自然鱼道的水力学

X. Mao, Shengyu Huang, Yuchen Xu, Zhong Cheng, Jiehao Zhang
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摘要

通常采用类似自然的鱼道布置,因为这些结构模仿了自然河流的特征,并有效地允许鱼类迁移通过被水工结构阻塞的河段。本文通过对物理模型的分析,比较了两种不同鱼道结构(I型和II型)的速度分布。结果表明:ⅰ型构造的最大主流速度比ⅱ型构造低5.3%;而ⅰ型构造的平均主流速度比ⅱ型构造大21.1%。II型结构的主流路径的总周期长度是I型结构的2.1倍,说明主流路径的长度与主流的平均速度有一定的正比关系。当流量一定时,与鱼道内部结构变化相关的主流流速的增加使主流平均流速降低,而流道总长度的减小则导致主流平均流速的增加。由于沿鱼道的摩擦水头损失和局部水头损失,以及这些因素之间的重叠,尽管有周期性波动,但总流量在每个循环中逐渐减小。
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THE HYDRAULICS OF NATURE-LIKE FISHWAYS
Nature-like fishway arrangements are commonly used because these structures imitate the characteristics of natural rivers and effectively allow fish to migrate past river sections blocked by hydraulic structures. In this paper, physical models were analyzed, and the velocity distributions of two different fishway structures (Types I and II) were compared. Results showed that the maximum mainstream velocity of the Type I structure was 5.3% lower than that of the Type II structure. However, the average mainstream velocity of the Type I structure was 21.1% greater than that of the Type II structure. The total per-cycle length of the mainstream path in the Type II structure was 2.1 times greater than that of the Type I structure, which indicated that the length of the mainstream path was somewhat proportional to the average velocity of the mainstream. When the flow rate was kept constant, increases in the velocity of the main flow associated with changes in the internal structure of the fishway decreased the average velocity of the main flow, while decreases in the total length of the flow path led to increases in the average velocity of the main flow. Due to frictional head loss along the fishway and local head loss, as well as the overlaps between these factors, the overall flow rate gradually decreased every cycle, despite periodic fluctuations.
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