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HEAD Loss CHARACTERISTICS OF FLAP GATES AT THE ENDS OF DRAIN PIPES

机译:排水管末端瓣门的水头损失特性

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摘要

Flap gates are commonly used at the end of pipe drains and pump outlets to prevent backflows of water and entry of small animals. Flap gates are relatively inexpensive, with low maintenance costs, but can trap debris in their hinge systems. Many texts refer to studies performed on flap gates at the University of Iowa in 1936, which may be limited in value because they are for specific "lightweight" gates. More recent studies in England have attempted to generalize the characteristics for pin-hinged flap gates and place the Iowa studies into a broader perspective. The flap-gate backpressure effect on a gate with free outfall appears to be small. However, under certain submerged conditions, a flap gate will increase the upstream backwater levels. This may be critical in sewerage situations and some surface land drainage cases. Recently, at least one manufacturer sells a rubber-coated steel gate cover with a flexure hinge made of the same rubber material While it reduces the opportunity for trash to catch, such as may happen on a pinned-hinge type of pivot, this rubber hinge arrangement essentially becomes a spring-loaded gate with the force of closure due to both the weight of the gate and the elastic properties of the hinge. Users have questioned whether this arrangement introduces significant backpressure. We therefore tested a rubber-hinged flap gate to verify whether these gates fit into the general pattern of the limited previous studies on pin-hinged gates, which is to exhibit a continuous decrease in backpressure with increasing flow rate, and hence gate opening. The design information for pin-hinged flap gates is also updated to make it more readily available for design uses. The rubber hinge resulted in a slight deviation towards more head loss, approximately 3 mm (0.1 in.) at larger gate openings compared to about 1 mm (0.025 in.) for pin-hinged gates, which is attributed to the flexure strength of the rubber hinge. Thus, for free-flow outlet applications, flap gates of either the pinned-hinge or the flexure style add small head losses that amount to about 1% to 2% of the pipe diameter. These studies and the review of previous work allow users to evaluate whether flap gates of either the pinned hinge design or the rubberized flexure design can cause detrimental backpressure on a drainage system under free outfall situations.
机译:闸门通常用于管道排水口和泵出口的末端,以防止水倒流和小型动物进入。翻板门价格相对便宜,维护成本低,但会在其铰链系统中捕获碎屑。许多文献提到1936年在爱荷华大学对襟翼闸门进行的研究,由于其针对特定的“轻型”闸门,其价值可能受到限制。在英格兰,最近的研究试图概括出销式平开门的特性,并将爱荷华州的研究置于更广阔的视野。带有自由排污口的闸板的闸板闸板反压作用似乎很小。但是,在某些淹没条件下,挡板闸门会增加上游回水位。这对于下水道情况和一些地面排水情况可能至关重要。最近,至少有一家制造商出售了一种橡胶涂层的钢制门盖,该门盖具有由相同的橡胶材料制成的挠性铰链,虽然它减少了垃圾收集的机会,例如在销钉铰链型枢轴上可能发生的情况,但这种橡胶铰链由于闸门的重量和铰链的弹性特性,该布置基本上成为具有闭合力的弹簧闸门。用户质疑这种布置是否会带来明显的背压。因此,我们测试了橡胶铰链式闸板闸板,以验证这些闸板是否符合先前针对销铰链式闸板的有限研究的一般模式,即随着流量的增加,背压会不断降低,从而闸板打开。销铰链翻板闸门的设计信息也已更新,以使其更易于用于设计。橡胶铰链导致更多的压头损失略有偏差,在较大的浇口开口处约为3毫米(0.1英寸),而在销铰链浇口中约为1毫米(0.025英寸),这归因于门铰链的抗弯强度橡胶铰链。因此,对于自由流动的出口应用,固定铰链式或挠曲式的活门都会增加很小的水头损失,大约占管道直径的1%至2%。这些研究和对先前工作的回顾使用户能够评估固定铰链设计或橡胶挠性设计的活门在自由排水情况下是否会对排水系统造成有害的背压。

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