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An improved apparatus for automatically controlling the rate of discharge from a body of water impounded by a dam, weir or the like

机译:一种改进的设备,用于自动控制由水坝,堰等所蓄积的水体的排放速率

摘要

943,051. Sluice gates. L. A. TURNER. April 27, 1961 [April 29, 1960], No. 15250/61. Heading E1H. [Also in Division F2] The outflow of water from a weir is controlled by a gate 3, Fig. 1, actuated by the variable buoyancy of a hollow float 5 provided with an air vent 7, water inlet means 6 and conduit means which supply or withdraw water at rates dependent upon and controlled by the level in the weir. Water rises in the weir until it floods a vent 11 leading through a flexible conduit 12 to a main syphon 9 which is thus primed to cause the float 5 to drain through a flexible coupling 19 and an outlet pipe 20. The float thus gains buoyancy and rises until it engages an adjustable stop 8. When the water level falls sufficiently to uncover the vent 11 once more the action of the syphon 9 is broken so that the float re-floods through the inlet 6 and closes the gate 3. If the water level remains constant the syphoning action is broken by air entering the suction limb of the syphon. If the water level rises, however, a secondary syphon 10 becomes primed through a vent 13. The suction limb of the secondary syphon is lower than that of the main syphon so that the float remains buoyant in its raised position until the water level rises sufficiently to enter the air vent 7 and re-sink the float. The syphon may be fixed instead of moving with the gate and the two priming vents may be at the same level. In Figs. 3 and 4, a separate control chamber 25 with an inlet 6a is connected by a conduit 26 to the float 5 of a gate 3 in a channel 29, the main and secondary syphons 15a, 16a having primary vents 1 1a, 13a. Fig. 10, shows a further modification in which a control chamber 25a is connected to the float by a conduit 26a and has inlet and outlet valves 32, 35 controlled through levers 33, 36 and a link 38 by a screw-adjusted float 41. The syphons may also be replaced by the valve means of Fig. 11 in which an outlet pipe 44 and an inlet pipe 44a from the weir are controlled by valves 45 on a T-shaped lever 47 carrying a float 50 in the weir and a float 51 in the discharge channel. The latter float over-rides the action of the float 50 when the flow in the channel exceeds a predetermined value so that the inlet pipe 44a is opened and the flood flooded through a conduit 26a to cause the gate to close. In a still further arrangement, a control chamber is provided with a syphon having a priming vent in the weir and the lower end of its suction limb within the chamber controlled by a floatoperated valve. The flow through the syphon balances the flow from an inlet to the chamber until the level in the weir falls sufficiently to uncover the priming vent when the level in the control chamber rises to flood the float operating the gate. The float operated valve closes the suction limb of the syphon when the level in the control chamber falls after the gateoperated float has been drained. The invention may be applied to a vertically slidable gate by using a rack and pinion drive between the float pivot shaft and the gate.
机译:943,051。水闸门。 L. A.特纳。 1961年4月27日[1960年4月29日],编号15250/61。标题E1H。 [也在F2部分中]通过图1中的闸门3控制堰的水流出,闸门3由空心浮子5的可变浮力致动,空心浮子5具有通气孔7,进水装置6和用于提供水的导管装置。或以取决于堰中水位并受其控制的水率抽取水。水在堰中上升,直到淹没通过挠性导管12通向主虹吸管9的排气孔11,从而使浮子5通过挠性联轴器19和出口管20排出。浮子因此获得浮力并上升直到它与可调挡块8接合。当水位下降到足以再次露出通风孔11时,虹吸管9的作用被破坏,从而使浮子重新流过入口6并关闭闸门3。液位保持恒定,进入空气的虹吸管会破坏虹吸作用。然而,如果水位上升,则第二虹吸管10通过通气口13注满。第二虹吸管的吸力支腿低于主虹吸管的吸力,使得浮子在其升起位置保持浮力,直到水位充分升高为止。进入排气孔7并重新冲洗浮子。虹吸管可以是固定的,而不是随闸门一起移动,并且两个注气孔可以处于同一高度。在图。参照图3和图4,具有入口6a的单独的控制室25通过导管26连接至通道29中的闸门3的浮子5,主要和次要虹吸管15a,16a具有主要通风口11a,13a。图10示出了另一种变型,其中控制室25a通过导管26a连接到浮子,并具有通过杠杆33、36和通过螺钉调节的浮子41通过连杆38控制的入口阀32和出口阀35。虹吸管也可由图11的阀装置代替,其中堰的出口管44和入口管44a由T型杆47上的阀45控制,该杆上带有堰50和浮子。 51在排放通道中。当通道中的流量超过预定值时,后者的浮子将越过浮子50的作用,从而打开进口管44a,并通过导管26a注入洪水,使闸门关闭。在又一布置中,控制室设有虹吸管,该虹吸管具有在堰中的灌注孔,并且该虹吸管的吸入支管的下端在该室中由浮控阀控制。通过虹吸管的流量使从入口到腔室的流量平衡,直到当控制腔室内的液位升高以淹没操作闸门的浮子时,堰中的液位充分下降以露出引爆孔。当排出闸控浮球后,控制室中的水位下降时,浮控球阀关闭虹吸管的吸入分支。通过在浮子枢轴和闸门之间使用齿条和小齿轮驱动器,本发明可以应用于可垂直滑动的闸门。

著录项

  • 公开/公告号GB943051A

    专利类型

  • 公开/公告日1963-11-27

    原文格式PDF

  • 申请/专利权人 LAWRENCE ALEXANDER TURNER;

    申请/专利号GB19610015250

  • 发明设计人

    申请日1961-04-27

  • 分类号E02B7/20;

  • 国家 GB

  • 入库时间 2022-08-23 16:20:15

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