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    • 4. 发明申请
    • Improvements to Aspirated Sampling Systems
    • 抽吸取样系统的改进
    • US20170045415A1
    • 2017-02-16
    • US15117810
    • 2015-03-06
    • Xtralis Global
    • Alasdair James Williamson
    • G01M3/28G01N1/26G01N1/22G01N1/24
    • G01M3/2815G01M3/20G01M3/207G01M3/222G01M3/243G01M3/28G01M3/2807G01N1/2247G01N1/2273G01N1/24G01N1/26
    • A method for determining correct performance of a sampling pipe in an aspirated particle and/or gas sampling system. The method includes causing a change in airflow n a sampling pipe of the aspirated particle and/or gas sampling system that induces a change in at least one airflow property within the sampling pipe, and detecting an effect of the change in said airflow property. Also disclosed is a method for determining correct performance of an aspirated particle gas sampling system. The method includes determining correct performance of a sampling pipe in the aspirated particle and/or gas sampling and determining correct performance of a detector in the aspirated particle and/or gas sampling system, wherein a test fluid is introduced to the aspirated particle and/or gas sampling system at or near the detector.
    • 一种用于确定吸气颗粒和/或气体采样系统中取样管的正确性能的方法。 该方法包括引起吸气颗粒和/或气体采样系统的采样管的气流变化,其引起采样管内的至少一个气流特性的变化,并且检测所述气流特性的变化的影响。 还公开了一种用于确定抽吸颗粒气体取样系统的正确性能的方法。 该方法包括确定吸气颗粒中的取样管和/或气体取样的正确性能,并确定吸入的颗粒和/或气体取样系统中的检测器的正确性能,其中将测试流体引入吸入的颗粒和/或 检测器处或附近的气体采样系统。
    • 5. 发明申请
    • DEVICE, METHOD AND PLATE HEAT EXCHANGER
    • 装置,方法和板式换热器
    • US20150285574A1
    • 2015-10-08
    • US14436403
    • 2013-11-29
    • ALFA LAVAL CORPORATE AB
    • Matz AnderssonMagnus NilssonKlas Bertilsson
    • F28F27/00G01M3/28
    • F28F27/00F28F3/10F28F2265/16G01M3/28
    • A device and a method for assessing a gasket pressure of a gasket arrangement between two adjacent heat transfer plates of a plate heat exchanger is provided. The gasket arrangement seals between adjacent heat transfer plates to define a flow channel between adjacent heat transfer plates, and the gasket arrangement is arranged to be exposed to a fluid passing through the flow channel. The device comprises a test object and a holder which are adapted to be arranged in a flow path of the fluid. The holder is arranged to hold the test object and the test object is arranged to be exposed to the fluid. The device is adapted to be arranged outside a space delimited by the adjacent heat transfer plates. The test object is arranged to be evaluated for an indirect assessment of the gasket pressure of the gasket arrangement.
    • 提供了一种用于评估板式换热器的两个相邻传热板之间的衬垫布置的衬垫压力的装置和方法。 衬垫装置在相邻的传热板之间密封以限定相邻传热板之间的流动通道,并且衬垫装置布置成暴露于通过流动通道的流体。 该装置包括测试对象和适于布置在流体的流动路径中的保持器。 保持器布置成保持测试对象,并且测试对象被布置成暴露于流体。 该装置适于布置在由相邻传热板限定的空间的外部。 测试对象被布置成被评估用于垫圈装置的垫圈压力的间接评估。
    • 8. 发明申请
    • FUEL CELL SYSTEM WITH QUICK CONNECT COMPONENTS
    • 具有快速连接部件的燃油电池系统
    • US20140004433A1
    • 2014-01-02
    • US14019702
    • 2013-09-06
    • Bloom Energy Corporation
    • Arne BallantineKirsten BurpeeBrent Cheldelin
    • H01M8/06
    • H01M8/0662G01M3/28H01M8/0438H01M8/04425H01M8/04664H01M8/04753H01M8/0606
    • Embodiments relate to a fuel cell system. In an embodiment, the fuel cell system includes advanced leak test capabilities. In another embodiment, the fuel cell system includes a system to bypass one or more separation units while permitting the fuel cell system to continue to produce electricity. In another embodiment, the fuel cell system includes an alignment system that permits ease of alignment when a fuel cell module is installed proximate a fuel processing module. In another embodiment, the fuel cell system includes a system of supplying auxiliary fuel from a mobile auxiliary fuel supply. In an embodiment, one or more or all of these embodiments may be practiced together in combination.
    • 实施例涉及一种燃料电池系统。 在一个实施例中,燃料电池系统包括先进的泄漏测试能力。 在另一个实施例中,燃料电池系统包括绕过一个或多个分离单元同时允许燃料电池系统继续发电的系统。 在另一个实施例中,燃料电池系统包括对准系统,当在燃料处理模块附近安装燃料电池模块时,其允许对准的容易性。 在另一个实施例中,燃料电池系统包括从移动辅助燃料供应源供应辅助燃料的系统。 在一个实施例中,这些实施例中的一个或多个或全部可以组合地一起实施。
    • 9. 发明授权
    • Dosing manifold assembly
    • 计量歧管组件
    • US08584707B2
    • 2013-11-19
    • US12958735
    • 2010-12-02
    • Steven L. Ambrose
    • Steven L. Ambrose
    • F16K11/00F16K31/02
    • F16K31/0693F01N2610/02F01N2610/14F16K27/003F16K31/0665G01M3/025G01M3/28Y10T137/8122Y10T137/877Y10T137/87885
    • A manifold assembly configured for distributing fluid to an externally connected hydraulic component which may be capable of leakage detection through measurement of pressure decay. The manifold assembly may include a manifold body and a valve assembly. The manifold body may have a plurality of fluid passages. Fluid flow may be controlled by the valve assembly attached to the manifold body. The valve assembly may include two valve devices capable of controlling fluid flow. When fluid is blocked by the valve devices, any fluid leakage may be unloaded from the valve assembly through an orifice located between the two valve devices. The orifice may provide a pressure unloading feature which may increase accuracy of measuring the pressure decay during leakage detection.
    • 歧管组件,其构造成用于将流体分配到外部连接的液压部件,该液压部件可以通过测量压力衰减来进行泄漏检测。 歧管组件可以包括歧管主体和阀组件。 歧管主体可以具有多个流体通道。 流体流动可以通过附接到歧管主体的阀组件来控制。 阀组件可以包括能够控制流体流动的两个阀装置。 当流体被阀装置堵塞时,可以通过位于两个阀装置之间的孔口从阀组件卸载任何流体泄漏。 孔可以提供压力卸载特征,其可以增加在泄漏检测期间测量压力衰减的精度。