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    • 6. 发明申请
    • EFFLUENT DISCHARGE
    • 排放物
    • US20100116726A1
    • 2010-05-13
    • US12593176
    • 2008-04-01
    • David DwekMurray EldridgeTim HaysomDuncan Barclay
    • David DwekMurray EldridgeTim HaysomDuncan Barclay
    • E03B3/04B60P3/22
    • B63J4/004Y10T137/6906
    • Apparatus for discharging effluent from a sea-based vessel (10) comprises a branched pipeline (22) which is disposed on the seabed (18). The vessel (10) carries a large-scale desalination plant (12), and the effluent, which is in the form of concentrated brine, is pumped through the branched pipeline (22) to a plurality of discharge locations on the seabed. The branched pipeline (22) includes a number of flexible discharge pipes (26a d) which fan out from a common location (30) towards open ends (28a-d). The open ends (28a d) are remote from each other, and the effluent is discharged simultaneously through the open ends (28a d) causing it to be dispersed effectively without harming surrounding eco-systems. In an alternative arrangement, a vessel-based water purification plant (10) is connected to a freshwater pipeline (16) and to a discharge pipeline (22), each of which is disposed on the seabed (18). Purified water is pumped to shore from the vessel (10) through the freshwater pipeline (16), and effluent is pumped from the vessel (10) into the sea (14) through the discharge pipeline (22).
    • 用于从海基容器(10)排出流出物的设备包括设置在海床(18)上的分支管道(22)。 容器(10)携带大型脱盐设备(12),将浓缩盐水形式的流出物通过分支管道(22)泵送到海床上的多个排放位置。 分支管道(22)包括从公共位置(30)向开口端(28a-d)扇出的多个柔性排出管道(26a d)。 开放端(28a d)彼此远离,并且流出物通过开放端(28a d)同时排出,使得其有效分散,而不会损害周围的生态系统。 在替代方案中,容器式净水设备(10)连接到淡水管道(16)和排放管道(22),每个排放管道设置在海底(18)上。 净化水从容器(10)通过淡水管道(16)被泵送到岸边,并且通过排放管道(22)将流出物从容器(10)泵送到海(14)中。
    • 9. 发明授权
    • Alternate intake pipe system to eliminate zebra mussel colonization
    • 替代进气管系统,以消除斑马贻贝定植
    • US5253954A
    • 1993-10-19
    • US913014
    • 1992-07-14
    • Samuel E. Landsberger
    • Samuel E. Landsberger
    • E02B1/00E03B3/04
    • E02B1/006E03B3/04Y10T137/402Y10T137/87362
    • A method and apparatus for eliminating zebra mussel colonizations from fresh water intake pipes for facilities, such as power plants and water treatment plants, are disclosed. One or more small diameter alternate intake pipes are disposed within a main intake pipe, and the pipes are connected by means of individually controllable valves to a pump for supplying water to the facility. Zebra mussel build up along the interior walls of any of the pipes is eliminated by shutting off flow in any mussel infested pipes with the valves, which causes starvation of the mussels due to suffocation. When water flow is resumed, the dead mussels are easily washed out of the pipes. The alternate intake pipes can be made of inexpensive flexible material, such as rubber, since they are not exposed to the environment external to the main intake pipe. In addition, a non-stick coating, such as silicone, can be disposed on the interior walls of the alternate pipes to further prevent mussel build up. A number of techniques for installing the one or more alternate pipes within an existing pipe are also disclosed.
    • 公开了一种用于从设备,如发电厂和水处理厂的淡水进水管中消除斑马贻贝定植的方法和装置。 一个或多个小直径交替进气管设置在主进气管内,并且管道通过单独可控制的阀连接到用于向设施供水的泵。 斑马贻贝沿着任何管道的内壁积聚,可以通过关闭带有阀门的任何贻贝感染管道中的流动来消除,这导致窒息导致贻贝的饥饿。 当水流恢复时,死贻贝很容易从管道中冲出。 另外,由于吸入管不暴露于主进气管外部的环境,所以可以由诸如橡胶等廉价的柔性材料制成。 此外,诸如硅树脂的不粘涂层可以设置在替代管的内壁上,以进一步防止贻贝积聚。 还公开了用于在现有管道内安装一个或多个替代管道的许多技术。