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    • 35. 发明申请
    • CONFORMAL AIRLOCK ASSEMBLY AND METHOD
    • 一致的气垫组件和方法
    • US20080087770A1
    • 2008-04-17
    • US11871014
    • 2007-10-11
    • CHRISTOPHER A. RYGAARDDANILO VIAZZO
    • CHRISTOPHER A. RYGAARDDANILO VIAZZO
    • B64G1/52B64G1/60
    • B64G1/46B64G1/60
    • A conformal airlock assembly for ingress and egress through a door from a high pressure environment to a low pressure environment. The airlock assembly includes a flexible, gas impermeable membrane that cooperates with a support wall in an airtight manner to form an interior pocket over the door on one side of the wall. A gas displacement system, in flow communication with the interior pocket, is selectively operable to flow air out of the interior pocket, collapsing the membrane toward a collapsed condition. An actuation system coupled to the flexible membrane is operable to displace the flexible membrane, in the collapsed condition, away from the one side of the support wall. Such displacement of the airtight membrane creates a low pressure space in the pocket that is selected to be sufficiently proximate that of the low pressure environment. Hence, the door may be opened to permit ingress and egress therethrough without a large pressure differential.
    • 通过门从高压环境到低压环境进出口的保形气锁组件。 气闸组件包括柔性的不透气膜,其以气密的方式与支撑壁配合,以在壁的一侧上形成在门上的内部袋。 与内部袋口流动连通的气体置换系统可选择性地可操作地将空气流出内部袋,使膜朝向折叠状态折叠。 耦合到柔性膜的致动系统可操作以在折叠状态下将柔性膜从支撑壁的一侧移开。 密封膜的这种位移在袋中产生低压空间,其被选择为足够接近于低压环境。 因此,门可以打开以允许入口和出口通过而没有大的压差。
    • 40. 发明授权
    • Method and apparatus for bio-regenerative life support system
    • 生物再生生命支持系统的方法和装置
    • US5005787A
    • 1991-04-09
    • US378548
    • 1989-07-11
    • Hatice S. Cullingford
    • Hatice S. Cullingford
    • A01G9/24B64G1/46C02F1/04C02F1/32C02F9/00
    • A01G9/246B64G1/46C02F9/00C02F1/04C02F1/32
    • A life support system for human habitation (cabin) having a bio-regenerative capability through the use of a plant habitat (greenhouse) whereby oxygen-rich air from the greenhouse is processed and used in the cabin and carbon dioxide-rich air from the cabin is used in the greenhouse. Moisture from the air of both cabin and greenhouse is processed and reused in both. Wash water from the cabin is processed and reused in the cabin as hygiene water, and urine from the cabin is processed and used in the greenhouse. Spent water from the greenhouse is processed and reused in the greenhouse. Portions of the processing cycles are separated between cabin and greenhouse in order to reduce to a minimum cross contamination of the two habitat systems. Other portions of the processing cycles are common to both cabin and greenhouse. The use of bio-regenerative techniques permits a substantial reduction of the total consumables used by the life support system.
    • 通过使用植物栖息地(温室)具有生物再生能力的人类居住(小屋)生命支持系统,其中来自温室的富氧空气在舱室中被加工和使用并且来自舱室的富含二氧化碳的空气 被用于温室。 客舱和温室空气中的水分都被处理和重复使用。 从客舱洗净水,作为卫生水处理并重新使用在舱内,并从室内处理尿液并在温室内使用。 来自温室的废水在温室中加工和再利用。 处理周期的一部分在机舱和温室之间分开,以便减少到两个栖息地系统的最小交叉污染。 加工周期的其他部分对于客舱和温室都是常见的。 使用生物再生技术可大大减少生命支持系统使用的总消耗品。