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    • 73. 发明申请
    • Systems and methods for measurement and analysis of pipeline contaminants
    • 管道污染物测量和分析的系统和方法
    • US20080156073A1
    • 2008-07-03
    • US11646846
    • 2006-12-28
    • David BurnsTomas BorjonMark Scott
    • David BurnsTomas BorjonMark Scott
    • G01N30/02G01N30/90
    • G01N15/0205G01N2001/2223G01N2001/225G01N2015/1486G01N2030/8886
    • A system for measurement and analysis of pipeline contaminants is provided. The system includes a first assembly for engaging a pipeline from which a first fluid flow sample may be isokinetically collected for measurement of aerosol contaminants. The system also includes a second assembly for engaging the pipeline from which a second fluid flow sample may be collected for chromatographic analysis of the aerosol contaminants. The system may further include a third assembly for engaging the pipeline from which a fluid flow sample may be obtained for measurement of solid contaminants. Information on aerosol contaminants and solid contaminants can subsequently be used to select an appropriate extraction technology to control the presence of aerosol and solid contaminants within the pipeline. Information from the chromatographic analysis, on the other hand, may be used to identify the origin of the aerosol contaminants, so that corrective measures can be implemented to minimize the presence of aerosol contaminants within the pipeline. A method for measurement and analysis of pipeline contaminants is also provided.
    • 提供了一种用于管道污染物测量和分析的系统。 该系统包括用于接合管道的第一组件,从该管道可以动态地收集第一流体流动样品用于测量气溶胶污染物。 该系统还包括用于接合管道的第二组件,从该管道可以收集第二流体流动样品用于气溶胶污染物的色谱分析。 该系统还可以包括用于接合管道的第三组件,从该管道可获得用于测量固体污染物的流体流动样本。 随后可以使用关于气溶胶污染物和固体污染物的信息来选择适当的提取技术来控制管道内气溶胶和固体污染物的存在。 另一方面,来自色谱分析的信息可用于识别气溶胶污染物的来源,以便可以实施纠正措施以最小化管道内气溶胶污染物的存在。 还提供了一种测量和分析管道污染物的方法。
    • 76. 发明申请
    • OPTICALLY COUPLED RESONATOR
    • 光耦合谐振器
    • US20060196273A1
    • 2006-09-07
    • US11164915
    • 2005-12-10
    • David Burns
    • David Burns
    • G01L11/00
    • G01L9/002
    • An optically coupled resonator includes a resonator body having at least one resonator sidewall and a laterally offset photodiode formed in a semiconductor substrate adjacent to the resonator body. The resonator is driven by an electric field generated between the laterally offset photodiode and the resonator body when an incident light strikes the photodiode. A device including an optically coupled resonator and a method of operating an optically coupled resonator are also disclosed.
    • 光耦合谐振器包括具有至少一个谐振器侧壁和形成在与谐振器本体相邻的半导体衬底中的侧向偏移光电二极管的谐振器本体。 当入射光照射到光电二极管时,谐振器由横向偏移光电二极管和谐振器本体之间产生的电场驱动。 还公开了一种包括光耦合谐振器的装置和一种操作光耦合谐振器的方法。