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Hydraulic Design of Micro-irrigation Subunit Based on Genetic Algorithm

机译:基于遗传算法的微灌亚单元水力设计

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With the difference between average discharge and design discharge of emitter to be the objective function , a based-genetic-algorithm model for micro-irrigation subunit hydraulic design is established, which takes the node pressure in the submain end as a decision variable and applies bisection algorithms and back step method to handle the hydraulic calculation of submain and laterals. Simulation results show that the model and algorithm possess excellent solving efficiency, accuracy, and good versatility and practical value. In the meanwhile, it can be also obtained that discharge and pressure distribution of submain and laterals some characteristic value and their orifice location such as average discharge, maximum discharge and minimum discharge of emitter, determine pressure variation, discharge variation, uniformity and other indicators. This model can be applied to hydraulic analysis and design of the micro-irrigation subunit with non-uniform slope, varied-diameter, varied-spacing and so on, and also used to check or evaluate the micro-irrigation subunit which has been designed or completed.
机译:以发射器平均流量与设计流量之差为目标函数,建立了基于微灌溉子单元水力设计的遗传算法模型,以子主端节点压力为决策变量,并采用二等分法。算法和后退方法来处理次要支管和支管的水力计算。仿真结果表明,该模型和算法具有良好的求解效率,准确性,通用性和实用价值。同时,还可以得到子主干和支管的排放和压力分布的一些特征值及其孔口位置,如平均排放量,发射器的最大排放量和最小排放量,确定压力变化,排放变化,均匀性等指标。该模型可用于坡度不均匀,直径不同,间距不同等微灌亚单元的水力分析和设计,也可用于对已设计或设计的微灌亚单元进行水力分析或评价。完全的。

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