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Water distribution uniformity and scheduling in micro-irrigation systems for water saving and environmental protection

机译:微灌系统节水环保的配水均匀度和调度

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摘要

Micro-irrigation can apply water with high uniformity. However, uniformity alone is not sufficient to achieve the goal of irrigation. Irrigation scheduling is equally important in micro-irrigation systems. The significance of various irrigation schedules and emitter flow uniformities were examined in a system design. Several irrigation schedules were compared with an optimal irrigation schedule. The optimal irrigation schedule can achieve optimal return and also provide water saving compared with the conventional irrigation schedule in which the whole field is fully irrigated at the same time. Deep seepage can be eliminated or minimised by scheduling deficit irrigation. An environmental protection irrigation schedule, where the whole field is in deficit, can save more water but will cause some reduction in total return compared to the optimal irrigation schedule. A simple irrigation schedule, in which the total amount of water applied is the same as the amount required, cannot only produce nearly optimal yield but also achieve increased water saving when high uniformity is also applied in the design. It is important to specify that the differences in total return and water saving between different schedules are reduced when high uniformity is applied in the design. For high uniformity the effects of crop sensitivity to deficit irrigation are not important and result in only limited (or acceptable) yield reduction and over-irrigation. Since a high proportion of water resources are used for agricultural production, micro-irrigation systems designed with high uniformity can be scheduled to achieve water conservation as well as environmental protection.
机译:微灌溉可以使水均匀度高。然而,仅均匀性不足以实现灌溉目的。在微灌溉系统中,灌溉计划同样重要。在系统设计中检查了各种灌溉计划的重要性和排放流量均匀性。将几种灌溉计划与最佳灌溉计划进行了比较。与常规灌溉计划相比,最佳灌溉计划既可实现最佳回报,又可节水,在传统灌溉计划中,同时灌溉整个田地。通过安排亏缺灌溉,可以消除或减少深层渗漏。整个农田都处于短缺状态的环境保护灌溉计划可以节省更多的水,但是与最佳灌溉计划相比,总收益会有所减少。一个简单的灌溉计划,其中所用水的总量与所需的水量相同,不仅可以产生几乎最佳的产量,而且还可以在设计中采用高均匀度的同时实现节水。重要的是要指出,当在设计中采用高均匀度时,要减少不同进度计划之间的总收益和节水之间的差异。对于高均匀度而言,作物对亏缺灌溉的敏感性影响并不重要,只会导致有限的(或可接受的)减产和过度灌溉。由于大量的水资源用于农业生产,因此可以安排设计具有高度均匀性的微灌溉系统,以实现节水和环境保护。

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