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    • 1. 发明授权
    • Recirculating Coanda water extractor
    • 循环柯恩斯提水机
    • US07691185B2
    • 2010-04-06
    • US11610955
    • 2006-12-14
    • Ranjit R. DarkeMichael B. FaustDillon C. Sandoval
    • Ranjit R. DarkeMichael B. FaustDillon C. Sandoval
    • B01D45/12
    • B01D45/16B04C3/06
    • A recirculating water extractor includes a swirl vane, a converging nozzle, and two sumps. The recirculating water extractor may be designed to reintroduce uncollected water droplets back into the air stream upstream of both sumps, which may provide additional opportunities for separation. The Coanda effect may be exploited to increase the discharge of water along a surface. Utilizing a converging nozzle may intensify the centrifugal force applied to the air stream rich with entrained water and may move more of entrained water into contact with the wall of the nozzle, which, in turn, may enhance the liquid/vapor separation compared to prior art water extractors. The recirculating water extractor utilizing the Coanda effect and the method for removing entrained water from an air stream may be suitable for, but not limited to, applications in the aircraft and aerospace industries, for example, by being included in environmental control systems of aircraft.
    • 循环水提取器包括旋流叶片,会聚喷嘴和两个水池。 再循环水提取器可以设计成将未收集的水滴重新引入到两个水池的上游的空气流中,这可以提供额外的分离机会。 可以利用柯恩达效应来增加沿表面的水排放。 利用会聚喷嘴可以加强施加到富含夹带水的空气流中的离心力,并且可以使更多的夹带的水与喷嘴的壁接触,这反过来可以增强与现有技术相比的液体/蒸汽分离 抽水机。 利用柯恩达效应的循环水抽取器以及从空气流中除去夹带的水的方法可能适用于但不限于在飞行器和航空航天工业中的应用,例如通过包括在飞行器的环境控制系统中。
    • 7. 发明授权
    • Two-stage water extractor
    • 两级抽水机
    • US06524373B2
    • 2003-02-25
    • US09832082
    • 2001-04-09
    • George N. AfeicheMichael B. Faust
    • George N. AfeicheMichael B. Faust
    • B01D4512
    • B04C3/06B01D45/16
    • A method and apparatus for extracting water droplets from a water-laden airstream includes introducing the airstream into an extractor duct, imparting a swirling motion to the airstream at a first axial location in the duct, removing water droplets from the airstream that have been thrown to the inner surface of the duct at a second axial location downstream of the first location, and at a third axial location downstream of the second location removing water droplets not removed at the second location. The water removal mechanism at the second location includes a first collection chamber and a first array of apertures circumferentially positioned about the duct and communicating the interior of the duct with the first collection chamber. The water removal mechanism at the third location includes a second collection chamber and an upstream-facing annular ring of smaller diameter than the diameter of the duct for capturing water droplets that have not been collected by the water removal mechanism at the second location.
    • 一种用于从含水气流中提取水滴的方法和装置包括将气流引入提取器管道中,在管道中的第一轴向位置向气流施加漩涡运动,从已经被抛出的空气流中去除水滴 所述管道的内表面在所述第一位置下游的第二轴向位置处以及在所述第二位置的下游的第三轴向位置处去除在第二位置未被去除的水滴。 在第二位置处的除水机构包括第一收集室和围绕管道周向定位的孔的第一阵列,并且将管道的内部与第一收集室连通。 在第三位置处的除水机构包括第二收集室和直径小于管道直径的上游侧环形环,用于捕获在第二位置处未被排水机构收集的水滴。