OPTIMAL DESIGN OF A PUMPED IRRIGATION SYSTEM OPERATING IN SHIFTS

Mireya Lapo-Pauta, Javier Espinosa
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Abstract

The optimization of pumping systems is important because it improves energy efficiency, increases production, reduces operating and maintenance costs, and contributes to sustainability. To address this challenge, it is essential to effectively manage irrigation systems. In this research, an optimization algorithm was used to minimize the economic cost of irrigation system design. The implemented methodology includes the following steps: determining the fictitious continuous flow rate (qfc) and the number of shifts, functionally designing the irrigation network with pumping operations in shifts, and finally designing the network using Linear Programming (LP). Inputs to the model include network topology, set point pressures, design speed ranges, and pump characteristic curve. The model output provides the diameters of the irrigation system lines. In consequence, this methodology was applied in the irrigation system of the community of San Pedro de la Bendita in the province of Loja. The study demonstrates a significant cost reduction in the hydraulic design of the irrigation network when operating in shifts using LP compared to the cost of a conventional hydraulic design.
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轮班运行的抽水灌溉系统的优化设计
泵送系统的优化非常重要,因为它可以提高能源效率、增加产量、降低运行和维护成本,并有助于可持续发展。为应对这一挑战,必须有效管理灌溉系统。在这项研究中,使用了一种优化算法来最大限度地降低灌溉系统设计的经济成本。所采用的方法包括以下步骤:确定虚构的连续流量(qfc)和班次数,对灌溉网络进行功能设计,分班进行抽水作业,最后使用线性规划(LP)设计灌溉网络。模型的输入包括网络拓扑结构、设定点压力、设计速度范围和水泵特性曲线。模型输出提供灌溉系统管线的直径。因此,该方法被应用于洛哈省圣佩德罗-德拉本迪塔社区的灌溉系统。研究结果表明,与传统的水力设计成本相比,采用 LP 方法轮班运行时,灌溉网络的水力设计成本大大降低。
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