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Improving existing practices of water delivery in a run-of-the-river based canal system for better water use efficiency.

机译:在基于河道的运河系统中改善现有的供水方式,以提高用水效率。

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A model was developed to modify the canal delivery schedule of a major irrigation project of eastern India for both monsoon and dry seasons that adopted the procedure of daily water balance/moisture balance simulation in the root zone depth. In addition to the prevailing continuous schedule, four alternative rotational schedules during the monsoon and five alternative rotational schedules during the dry season were considered for simulation. Daily water balance simulation was performed for 17 and 15 years for the monsoon season and the dry seasons, respectively. Simulation results for the monsoon revealed that a 15-day rotational schedule (15 days canal operation followed by 15 days canal closure) was the best alternative over the prevailing continuous schedule. To agree with the findings of the study model, field experiments were conducted during the monsoon season for three consecutive years. Highest rice grain yields of 4.92 t/ha (Swarna) and 4.46 t/ha (Surendra) were recorded in plots with 15-day rotational schedules. During the dry season, considering both paddy and other dry season crops grown together in the command, a 7-day canal operation followed by a 7-day canal closure rotational schedule was found to be the best alternative. Besides creating a favourable water regime and better crop evapo-transpiration (ET), this schedule saved about 10.3% of water over actual water supplies.Digital Object Identifier http://dx.doi.org/10.1002/ird.660
机译:开发了一个模型来修改印度东部大型灌溉工程在季风季节和干旱季节的运河交付时间表,该模型采用了根区深度的每日水平衡/水分平衡模拟程序。除了流行的连续时间表外,还考虑了季风期间的四个替代轮换时间表和旱季中的五个替代轮换时间表进行模拟。在季风季节和干旱季节分别进行了17年和15年的每日水平衡模拟。季风的模拟结果表明,在现行的连续调度方案中,轮流调度方案为15天(运河运行15天,然后封闭运河15天)是最佳选择。为了与研究模型的结果一致,在季风季节连续三年进行了野外试验。在轮作计划为期15天的地块中,最高稻米产量为4.92吨/公顷( Swarna )和4.46吨/公顷( Surendra )。在干旱季节,考虑到命令中同时种植的稻谷作物和其他干旱季节作物,发现7天的运河运营,然后进行7天的运河关闭轮作时间表是最好的选择。除了建立有利的用水制度和更好的作物蒸发蒸腾(ET),该计划还节省了实际供水量约10.3%的水。数字对象标识符http://dx.doi.org/10.1002/ird.660

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