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Transitional Flow at Low-Head Ogee Spillway

机译:低水头Ogee溢洪道的过渡流

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Low-head gated spillways provide controlled flow releases for defense against floods and a reliable supply of water for beneficial uses. In addition, a system of spillways in a large water resources system may be used for flow monitoring to assess compliance with water quality regulations and evaluate performance measures of ecological restoration projects. The flow discharge through spillways is typically calculated by rating equations applicable to free (uncontrolled) or gate-controlled flows under submerged and unsubmerged conditions. Depending on the spillway geometry, headwater and tailwater levels, and gate opening, four types of flow, each requiring a unique rating equation, can occur. However, the flow type for the given conditions must be classified first to ensure that the appropriate rating equation is used to compute discharge. Spillway flow classification requires identifying the transition thresholds between the various flow types. Results from a study conducted at the Georgia Institute of Technology to identify these transitions experimentally in a hydraulic model study of a South Florida Water Management District spillway are presented here. Results are summarized in a unified set of graphical transition curves for the four flow types in terms of the depth at the spillway crest. The depth at the spillway crest is also used to develop a head-discharge relationship for uncontrolled, submerged flow, the flow type that is the most difficult to predict.
机译:低水位闸门溢洪道提供受控的流量释放,以抵御洪水,并为可靠的使用提供可靠的供水。此外,大型水资源系统中的溢洪道系统可用于流量监控,以评估对水质法规的遵守情况并评估生态修复项目的绩效指标。通过溢洪道的流量通常通过适用于在淹没和未淹没条件下自由(不受控制)或闸门控制的流量的额定方程计算。根据溢洪道的几何形状,上游水位和尾水位以及闸门的开度,会出现四种类型的流,每种流都需要一个唯一的额定方程。但是,必须首先对给定条件下的流量类型进行分类,以确保使用适当的额​​定方程式来计算流量。溢洪道流量分类需要识别各种流量类型之间的过渡阈值。本文介绍了佐治亚理工学院进行的一项研究结果,该结果是在南佛罗里达州水管理区溢洪道的水力模型研究中通过实验确定了这些过渡的。根据溢洪道顶部的深度,将结果汇总在四种流量类型的统一图形过渡曲线中。溢洪道顶部的深度还用于为不受控制的,淹没的流量(最难预测的流量类型)建立水头流量关系。

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