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Modeling Irrigation Networks for the Quantification of Potential Energy Recovering: A Case Study

机译:灌溉网络建模以量化潜在的能量回收:一个案例研究

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Water irrigation systems are required to provide adequate pressure levels in any sort of network. Quite frequently, this requirement is achieved by using pressure reducing valves (PRVs). Nevertheless, the possibility of using hydraulic machines to recover energy instead of PRVs could reduce the energy footprint of the whole system. In this research, a new methodology is proposed to help water managers quantify the potential energy recovering of an irrigation water network with adequate conditions of topographies distribution. EPANET has been used to create a model based on probabilities of irrigation and flow distribution in real networks. Knowledge of the flows and pressures in the network is necessary to perform an analysis of economic viability. Using the proposed methodology, a case study has been analyzed in a typical Mediterranean region and the potential available energy has been estimated. The study quantifies the theoretical energy recoverable if hydraulic machines were installed in the network. Particularly, the maximum energy potentially recovered in the system has been estimated up to 188.23 MWh/year) with a potential saving of non-renewable energy resources (coal and gas) of CO 2 137.4 t/year.
机译:需要水灌溉系统在任何类型的网络中提供足够的压力水平。通常,通过使用减压阀(PRV)可以达到此要求。尽管如此,使用液压机代替PRV回收能量的可能性可以减少整个系统的能耗。在这项研究中,提出了一种新的方法来帮助水管理人员量化具有适当地形分布条件的灌溉水网络的潜在能量回收。 EPANET已用于基于实际网络中灌溉和流量分配的概率创建模型。了解网络中的流量和压力是进行经济可行性分析所必需的。使用提出的方法,在一个典型的地中海地区对案例研究进行了分析,并估计了潜在的可用能源。如果网络中安装了液压机,则该研究量化了理论上可回收的能量。特别是,系统中潜在的最大回收能源估计高达188.23 MWh /年,而潜在的CO 2 137.4 t的不可再生能源(煤炭和天然气)节省量。

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