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    • 5. 发明授权
    • Method and apparatus for self-calibration of density profiler
    • 密度分析仪自校准的方法和装置
    • US09360406B2
    • 2016-06-07
    • US13864459
    • 2013-04-17
    • Thermo Fisher Scientific Inc.
    • Alex KulikMichael George BrosseauHai Wang
    • G01F1/12G01F25/00G01N9/00G01N9/24
    • G01N9/00G01N9/24
    • A process and system for self-calibration of a density profiler is disclosed. The process may include measuring a density profile of a fluid in a vessel using a plurality of sensors or a single sensor, and measuring a density profile of the fluid in the vessel using a plurality of sample ports. A density of the fluid proximate a location of at least one of the plurality of sample ports based on the sensor measured density profile may then be interpolated. A density of the fluid proximate a location of at least one of the plurality of sensors based on the sample port measured density profile may also be interpolated. Adjustment of a calibration of at least one of the plurality of sensors may then be made based on both the interpolated sample port density and the interpolated sensor density.
    • 公开了用于密度分析器的自校准的过程和系统。 该过程可以包括使用多个传感器或单个传感器来测量容器中的流体的密度分布,并且使用多个样品端口测量容器中的流体的密度分布。 然后可以内插基于传感器测量密度分布的多个采样端口中至少一个的位置附近的流体的密度。 基于样本端口测量的密度分布,接近于多个传感器中的至少一个的位置的流体的密度也可被内插。 然后可以基于插值的采样端口密度和内插的传感器密度来对多个传感器中的至少一个的校准进行调整。
    • 9. 发明授权
    • Combustion tube and method for combusting a sample for combustion analysis
    • 燃烧管和用于燃烧样品进行燃烧分析的方法
    • US08758698B2
    • 2014-06-24
    • US12054006
    • 2008-03-24
    • Louis Marie SmeetsFransiscus Maria FolstPeter Joannes Coenders
    • Louis Marie SmeetsFransiscus Maria FolstPeter Joannes Coenders
    • G01N25/24G01N31/12
    • G01N33/0004F23C3/00F23C6/04G01N31/12
    • Combustion tube (100,130,150) and method for combusting a sample to form combustion products for analysis. A primary combustion chamber (102) receives and combusts a sample to form first combustion products. A secondary combustion chamber (110) receives and combusts the first combustion products to form second combustion products. The secondary chamber is disposed around the primary chamber and comprises a plurality of—preferably, three—combustion compartments (112-116). Each successive compartment is disposed around the preceding compartment and defines a respective gas flow channel having an inlet opening (108,118,120) and an outlet opening (118,120,122) at opposite ends. Each successive gas flow channel shares its inlet opening with the outlet opening of the preceding channel. The plurality of combustion compartments define a substantially continuous gas flow conduit from the inlet opening of the innermost compartment to the outlet opening of the outermost compartment. Static gas mixers (132,134) may be employed to enhance mixing of the combustion products.
    • 燃烧管(100,130,150)和燃烧样品以形成燃烧产物进行分析的方法。 主燃烧室(102)接收并燃烧样品以形成第一燃烧产物。 二次燃烧室(110)接收并燃烧第一燃烧产物以形成第二燃烧产物。 辅助室设置在主室周围,并且包括多个优选的三燃烧室(112-116)。 每个连续的隔室设置在前一隔室周围,并且限定相应的气体流动通道,其具有在相对端的入口开口(108,118,120)和出口开口(118,120,122)。 每个连续的气体流动通道与前一通道的出口开口共用其入口开口。 多个燃烧室限定从最内隔室的入口到最外隔室的出口的基本上连续的气流导管。 静态气体混合器(132,134)可用于增强燃烧产物的混合。