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首页> 外文期刊>Hydrological Processes >How Nature Uses Overland Flow Regime To Maximize Equilibrium Detention Storage And Flood Attenuation
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How Nature Uses Overland Flow Regime To Maximize Equilibrium Detention Storage And Flood Attenuation

机译:大自然如何利用陆上流域制度来最大化平衡蓄水库和防洪减灾

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摘要

Equilibrium detention storage is an important parameter as it has a proportional effect on flood attenuation. In this paper, based on the kinematic wave theory, a working formula for the equilibrium detention storage of an overland plane with upstream inflow has been derived. Since the flow regime over a concrete plane can vary throughout the entire range laminar to turbulent, this case has been selected to examine the effect of flow regime on the equilibrium detention storage. In the examination, the derived formula has been applied to four flow regimes: (a) laminar, (b) transitional, (c) near turbulent, and (d) turbulent. The examination shows that for planes with a small discharge, laminar flow gives the maximum detention storage. For planes with a medium discharge, transitional flow gives the maximum detention storage, and for planes with a large discharge, near turbulent flow gives the maximum detention storage. The flow regime can cause more than two-fold increase in detention storage. All these results can be attributed to the respective flow resistance, and have been endorsed with analyses of the water surface profile and the rising limb of the hydrograph. Finally, relating the results to real-life situations, it shows that the flow regime that gives the maximum detention storage is also the dominating flow regime in nature. Hence, extraordinarily, the flow regimes that exist in nature in fact provide maximum flood attenuation.
机译:平衡滞留存储是一个重要的参数,因为它对洪水衰减具有成比例的影响。本文基于运动波理论,推导了具有上游入流的陆面平衡滞留存储的工作公式。由于在混凝土平面上的流动状态可以在整个范围内变化,从层流到湍流,因此选择这种情况是为了检查流动状态对平衡滞留存储的影响。在检查中,导出的公式已应用于四个流态:(a)层流,(b)过渡,(c)近湍流和(d)湍流。检查表明,对于排放量较小的飞机,层流可提供最大的滞留量。对于排放量中等的飞机,过渡流可提供最大的滞留存储,而对于排放量较大的飞机,近湍流可提供最大的滞留存储。流动状态可能导致拘留存储增加两倍以上。所有这些结果都可以归因于各自的流阻,并且已经得到对水面轮廓和水文图上升肢的分析的认可。最后,将结果与现实生活中的情况联系起来,它表明提供最大滞留量的流态在本质上也是主要的流态。因此,特别是自然界中存在的流动状态实际上提供了最大的洪水衰减。

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