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    • 5. 发明申请
    • Thermal Conditioning Fluids For An Underwater Cryogenic Storage Vessel
    • 水下低温储存容器的热调节液
    • US20170012303A1
    • 2017-01-12
    • US14512752
    • 2014-10-13
    • The Boeing Company
    • Edwin C. CadyDaniel A. WattsGary D. Grayson
    • H01M8/04
    • H01M8/04014H01M8/04029H01M8/04052H01M8/04074H01M8/04082H01M8/04208H01M8/04373H01M8/04425H01M8/04753H01M8/0668
    • Technologies are described herein for conditioning fluids stored in an underwater cryogenic storage vessel designed for use in a fuel system of an underwater vehicle. According to one aspect of the disclosure, a fuel system includes a fuel cell and a storage vessel, which stores a first fluid that is supplied to the fuel cell and a second fluid that is produced by the fuel cell. The fuel system also includes a thermal conditioning module that receives the first fluid from the storage vessel and receives the second fluid from the fuel cell. The first fluid stored in the storage vessel is conditioned by absorbing heat from the second fluid, such that the fuel cell receives the conditioned first fluid. The second fluid received from the fuel cell is in gaseous state and is converted to a liquid. The liquid second fluid is stored in the storage vessel.
    • 本文描述了用于调节存储在设计用于水下航行器的燃料系统的水下低温储存容器中的流体的技术。 根据本公开的一个方面,燃料系统包括燃料电池和储存容器,其存储供应到燃料电池的第一流体和由燃料电池产生的第二流体。 燃料系统还包括热调节模块,其接收来自储存容器的第一流体并从燃料电池接收第二流体。 存储在储存容器中的第一流体通过从第二流体吸收热量来调节,使得燃料电池接收经调节的第一流体。 从燃料电池接收的第二流体处于气态并被转化为液体。 液体第二流体储存在储存容器中。
    • 9. 发明申请
    • VALVE, FLUIDIC APPARATUS, AND FLUID-SUPPLYING APPARATUS
    • 阀,流体装置和流体供应装置
    • US20150233484A1
    • 2015-08-20
    • US14701852
    • 2015-05-01
    • Murata Manufacturing Co., Ltd.
    • Takenobu MAEDAGaku KAMITANIHidekazu SASAI
    • F16K15/18
    • F16K15/185F16K7/17F16K15/141F16K15/144G05D16/0633H01M8/04082Y10T137/7792
    • A valve includes a valve body, a diaphragm dividing the inside of the valve body into first and second valve chambers and being displaced under a pressure of fluid, first and second openings in communication with the first valve chamber, and a third opening in communication with the second valve chamber. When a pump is not driven, the force applied to a side of the diaphragm facing the second valve chamber is greater than the force applied to a side of the diaphragm facing the first valve chamber, and the second opening is sealed by the diaphragm. When the pump is driven and the force applied to the side of the diaphragm facing the first valve chamber becomes greater than the force applied to the side of the diaphragm facing the second valve chamber, the diaphragm allows the first and second openings and to communicate with each other.
    • 阀包括阀体,将阀体内部分隔成第一和第二阀室并在流体压力下移动的隔膜,与第一阀室连通的第一和第二开口以及与第一阀室连通的第三开口 第二阀室。 当泵不被驱动时,施加到面向第二阀室的隔膜侧的力大于施加到面向第一阀室的隔膜侧的力,第二开口被隔膜密封。 当泵被驱动并且施加到面向第一阀室的隔膜侧的力变得大于施加到面向第二阀室的隔膜侧的力时,隔膜允许第一和第二开口与第 彼此。