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Optimization design of irrigation water management to reduce field failure risk

机译:灌溉水管理优化设计,降低现场故障风险

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The existing condition of the irrigation area after construction or the irrigation area in operation needs to be evaluated because in the planning of water availability and irrigation water needs many parameters-parameters which is the result of the analysis approach or indeed the data - the data that then changed. The changing conditions of the data will cause many impacts. The risk of field failure is one of impact if water availability is less than the initial estimate. This paper reports the analysis of the availability of water and irrigation water requirements is dynamic, in this study the availability of water is analyzed with 80% reliability. Irrigation water demand is based on regulation of planting schedule and reduction of field area with the intention of reducing the risk of greater field failure. The results obtained are alternative field area of optimum irrigation, regulation of planting schedule and operation of floodgates in the taking or building structure for the review. Field area and Regulation of planting schedule are analyzed by simulation. The mathematical model that will be produced is the optimum model of irrigation water management and mathematical model of field failure risk. This study can be an evaluation model especially for irrigated areas in dry field areas.
机译:施工后的灌溉面积的现有条件或需要进行灌溉区域,因为在水可用性和灌溉水的规划中需要许多参数参数,这是分析方法的结果或确实数据 - 数据 - 数据然后改变了。数据的变化条件将导致许多影响。如果水可用性小于初始估计,则现场失败的风险是影响之一。本文报道了对水和灌溉水需求的可用性的分析是动态的,在这项研究中,水的可用性以80%的可靠性分析。灌溉用水需求基于调节种植时间表和田间区域的减少,旨在降低更大的田间失效的风险。获得的结果是最佳灌溉的替代场区域,调节种植时间表和闸门在采取或建筑结构中进行审查。通过模拟分析场区域和种植时间表的调节。将产生的数学模型是灌溉水管理的最佳模型和现场故障风险的数学模型。本研究可以是评估模型,特别是对于干燥场区域的灌溉区域。

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