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Study and application on optimization scheme of water distribution in gravity irrigation district of large-scale plain

机译:大型平原重力灌区配水优化方案的研究与应用

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Large-scale irrigation district is the main force of Chinese grain production and becomes the major part of water consumers on agriculture water, which makes it very important for the irrigation management to pay attention to the study on the water distribution optimization of irrigation district. According to the characteristics of large-scale plain and gravity irrigation district, this paper takes the largest irrigated area as the objective function in some type of hydrological year and uses four kinds of irrigation system which include continued irrigation, continued irrigation of main canals with hierarchical controls, rotation irrigation in segments and rotation irrigation in individuals to make scheme optimizations for wate.distribution program. Besides that this paper takes water level calculations for the main canals by using the steady non uniform flow model and gate-hole water flow mathematical model. Also it adopts experimental optimization method to carry out the scheme comparison among the opening degree of several control sluices in order to choose the optimal opening degree program. Taking Hongjin irrigation district in Jiangsu Province for example, this paper makes the simulation of scheme optimization whose result shows that the gravity irrigated area with best irrigation scheme is about 25% larger than with the worst one.
机译:大型灌区是中国粮食生产的主力军,已成为农业用水中水消费的主要部分,这对灌溉管理者来说,重视灌区水分配优化研究显得尤为重要。根据大型平原和重力灌区的特点,以某类型水文年最大灌溉面积为目标函数,采用持续灌溉,分级干渠持续灌溉四种灌溉方式。控制,分段旋转灌溉和个人旋转灌溉,以对wate.distribution程序进行方案优化。除此之外,本文还使用稳态非均匀流模型和闸洞水流数学模型对干渠的水位进行了计算。还采用实验优化方法对几种控制水闸的开度进行方案比较,以选择最优的开度程序。以江苏省洪金灌区为例,进行方案优化模拟,结果表明,最佳灌溉方案的重力灌溉面积比最差灌溉方案的重力灌溉面积大25%左右。

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