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    • 2. 发明授权
    • Passive ventilation device and method
    • 被动通风装置及方法
    • US5603656A
    • 1997-02-18
    • US526479
    • 1995-09-11
    • Stephen C. BaerDavid C. Harrison
    • Stephen C. BaerDavid C. Harrison
    • H01M2/12H01M10/50
    • H01M2/12H01M10/4235H01M10/615H01M10/658H01M2/1264
    • A passive ventilation device and method for releasing hydrogen from an enclosure (3) housing a battery (9). The enclosure has an outer shell (11) and an inner insulating layer (13) that includes a gas permeable panel (7). The panel is disposed within the chamber adjacent one of the sidewalls of the enclosure. The sidewall has an inlet opening (34) and an exhaust opening (36) in communication with a ventilation space (32) for providing an upward air flow through the ventilation space to draw hydrogen through the gas permeable panel into the ventilation space. The upward air flow can be powered by the low density hydrogen and/or by heating the air within the ventilation space to a temperature greater than the ambient temperature.
    • 一种用于从容纳电池(9)的外壳(3)释放氢的被动通风装置和方法。 外壳具有外壳(11)和包括透气板(7)的内绝缘层(13)。 面板设置在邻近外壳侧壁之一的腔室内。 侧壁具有与通气空间(32)连通的入口开口(34)和排气口(36),用于提供通过通气空间的向上空气流,以将氢气穿过透气面板吸入通风空间。 向上的空气流可以由低密度氢气和/或通过将通风空间内的空气加热到大于环境温度的温度来供电。
    • 3. 发明授权
    • Integral roof cooling container
    • 整体屋顶冷却容器
    • US5609200A
    • 1997-03-11
    • US277925
    • 1994-07-20
    • David C. Harrison
    • David C. Harrison
    • A01K1/00B29C33/00B29C41/04B29C70/74E04D13/16F24D11/00F24F5/00F25D9/00F28D15/00
    • F25D9/00A01K1/0082B29C33/0016B29C70/742E04D13/16F24D11/00F24F5/0017B29C41/04F25D2331/804Y02E60/147Y02P60/542Y10S165/904
    • A passive temperature regulating system for cooling a structure exposed to extreme heat and a method for manufacturing the temperature regulator system. The system comprises at least one temperature regulator integrally formed to the roof of the structure. The temperature regulator is manufactured from a mold having a lower mold portion removably attached to an upper wall. The upper wall has an uneven lower surface and is adapted to be part of the roof. A resinous material is molded within the mold to form a container. After cooling, the lower portion is removed and the container remains an integral part of the upper wall because the melted plastic has conformed to the uneven lower surface of the upper wall. Thus, the container will remain in intimate contact with the roof, thereby supporting it own weight and eliminating the need for an expensive support system.
    • 用于冷却暴露于极热的结构的被动温度调节系统和用于制造温度调节器系统的方法。 该系统包括至少一个温度调节器,整体地形成在结构的屋顶上。 温度调节器由具有可拆卸地附接到上壁的下模具部分的模具制成。 上壁具有不平的下表面,并且适于作为屋顶的一部分。 在模具内模制树脂材料以形成容器。 冷却后,下部被去除,并且容器保持上壁的整体部分,因为熔化的塑料已经与上壁的不平坦的下表面一致。 因此,容器将保持与屋顶的紧密接触,从而支撑其自身的重量并且消除对昂贵的支撑系统的需要。
    • 4. 发明授权
    • Concentric well-type extractor tube for filling containers with
pressurized fluid
    • 用加压流体填充容器的同心井式提取管
    • US4715414A
    • 1987-12-29
    • US919314
    • 1986-10-15
    • David C. HarrisonBrian Glover
    • David C. HarrisonBrian Glover
    • B67D1/08F16L37/12B65B3/18
    • B67D1/0832Y10T137/314Y10T137/6035Y10T137/6137
    • A concentric well-type extractor tube having two concentric valves retained in a valve neck for filling containers, such as beer kegs, with pressurized beverages. The length of the valve neck is reduced so that the bottom of the valve neck is horizontally aligned with the top of a movable first valve assembly. The side openings of the depending basket portion of the extractor tube are raised to a position adjacent the first valve assembly. Therefore, beer filling an inverted keg can pass directly between a first valve seat and movable first valve member of the first movable valve assembly and thereafter through the openings in the basket and into the keg. This substantially shortens the beer flow path and eliminates the passage of beer through a constricted area found in prior art extractor tubes. Also, a transverse deflector plate serves to deflect beer from the center of the keg to the sidewalls, thereby substantially reducing turbulence during filling. The deflector plate can be retained on the siphon tube portion of the extractor tube, can be located within the depending basket portion of the siphon tube, or can be located on the top of the lip of the siphon tube adjacent the first valve seat, either as an extension of the lip or wedged between the top of the lip and bottom of the first valve seat.
    • 同心井式抽出管,其具有保持在阀颈中用于用加压饮料填充容器(例如啤酒桶)的两个同心阀。 阀颈的长度减小,使得阀颈的底部与活动的第一阀组件的顶部水平对准。 提取管的悬挂篮部分的侧开口被升高到与第一阀组件相邻的位置。 因此,填充倒置小桶的啤酒可以直接通过第一可动阀组件的第一阀座与可动第一阀构件之间,然后通过篮中的开口并进入小桶。 这大大缩短了啤酒流动路径,并且消除了啤酒通过现有技术提取管中发现的收缩区域。 此外,横向导流板用于将啤酒从小桶的中心偏转到侧壁,从而大大减少了填充期间的湍流。 导流板可以被保持在抽吸管的虹吸管部分上,可以位于虹吸管的悬挂篮部分内,或者可以位于与第一阀座相邻的虹吸管的唇缘的顶部,或者 作为唇缘的延伸部或楔入唇缘的顶部和第一阀座的底部之间。