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    • 51. 发明授权
    • Controlled coating apparatus, systems, and methods
    • 受控涂层设备,系统和方法
    • US09238864B2
    • 2016-01-19
    • US13416497
    • 2012-03-09
    • Michael T. Pelletier
    • Michael T. Pelletier
    • C23C8/04C23C8/06C23C22/48C23C16/04C23C16/52C23C16/455C23C22/00
    • C23C16/45544C23C16/042C23C16/045C23C16/45555C23C16/52
    • Apparatus and systems may operate to provide a first reactant as a gas that flows under reduced atmospheric pressure to interact with a surface, such as a tool body surface, the interaction confined to a passage within the tool body, wherein the passage includes the surface and extends without interruption from an entrance end of the passage to an exit end of the passage. Additional activity may include providing a second reactant as a gas under the reduced atmospheric pressure, subsequent to the first reactant, to interact with the surface of the tool body; and repeated provision of the first and second reactants until a selected coating thickness on the surface is formed. Additional apparatus, systems, and methods are disclosed.
    • 装置和系统可以操作以提供作为气体的第一反应物,所述气体在降低的大气压力下流动以与表面(例如工具主体表面)相互作用,所述相互作用限于工具主体内的通道,其中通道包括表面和 从通道的入口端不间断地延伸到通道的出口端。 另外的活性可以包括在第一反应物之后在降低的大气压下提供作为气体的第二反应物与工具体的表面相互作用; 并重复提供第一和第二反应物,直到形成表面上所选择的涂层厚度。 公开了附加装置,系统和方法。
    • 57. 发明授权
    • Downhole optical radiometry tool
    • 井下光学辐射测量工具
    • US09091151B2
    • 2015-07-28
    • US13502805
    • 2010-11-18
    • Christopher M. JonesStephen A. ZannoniMichael T. PelletierRaj PaiWei ZhangMarian L. MorysRobert Atkinson
    • Christopher M. JonesStephen A. ZannoniMichael T. PelletierRaj PaiWei ZhangMarian L. MorysRobert Atkinson
    • G01V5/08E21B47/10E21B49/10
    • E21B47/102E21B49/10
    • Various methods and tools optically analyze downhole fluid properties in situ. Some disclosed downhole optical radiometry tools include a tool body having a sample cell for fluid flow. A light beam passes through the sample cell and a spectral operation unit (SOU) such as a prism, filter, interferometer, or multivariate optical element (MOE). The resulting light provides a signal indicative of one or more properties of the fluid. A sensor configuration using electrically balanced thermopiles offers a high sensitivity over a wide temperature range. Further sensitivity is achieved by modulating the light beam and/or by providing a reference light beam that does not interact with the fluid flow. To provide a wide spectral range, some embodiments include multiple filaments in the light source, each filament having a different emission spectrum. Moreover, some embodiments include a second light source, sample cell, SOU, and detector to provide increased range, flexibility, and reliability.
    • 各种方法和工具可以原位分析井下流体性质。 一些公开的井下光学辐射测量工具包括具有用于流体流动的样品池的工具主体。 光束通过样品池和诸如棱镜,滤光器,干涉仪或多元光学元件(MOE)的光谱操作单元(SOU)。 所得到的光提供指示流体的一个或多个特性的信号。 使用电平衡热电堆的传感器配置在宽温度范围内提供高灵敏度。 通过调制光束和/或通过提供不与流体流相互作用的参考光束来实现进一步的灵敏度。 为了提供宽的光谱范围,一些实施例包括光源中的多个细丝,每个细丝具有不同的发射光谱。 此外,一些实施例包括第二光源,样品池,SOU和检测器,以提供更大的范围,灵活性和可靠性。