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    • 2. 发明申请
    • FLUID DRAIN MANIFOLD
    • 流体排水歧管
    • US20140373940A1
    • 2014-12-25
    • US13922557
    • 2013-06-20
    • Caterpillar Inc.
    • Sorin G. Toader, JR.Eric P. Jakubiak
    • F16L55/07F15B21/00
    • F16L55/07E02F9/2267F15B13/0814F15B21/005F15B21/041F16L41/03Y10T137/4857Y10T137/4874
    • A fluid drain manifold is disclosed. The fluid drain manifold can include a manifold body and a plurality of hollow interior channels extending through an interior of the manifold body between an upper end and a bottom end of the manifold body. The plurality of hollow interior channels can include a plurality of individual drain line channels and an outlet channel. The outlet channel can be disposed within the interior of the manifold body, and the outlet channel can include an upper end and an open lower, outlet end. The open lower outlet end of the outlet channel can be positioned at the bottom end of the manifold body. Each of the plurality of individual drain line channels can include an open upper, inlet end at the upper end of the manifold body and an open lower, outlet end fluidly connected to the outlet channel.
    • 公开了一种流体排放歧管。 流体排放歧管可以包括歧管主体和多个中空的内部通道,其在歧管主体的上端和底端之间延伸穿过歧管主体的内部。 多个中空内部通道可以包括多个单独的排水管道和出口通道。 出口通道可以设置在歧管主体的内部,并且出口通道可以包括上端和敞开的下部出口端。 出口通道的开放的下部出口端可以位于歧管主体的底端。 多个单个排水管道中的每一个可以包括在歧管体的上端处的敞开的上部入口端和流体连接到出口通道的开放的下部出口端。
    • 7. 发明授权
    • Drain treatment system
    • 排水处理系统
    • US08408236B2
    • 2013-04-02
    • US12660213
    • 2010-02-22
    • Hideaki Yumoto
    • Hideaki Yumoto
    • F17D1/00
    • F28F17/005F16T1/34F28B9/08Y10T137/4857Y10T137/7837Y10T137/8593Y10T137/86187Y10T137/86332
    • A drain treatment system capable of achieving balance of pressure between a facility apparatus and a drain treatment apparatus with a simple structure is provided.A bottom part of a heat, exchanger 2 is connected with a top part of a drain tank 3 by a drain discharge pipe 4. The drain discharge pipe 4 has a balance pipe-connecting tube 5. The balance pipe-connecting tube 5 comprises: a balance pipe-connecting part 6; a communicating tube-connecting part 7; and a communicating passage 8 which connects both the parts therein. The top part of the drain tank 3 is connected with the balance pipe-connecting part 6 by a balance pipe 9. Further, the communicating tube-connecting part 7 is connected with a lower part of the heat exchanger 2 by a communicating tube 10 which passes through the drain discharge pipe 4. If a drain level of the heat exchanger 2 is below an open end of the communicating tube 8 on the side of the heat exchanger 2, the balance of pressure is achieved between the heat exchanger 2 and the drain tank 3 by the balance pipe 9, the communicating passage 8, and the communicating tube 10, allowing the drain from the heat exchanger 2 to be smoothly discharged into the drain tank 3 through the drain discharge pipe 4.
    • 提供了能够以简单的结构实现设备装置和排水处理装置之间的压力平衡的排水处理系统。 热交换器2的底部通过排水管4与排水箱3的顶部连接。排水管4具有平衡管连接管5.平衡管连接管5包括: 平衡管连接部6; 连通管连接部7; 以及连接两个部分的连通通道8。 排水槽3的顶部通过平衡管9与平衡管连接部6连接。此外,连通管连接部7通过连通管10与热交换器2的下部连接,连通管10 通过排水管4.如果热交换器2的排放水平低于热交换器2侧的连通管8的开口端,则在热交换器2和排水管2之间达到压力平衡 罐3通过平衡管9,连通通道8和连通管10,允许来自热交换器2的排放通过排放排水管4被平稳地排放到排水槽3中。
    • 9. 发明授权
    • Ex-situ component recovery
    • 非原位组分回收
    • US08372209B2
    • 2013-02-12
    • US13279573
    • 2011-10-24
    • Darwin Gene Enicks
    • Darwin Gene Enicks
    • B08B5/04
    • B08B7/0071B08B7/00Y10T137/4259Y10T137/4857Y10T137/86083Y10T137/86131
    • Disclosed herein are devices, methods and systems for ex-situ component recovery. The ex-situ recovery can be performed by desorbing or outgassing components of a processing system in a recovery system, rather than in the processing system itself. The recovery system can include a docking station and/or a heated vacuum chamber. The heated vacuum chamber can be used to desorb or outgas components that will be located inside the processing system, while the docking station can be used to desorb or outgas components that will be connected to the processing system. The processing system components can be placed under pressure by the recovery system to desorb or outgas contaminants and remove virtual leaks. The recovery system pressure can include a vacuum roughing pump, a turbomolecular pump, and/or a cryogenic pump to apply a pressure necessary to desorb or outgas the components.
    • 本文公开了用于非原位组分回收的装置,方法和系统。 可以通过在回收系统中的处理系统的组件的解吸或除气而不是处理系统本身来执行非原位恢复。 回收系统可以包括对接站和/或加热的真空室。 加热的真空室可以用于解除或排出将位于处理系统内部的部件,而对接站可用于解除或排出将连接到处理系统的部件。 处理系统组件可以被回收系统压力放置,以解吸或排出污染物并去除虚拟泄漏。 回收系统压力可以包括真空粗抽泵,涡轮分子泵和/或低温泵,以施加解吸或排出组分所需的压力。
    • 10. 发明授权
    • Methods for treating allograft products
    • 用于治疗同种异体移植物产品的装置和方法
    • US07919043B2
    • 2011-04-05
    • US12851090
    • 2010-08-05
    • Raymond J. Klein
    • Raymond J. Klein
    • A61L2/00
    • A61L2/0088A61L2/0011A61L2/025A61L2/183A61L2/186A61L2/28A61L27/3604A61L2430/40B08B3/10B08B3/12Y10T137/4857
    • There are disclosed systems and methods of delivering sterile fluids aseptically to a sealed canister. In an embodiment, a includes a canister having an inlet, a vent, and a drain outlet, a reagent manifold in communication with the inlet, a bubbler in communication with the vent, and a fluid communicator from the drain outlet. In another embodiment, a method includes providing a canister having an inlet, a vent, and a drain outlet; selectively providing reagents to the canister from a reagent manifold in communication with the inlet, allowing excess gasses to leave the canister with a bubbler in communication with the vent, and selectively purging the reagents from the canister through the drain outlet. Other embodiments are also disclosed.
    • 公开了将无菌流体无菌地递送到密封的罐的系统和方法。 在一个实施例中,a包括具有入口,通气口和排水出口的罐,与入口连通的试剂歧管,与排气口连通的起泡器,以及来自排放出口的流体通信器。 在另一个实施例中,一种方法包括提供具有入口,排气口和排水出口的罐; 从与所述入口连通的试剂歧管选择性地向所述罐提供试剂,允许多余的气体具有与所述通气口连通的起泡器离开所述罐,以及通过所述排放出口选择性地从所述罐排出所述试剂。 还公开了其他实施例。