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首页> 外文期刊>Water and Energy International >Contraction Coefficient (Cc) Characteristic for Flow Under Sluice Gate using Trapezoid BaffleBlock and Sill
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Contraction Coefficient (Cc) Characteristic for Flow Under Sluice Gate using Trapezoid BaffleBlock and Sill

机译:使用梯形挡泥板和窗台在闸门闸门下流动的收缩系数(CC)特征

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摘要

Laboratory experiment was development to know contraction coefficient (Cc) characteristic for the flow under sluice gate while it operated with variation discharge and open gate using trapezoid baffle block with sill. Prototype model as horizontal channel used sluice gate installed on it made from fiberglass. Dimension of horizontal fiberglass channel: length (L) = 9 m, width (B) = 50 cm; sluice gate dimension, height (h) = 80 cm, thick (t) = 1 cm, width (b) = 50 cm. Variation of discharge (Q) and open gate (a = 1,2,3,4 cm) make the flow rise the contraction coefficient (Cc). Models of baffle block as trapezoid (Bb = 2.8 cm) installed as three row, specified location 25 cm after sluice gate using end sill (code T4-A, 10 running; code T4-B, 10 running; T4-C, 10 running; T4-D, 10 running). The height of flow (h) and velocity (v) were measured during each running test then Froude number and contraction coefficient (Cc) were analyzed. The result showed that trapezoid baffle block model T4-A (28 cm x 28cm x 28 cm) (Fr = 0.12 - 0.50) gives the better performance modelling of Cc in term of the initial Froude number with R2 = 0.9186, Ls Ls2 ~ 32 mm, L2 = 100 cm. It was concluded that using three rows configuration of trapezoid baffle block with T4-A model gave better model than T4-B, T4-C, T4-D.
机译:通过室内试验,研究了闸门变流量运行时,闸门下水流的收缩系数(Cc)特性,闸门采用带底坎的梯形挡块。作为水平渠道的原型模型使用玻璃纤维制成的安装在其上的水闸。水平玻璃纤维通道尺寸:长(L)=9米,宽(B)=50厘米;水闸尺寸,高度(h)=80厘米,厚度(t)=1厘米,宽度(b)=50厘米。流量(Q)和闸门开启(a=1,2,3,4cm)的变化使流量增加,收缩系数(Cc)增大。梯形挡板(Bb=2.8 cm)的型号,安装为三排,指定位置为闸门后25 cm,使用端槛(代码T4-A,10运行;代码T4-B,10运行;T4-C,10运行;T4-D,10运行)。在每次运行试验中测量流量高度(h)和速度(v),然后分析弗劳德数和收缩系数(Cc)。结果表明,T4-A型梯形挡板(28cm x 28cm x 28cm)(Fr=0.12-0.50)在初始弗劳德数R2=0.9186、Ls Ls2~32mm、L2=100cm时,具有更好的Cc性能建模。结果表明,采用三排梯形挡块配置的T4-A模型比T4-B、T4-C、T4-D模型具有更好的模型。

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