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Semi-circular flap gate as a flow metering structure in circular channels

机译:半圆形翻盖栅极作为圆形通道的流量计量结构

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This research proposes slit and solid semi-circular flap gates for discharge measurement along the circular channels under free flow condition. A top-hinged flap gate deflects by flowing water against its weight due to the flow hydrodynamic forces. The deflection angle of the semi-circular flap gate can be considered as either independent variable or dependent variable. Two models are proposed for the stage-discharge relation based on the Buckingham's theorem of dimensional analysis. The first model considers the deflection angle as an independent variable while the second model considers it as a dependent variable. A series of laboratory experiments (254 runs) were performed to investigate the flow process of slit and solid semi-circular flap gates located along of two horizontal, circular pipes. Using the data collected from two pipes of nominal diameters 20 and 30 cm, the proposed models were calibrated. The first model has an average error less than 2.5%, while the second general model has an average error about 2.55%, thus actual discharge through the circular channels can be accurately estimated using the proposed stage-discharge equations. The results showed that viscosity effects are significant in second model, while these effects are important in first model only for slit flap gates. The proposed inline flap gate offers a simple and reliable discharge measurement approach with acceptable accuracy.
机译:该研究提出了在自由流动条件下沿着圆形通道进行放电测量的狭缝和固体半圆形挡闸栅极。由于流动流体动力力,通过流动的水抵抗其重量而偏转顶部铰接的挡板栅极。半圆形襟翼门的偏转角可以被认为是独立变量或相关变量。基于白金汉尺寸分析定理,提出了两种模型。第一模型将偏转角作为独立变量认为,而第二种模型将其视为依赖变量。进行一系列实验室实验(254次运行)以研究沿着两个水平,圆形管道的狭缝和固体半圆形挡板的流程。使用从标称直径20和30cm的两个管道收集的数据,所提出的模型被校准。第一模型的平均误差小于2.5%,而第二一般模型的平均误差约为2.55%,从而可以使用所提出的阶段排出方程准确地估计通过圆形通道的实际放电。结果表明,粘度效应在第二种模型中是显着的,而这些效果在仅适用于狭缝瓣门的第一模型中是重要的。所提出的内联翼片栅极提供了一种简单可靠的放电测量方法,可接受的精度。

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