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Simulated Annealing in Optimization of Energy Production in a Water Supply Network

机译:给水管网能源生产优化中的模拟退火

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In water supply systems, the potential exists for micro-hydropower that uses the pressure excess in the networks to produce electricity. However, because urban drinking water networks are complex systems in which flows and pressure vary constantly, identification of the ideal locations for turbines is not straightforward, and assessment implies the need for simulation. In this paper, an optimization algorithm is proposed to provide a selection of optimal locations for the installation of a given number of turbines in a distribution network. A simulated annealing process was developed to optimize the location of the turbines by taking into account the hourly variation of flows throughout an average year and the consequent impact of this variation on the turbine efficiency. The optimization is achieved by considering the characteristic and efficiency curves of a turbine model for different impeller diameters as well as simulations of the annual energy production in a coupled hydraulic model. The developed algorithm was applied to the water supply system of the city Lausanne (Switzerland). This work focuses on the definition of the neighborhood of the simulated annealing process and the analysis of convergence towards the optimal solution for different restrictions and numbers of installed turbines.
机译:在供水系统中,存在微型水力发电的潜力,它利用网络中的过剩压力来发电。但是,由于城市饮用水网络是流量和压力不断变化的复杂系统,因此确定涡轮机的理想位置并不是一件容易的事,评估意味着需要进行仿真。在本文中,提出了一种优化算法,为在配电网中安装给定数量的涡轮机提供了最佳位置的选择。通过考虑整个平均年流量的每小时变化以及这种变化对涡轮效率的影响,开发了一种模拟退火工艺来优化涡轮的位置。通过考虑不同叶轮直径的涡轮机模型的特性曲线和效率曲线,以及在耦合液压模型中模拟年发电量来实现优化。所开发的算法被应用于瑞士洛桑市的供水系统。这项工作的重点是模拟退火过程的邻近区域的定义以及针对不同限制和安装的涡轮机数量向最佳解决方案收敛的分析。

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