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Hydraulic scale modelling of the rating curve for a gauging station with challenging geometry

机译:几何形状具有挑战性的计量站的额定曲线的水尺模型

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Direct discharge measurements during flood events can be challenging from a technical as well as from a safety point of view. Therefore, flood discharges are often estimated by extrapolating a rating curve. Extrapolations far outside the range of the directly measured discharges are common, although the associated errors can be large. In this article, a novel method to determine suitable stage measurement locations and derive rating curves using a hydraulic scale model is presented. A hydraulic scale model for a natural gauging station site is produced with a computer numerical control technique, making a detailed representation of the prototype topography and bathymetry. The site is characterized by a complex geometry, and the results of the scale model study reveal that the current location of stage measurement is not suitable for determining the rating curve for high flows. The scale model is used to identify potential locations for future stage measurements, and a flood rating curve is constructed based on field measurements for low flows and scale model data for high flows. The study shows how hydraulic scale modelling can be used to provide more reliable rating curves for large discharges and evaluate new or existing gauging stations located at sites with challenging measurement conditions.
机译:从技术和安全的角度来看,洪水事件期间的直接排放测量都可能具有挑战性。因此,通常通过外推额定曲线来估算洪水流量。尽管相关的误差可能很大,但外推通常超出直接测量的放电范围。在本文中,提出了一种新颖的方法来确定合适的平台测量位置​​并使用水力尺模型导出额定曲线。利用计算机数控技术为天然测量站现场建立了水力尺模型,对原型地形和测深进行了详细的表示。该地点具有复杂的几何特征,比例模型研究的结果表明,阶段测量的当前位置不适合确定高流量的额定曲线。比例模型用于识别将来阶段测量的潜在位置,并基于针对低流量的现场测量和针对高流量的比例模型数据构建洪水等级曲线。这项研究表明,水力尺模型可用于为大流量提供更可靠的额定曲线,并评估位于测量条件恶劣的地点的新的或现有的计量站。

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