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    • 2. 发明申请
    • Systems and Methods for Monitoring a Flow Path
    • 监测流路的系统和方法
    • US20130033701A1
    • 2013-02-07
    • US13616106
    • 2012-09-14
    • Ola TunheimRobert P. FreeseJames R. MacLennanLaurence James AbneyThomas Idland
    • Ola TunheimRobert P. FreeseJames R. MacLennanLaurence James AbneyThomas Idland
    • G01N21/01
    • G01N21/85
    • Disclosed are systems and methods for analyzing a flow of a fluid at two or more discrete locations to determine the concentration of a substance therein. One method of determining a characteristic of a fluid may include containing a fluid within a flow path that provides at least a first monitoring location and a second monitoring location, generating a first output signal corresponding to the characteristic of the fluid at the first monitoring location with a first optical computing device, generating a second output signal corresponding to the characteristic of the fluid at the second monitoring location with a second optical computing device, receiving first and second output signals from the first and second optical computing devices, respectively, with a signal processor, and determining a difference between the first and second output signals with the signal processor.
    • 公开了用于分析两个或更多个离散位置处的流体流动以确定其中物质浓度的系统和方法。 确定流体特性的一种方法可以包括:在流路内容纳至少提供第一监测位置和第二监测位置的流体,产生与第一监测位置处的流体特征对应的第一输出信号, 第一光学计算设备,用第二光学计算设备生成与第二监视位置处的流体的特性相对应的第二输出信号,分别从第一和第二光学计算设备接收具有信号的第一和第二输出信号 处理器,并且用信号处理器确定第一和第二输出信号之间的差异。
    • 6. 发明授权
    • Systems and methods for monitoring a flow path
    • 监测流路的系统和方法
    • US09182355B2
    • 2015-11-10
    • US13616106
    • 2012-09-14
    • Ola TunheimRobert P. FreeseJames R. MacLennanLaurence James AbneyThomas Idland
    • Ola TunheimRobert P. FreeseJames R. MacLennanLaurence James AbneyThomas Idland
    • G01N21/85
    • G01N21/85
    • Disclosed are systems and methods for analyzing a flow of a fluid at two or more discrete locations to determine the concentration of a substance therein. One method of determining a characteristic of a fluid may include containing a fluid within a flow path that provides at least a first monitoring location and a second monitoring location, generating a first output signal corresponding to the characteristic of the fluid at the first monitoring location with a first optical computing device, generating a second output signal corresponding to the characteristic of the fluid at the second monitoring location with a second optical computing device, receiving first and second output signals from the first and second optical computing devices, respectively, with a signal processor, and determining a difference between the first and second output signals with the signal processor.
    • 公开了用于分析两个或更多个离散位置处的流体流动以确定其中物质浓度的系统和方法。 确定流体特性的一种方法可以包括:在流路内容纳至少提供第一监测位置和第二监测位置的流体,产生与第一监测位置处的流体特征对应的第一输出信号, 第一光学计算设备,用第二光学计算设备生成与第二监视位置处的流体的特性相对应的第二输出信号,分别从第一和第二光学计算设备接收具有信号的第一和第二输出信号 处理器,并且用信号处理器确定第一和第二输出信号之间的差异。
    • 10. 发明授权
    • Systems and methods for monitoring oil/gas separation processes
    • 监测油气分离过程的系统和方法
    • US08908165B2
    • 2014-12-09
    • US13618152
    • 2012-09-14
    • Ola TunheimRobert P. FreeseJames R. MacLennan
    • Ola TunheimRobert P. FreeseJames R. MacLennan
    • G01N3/44G01N21/85
    • G01N21/85G01N21/31
    • Disclosed are systems and methods for analyzing an oil/gas separation process. One method includes conveying a fluid to a fluid separator coupled to a flow path, the fluid separator having an inlet and a discharge conduit, generating a first output signal corresponding to a characteristic of the fluid adjacent the inlet with a first optical computing device, generating a second output signal corresponding to the characteristic of the fluid adjacent the discharge conduit with a second optical computing device, receiving the first and second output signals with a signal processor communicably, and generating a resulting output signal with the signal processor indicative of how the characteristic of the fluid changed between the inlet and the discharge conduit.
    • 公开了用于分析油/气分离过程的系统和方法。 一种方法包括将流体输送到耦合到流动路径的流体分离器,所述流体分离器具有入口和排出导管,用第一光学计算装置产生对应于与入口相邻的流体的特性的第一输出信号,产生 用第二光学计算装置对应于与排放管道相邻的流体的特性的第二输出信号,可通信地用信号处理器接收第一和第二输出信号,并且产生结果输出信号,信号处理器指示特性 的流体在入口和排放管道之间变化。