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    • 13. 发明申请
    • Systems and Methods for Detecting Microannulus Formation and Remediation
    • 检测微生物形成和修复的系统和方法
    • US20140076550A1
    • 2014-03-20
    • US13615714
    • 2012-09-14
    • Michael T. PelletierChristopher Michael JonesB. Raghava ReddyAshok K. Santra
    • Michael T. PelletierChristopher Michael JonesB. Raghava ReddyAshok K. Santra
    • E21B47/005
    • E21B33/14E21B47/123G01N21/47
    • Optical analysis systems may be useful in detecting microannulus formation in a wellbore casing and remediating a microannulus. In some instances, a system may include a cement sheath disposed about and in contact with at least a portion of an exterior surface of a casing; and at least one optical computing device arranged coupled to the casing, the at least one optical computing device having at least one integrated computational element configured to optically interact with a material of interest and thereby generate optically interacted light, and at least one detector arranged to receive the optically interacted light and generate an output signal corresponding to a characteristic of the material of interest, the material of interest comprising at least one selected from the group consisting of the cement sheath, a displacement composition disposed between the cement sheath and the exterior surface of the casing, and any combination thereof.
    • 光学分析系统可用于检测井眼套管中的微小球形成并修复微量元素。 在一些情况下,系统可以包括设置在壳体的外表面的至少一部分周围并与其接触的水泥护套; 以及至少一个耦合到所述壳体的光学计算设备,所述至少一个光学计算设备具有至少一个集成的计算元件,其被配置为与感兴趣的材料光学相互作用,从而产生光学相互作用的光,以及至少一个检测器, 接收光学相互作用的光并产生对应于感兴趣材料的特征的输出信号,感兴趣的材料包括选自由水泥护套组成的组中的至少一种,置于水泥护套和外表面之间的置换组合物 的壳体,以及它们的任何组合。
    • 15. 发明授权
    • Systems and methods for monitoring the properties of a fluid cement composition in a flow path
    • 用于监测流动路径中的流体水泥组合物的性质的系统和方法
    • US08619256B1
    • 2013-12-31
    • US13615696
    • 2012-09-14
    • Michael T. PelletierChristopher Michael JonesB. Raghava ReddyAshok Santra
    • Michael T. PelletierChristopher Michael JonesB. Raghava ReddyAshok Santra
    • G01N15/02
    • C04B40/0032E21B47/0005G01N15/0205G01N21/85G01N33/383G06E1/00C04B28/02
    • Optical analysis systems may be useful in systems and methods for various properties of fluid cement compositions. For example, a method may include generating with an optical computing device a plurality of output signals corresponding to a plurality of time points and a characteristic of a fluid cement composition at a monitoring location within a flow path, the optical computing device having an electromagnetic radiation source configured to optically interact with the fluid cement composition and an integrated computational element, wherein the integrated computational element is configured to produce and convey optically interacted light to a detector which generates a plurality of output signals corresponding to the characteristic at a plurality of time points; receiving the plurality of output signals with a signal processor communicably coupled to the detector; and determining a difference between at least two of the output signals with the signal processor.
    • 光学分析系统可用于流体水泥组合物的各种性质的系统和方法中。 例如,一种方法可以包括利用光学计算设备产生对应于多个时间点的多个输出信号和在流动路径内的监视位置处的流体水泥组合物的特征,所述光学计算设备具有电磁辐射 源,被配置为与流体水泥组合物光学相互作用和集成的计算元件,其中所述集成的计算元件被配置为产生并将光学相互作用的光传送到检测器,所述检测器产生对应于多个时间点处的特性的多个输出信号 ; 用可通信地耦合到所述检测器的信号处理器接收所述多个输出信号; 以及使用信号处理器确定至少两个输出信号之间的差。
    • 16. 发明申请
    • METHOD FOR FABRICATION OF A MULTIVARIATE OPTICAL ELEMENT
    • 多光学元件的制造方法
    • US20130323484A1
    • 2013-12-05
    • US13984420
    • 2011-02-11
    • Michael T. PelletierChristopher Michael Jones
    • Michael T. PelletierChristopher Michael Jones
    • G02B5/00
    • G02B5/00G01J3/10G01J3/42G01J2003/1213G02B5/285G02B27/0012Y10T428/24942
    • A method for fabricating an optical element including selecting a lamp spectrum and bandpass filter spectrum, obtaining a spectral characteristics vector to quantify the concentration of a component in a sample and obtaining a target spectrum from the lamp spectrum, the bandpass filter spectrum, and the spectral characteristics vector, is provided. Further including selecting a number of layers less than a maximum value, and performing an optimization routine using the index of refraction and thickness of each of the number of layers until an error between a model spectrum and the target spectrum is less than a tolerance value, or a number of iterations is exceeded. And reducing the number of layers if the error is less than a tolerance and stopping the procedure if the number of iterations is exceeded. A device using an optical element for optically-based chemometrics applications fabricated using the method above is also provided.
    • 一种用于制造光学元件的方法,包括选择灯光谱和带通滤光器光谱,获得光谱特征向量以量化样品中成分的浓度,并从灯光谱,带通滤光片光谱和光谱中获得目标光谱 特征向量。 还包括选择小于最大值的层数,以及使用折射率和层数中的每一层执行优化例程,直到模型光谱和目标光谱之间的误差小于公差值, 或者超过多次迭代。 如果误差小于公差,则减少层数,如果超过迭代次数则停止该过程。 还提供了使用上述方法制造的使用光学元件进行基于光学的化学计量学应用的装置。