An Experimental Investigation into the Effect of Curve Radius on the Discharge Coefficient in Curved-Linear and Curved-Labyrinth Weirs with a Triangular Plan

R. Monjezi, M. Heidarnejad, A. Masjedi, M. Pourmohammadi, A. Kamanbedast
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Abstract

Nonlinear weirs are regarded as important hydraulic structures for water level adjustment and flow control in channels, rivers and dam reservoirs. One example of non-linear weirs is shaped as curved-zigzag. The crest axis of these weirs is non-linear. At a given width, the crest length is greater than that of the conventional linear weirs. Thus, they achieve a higher flow rate for an identical hydraulic load. This research experimentally focused on the discharge coefficient and flow rate of curved weirs with three different curve radii in two triangular linear and zigzag shapes. The discharge coefficients of these weirs were comparatively explored in terms of the hydraulic performance as a function of the total hydraulic load to weir crest height ratio (hd/P) and curvature angle ( θ ) (or curve radius). The results indicated that for the same hydraulic load, the increase of θ (the decrease in curve radius) led to a lower discharge coefficient; this was first because of the increased topical rise of water level, and then the more indirect path with a greater curvature through which the flow had to transport. Both factors could negatively affect the water discharge coefficient. In practice, the runoff coefficient at a weir with a curve radius of R/w=1.25 was approximately 8.5% greater than that of a weir with a curve radius of R/w=0.75 under a hydraulic load of 0.2.
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曲线半径对三角形平面曲线形和曲线形迷宫堰流量系数影响的实验研究
非线性堰是河道、河流和大坝水库中重要的水位调节和流量控制水工构筑物。非线性堰的一个例子是弯曲之字形。这些堰的波峰轴是非线性的。在给定的宽度下,波峰长度大于传统的线性堰。因此,它们在相同的液压负载下实现更高的流量。实验研究了三种不同曲线半径的曲线堰在三角形、直线和之字形两种形状下的流量系数和流量。比较探讨了各堰的流量系数随总水力荷载与堰顶高比(hd/P)和曲率角(θ)(或曲线半径)的变化规律。结果表明:在相同水力负荷下,θ的增大(曲线半径的减小)导致流量系数的减小;这首先是因为局部水位的上升,然后是更间接的路径和更大的曲率,水流必须通过。这两个因素都对水排放系数有负向影响。在实践中,当水力负荷为0.2时,曲线半径R/w=1.25的堰的径流系数比曲线半径R/w=0.75的堰的径流系数大约8.5%。
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