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首页> 外文期刊>Journal of irrigation and drainage engineering >Discharge Characteristics of Weir-Orifice and Weir-Gate Structures
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Discharge Characteristics of Weir-Orifice and Weir-Gate Structures

机译:堰口和堰门结构的放电特性

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摘要

The discharge characteristics of flow over and under different weir-gate structures were investigated using dimensional analysis and multivariable regression techniques. Based on the shape and geometry of weir-gates, seven weir-gate structures were classified. The interaction factor, defined as the ratio of the measured discharge over and under the weir-gate structure to the sum of the predicted weir and gate discharges from the literature, was calculated for all types of weir-gate models. Six weir-gate models were experimentally tested to study the discharge characteristics of flow over weirs of finite crest length and under gate. The interaction factors were correlated with the geometry parameters for all weir-gate models with an average coefficient of determination of 0.85. A series of regime plots was developed to assist designing the weir-gate structures as flow distributors for a sharp-crested weir-gate and a weir of finite crest length with an offset. The regime plots show the contribution of weir and gate discharges for different weir-gate geometries. A critical normalized head was introduced as the flow through the weir-gate structure is equally divided by the weir and gate. Based on the weir-gate geometry and discharge, general empirical equations were developed to estimate the critical normalized head for practical engineering applications.
机译:使用尺寸分析和多元回归技术研究了不同堰门结构上方和下方的水流排放特性。根据堰门的形状和几何形状,对七个堰门结构进行了分类。对于所有类型的堰门模型,都计算了相互作用因子,该因子定义为堰门结构上方和下方测得的流量与文献中预测的堰和栅流量之和的比值。对六个堰门模型进行了实验测试,以研究有限顶部长度的堰上和闸门下的溢流特性。相互作用因子与所有堰门模型的几何参数相关,平均确定系数为0.85。开发了一系列状态图,以帮助将堰门结构设计为流量分配器,用于尖顶堰门和具有一定偏移量的顶峰长度的堰。态势图显示了堰和栅放电对不同堰门几何形状的贡献。由于通过堰门结构的流量被堰和闸门均分,因此引入了临界归一化水头。根据堰门的几何形状和流量,开发了通用经验方程式,以估算实际工程应用中的临界归一化水头。

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