首页> 外文期刊>International Journal of Applied Engineering Research >Modelling Equation of Contraction Coefficient (Cc) and Discharge Coefficient (Cd) for Flow under Sluice Gate Using Cubic Baffle Block and Sill
【24h】

Modelling Equation of Contraction Coefficient (Cc) and Discharge Coefficient (Cd) for Flow under Sluice Gate Using Cubic Baffle Block and Sill

机译:采用立方挡板块和门槛模锻系数(CC)和放电系数(CD)对排出系数(CD)的建模方程

获取原文
获取原文并翻译 | 示例
           

摘要

One of devices in hydraulic structures that used for flow control was sluice gate. Flow under sluice gate in variation of open gate(a=1,2,3,4 cm) and variation of discharge (Q) rise the contraction coefficient (Cc) and discharge coefficient (Cd). Fiberglass prototype model as horizontal channel was used for this experimental research with dimension: length (L)=9 m, width (B)=50 cm and using sluice gate installed on it, height(h)=80 cm, thick (t)=1 cm, width (b)=50 cm. Two models of baffle block as cubic using end sill (code K1, 16 running, no sill, S_1=2 cm; code K2, 16 running, s_1=2 cm, S_2=2.7 cm)with different dimension (Bb_1=0.7 cm, Bb_2=1.4 cm) installed as three row, specified location 25 cm after sluice gate. During each running test with variation open gate and discharge, the velocity (v) and height of flow (h) were measured then Froude number, contraction coefficient (Cc) and discharge coefficient(Cd) were analyzed. The result showed that cubic baffle block model K2 (used sill 2 cm and 2.7 cm, Fr=0.09 - 0.88) gives the better performance modelling of Cc and Cd in term of the initial Froude number with R~2=0.9152 (Cc) and R~2=0.9053(Cd). It was concluded that using three rows configuration of cubic baffle block with K2 model (1.4 cm x 1.4 cm x 1.4 cm)gave better model than K1.
机译:用于流量控制的液压结构中的一个设备是闸门栅极。在开口栅极(A = 1,2,3,4cm)变化的闸门下的流动和放电的变化(Q)上升收缩系数(CC)和放电系数(CD)。作为水平通道的玻璃纤维原型模型用于该实验研究,具有尺寸:长度(L)= 9米,宽度(b)= 50cm,并使用安装在其上的闸门栅极,高度(h)= 80cm,厚(t) = 1厘米,宽度(b)= 50厘米。两种型号的挡板块作为立方体使用终端门槛(代码K1,16运行,没有窗台,S_1 = 2厘米;代码K2,16运行,S_1 = 2cm,S_2 = 2.7cm,S_2 = 2.7cm),具有不同的尺寸(BB_1 = 0.7厘米, BB_2 = 1.4 cm)安装为三行,闸门后25厘米的指定位置。在每个运行试验期间,分析了弗劳德数,收缩系数(CC)和放电系数(CD)测量速度(V)和流动(H)的速度(V)和流量(H)。结果表明,立方挡板模型K2(二手窗台2cm和2.7cm,fr = 0.09 - 0.88),术语术语和Cd的初始FRoude数量术语具有更好的性能建模,R〜2 = 0.9152(CC)和R〜2 = 0.9053(CD)。结论是,使用三行配置立方挡板块与K2模型(1.4cm x 1.4cm×1.4cm)提供比K1更好的模型。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号