌入材料可以由衬底支撑或自支撑。 嵌入材料可以是导电的或非导电的。 该系统和方法在阵列中的碳纳米管和嵌入材料之间提供优异的机械性能,并且在适用时提供电气接触。 可选地使用用于嵌入材料的导电材料提供了用于将碳纳米管阵列集成到电子器件中的机制。