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Calibration of a Compound Weir for Discharge Measurement in Small Headwater Streams Subjected to Climate Change

机译:受气候变化影响的小型源头溪流中的流量测量用复合堰的校准

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The paper presents a procedure to calibrate a triangular-rectangular compound weir for measuring discharges in small unmonitered streams subjected to climate change conditions. The main purposes are to obtain the discharge coefficients and the rating curve for a compound weir model in the laboratory with the purpose to use them for the real-scale, prototype weir in the nature. The experiments and measurements for the compound sharp-crested weir were carried out on a glass-walled, recirculating, rectangular flume within the Hydraulics laboratory in the University Politehnica of Bucharest. Global discharge coefficient values were fitted with two different functions for the two stages of the weir. The head-discharge relationship was fitted with a 3rd degree polynomial function which gave the best mean square error. Computed sensitivity analysis proves the V-notch is more suited to measure low discharges, whereas the rectangular, upper stage is better for higher discharge values during intense rainfall events.
机译:本文提出了一种校准三角形-矩形复合堰的程序,该堰用于测量受气候变化条件影响的小型未经监测的河流中的排放量。主要目的是在实验室中获得复合堰模型的排放系数和额定曲线,以将其用于自然界中的真实比例原型堰。在布加勒斯特政治大学的水力学实验室内,在玻璃壁的再循环矩形水槽上进行了复合尖顶堰的实验和测量。对于堰的两个阶段,总排放系数值具有两个不同的函数。头部放电关系为3 rd 给出最佳均方误差的高次多项式函数。计算灵敏度分析证明,V型缺口更适合于测量低流量,而矩形的上级则更适合于在强降雨事件中获得更高的流量。

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