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Optimal design of stepped spillways using the HBMO algorithm

机译:使用HBMO算法的阶梯式溢洪道的优化设计

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Studies on stepped spillways as flood energy dissipators have been conducted to understand the hydraulics on the stepped face of roller-compacted concrete dams as well as overlays of embankment dams. Significant energy losses occur along the stepped chute so that the energy dissipation structure becomes smaller and more economic. In addition, considering the design discharge, downstream face slope, height of spillway, different combinations of spillway width and number of spillway steps may lead to different head losses. In each feasible combination, the remaining head after the steps should be dissipated by downstream energy dissipators. Design and construction of spillways and energy disspators are very cost-consuming and build up a major part of the dam's construction expenses. Thus, the cost of a financially viable stepped spillway project that consists of the steps' cost and downstream dissipator's cost should be minimised. In this paper, the honey-bee mating optimisation (HBMO) algorithm is used to determine the best combination of design variables so as to minimise the total cost of both spillway chute and stilling basin. Results are compared with those previously obtained by genetic algorithm (GA) and show the promising potential of the HBMO algorithm in this field of application.
机译:已经对阶梯溢洪道作为洪水消能器进行了研究,以了解碾压混凝土大坝和堤坝覆盖层的阶梯面上的水力学。沿阶梯状滑槽会发生大量的能量损失,因此能量消散结构变得更小,更经济。此外,考虑到设计排放量,下游工作面坡度,溢洪道高度,溢洪道宽度和溢洪道步数的不同组合,可能导致不同的水头损失。在每种可行的组合中,步骤后的剩余压头应由下游的能量消散器消散。溢洪道和能量散布器的设计和建造非常耗费成本,并且构成了大坝建设费用的主要部分。因此,应将财务可行的阶梯式溢洪道项目的成本降至最低,该项目包括阶梯成本和下游耗能器成本。本文使用蜜蜂交配优化(HBMO)算法来确定设计变量的最佳组合,从而最大程度地减少溢洪道滑槽和消融池的总成本。将结果与先前通过遗传算法(GA)获得的结果进行比较,并显示HBMO算法在该应用领域中的潜力。

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