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    • 1. 发明申请
    • Overflow chamber
    • 溢流室
    • US20050045541A1
    • 2005-03-03
    • US10492410
    • 2002-10-08
    • Christopher WilliamsPaul LecornuMark JamesRobert AndohMichael Faram
    • Christopher WilliamsPaul LecornuMark JamesRobert AndohMichael Faram
    • E03F5/10E03F5/12E03F5/14
    • E03F5/125E03F5/12
    • An overflow chamber (2) is provided for use in a combined sewer overflow. An inlet (12) and an outlet (14) open into the chamber (2) below a screen (20), and an overflow outlet (15) opens into the chamber above the screen. Baffles (26) are provided underneath the screen (20) across the general flow of storm water. In storm conditions, the storm water in the chamber (2) will reach the level of the screen (20), which traps aesthetically offensive material and gross solids, leaving the water to flow through the screen (20) to the overflow outlet (15). The baffles (26) circulate the storm water, and this dislodges material accumulated on the underside of the screen (20) and so helps to prevent blinding of the screen (20) in storm conditions.
    • 提供溢流室(2)以用于组合的下水道溢流。 在屏幕(20)下方的入口(12)和开口(2)中的出口(14),并且溢流出口(15)通向屏幕上方的室中。 挡板(26)设置在屏幕(20)的下方,穿过一般的暴雨水流。 在暴风雨条件下,室(2)中的暴雨水将达到屏幕(20)的水平,这会捕获美观的材料和总固体,使水流过屏幕(20)到溢流出口(15) )。 挡板(26)使暴雨水循环,并且这会阻止积聚在屏幕(20)的下侧的材料,因此有助于防止屏风(20)在暴风雨条件下的眩光。
    • 2. 发明申请
    • Hydrodynamic treatment device
    • 流体动力处理装置
    • US20070108122A1
    • 2007-05-17
    • US10562681
    • 2004-06-28
    • Robert AndohMichael Faram
    • Robert AndohMichael Faram
    • B01D21/26
    • B01D21/02B01D17/00B01D21/2411B01D21/2433B01D21/2444B01D21/245B01D21/26B01D21/267B01D2221/12
    • A hydrodynamic treatment device comprises a vessel (2) within which is disposed an inner partition (24). The inner partition (24) divides the interior of the vessel (2) into outer and inner regions (22, 28). Flow enters the vessel (2) through a tangentially oriented inlet (14) and establishes a complex circulating flow within the vessel (2). Settleable solids migrate to the bottom of the vessel (2) and are deposited in a sump (20) through a solids outlet opening (18). Flow enters the inner region (28) through apertures (34) in the inner partition (24), and is discharged through an outlet duct (8). The inner region (28) is closed at its lower end by a frusto-conical, downwardly diverging lower wall (30) which projects outwardly from a central cylindrical wall (26).
    • 流体动力学处理装置包括容器(2),其内设置有内隔板(24)。 内隔板(24)将容器(2)的内部分成外区和内区(22,28)。 流体通过切向取向的入口(14)进入容器(2),并在容器(2)内形成复杂的循环流。 可凝固的固体迁移到容器(2)的底部,并通过固体出口开口(18)沉积在贮槽(20)中。 流体通过内隔板(24)中的孔(34)进入内部区域(28),并通过出口导管(8)排出。 内部区域(28)在其下端由从中心圆柱形壁(26)向外突出的截头圆锥形,向下发散的下壁(30)封闭。