Calle Eusebi, Martínez David, Buttiglieri Gianluigi, Corominas Lluís, Farreras Miquel, Saló-Grau Joan, Vilà Pere, Pueyo-Ros Josep, Comas Joaquim
Institute of Informatics and Applications, University of Girona, Girona, Spain.
Catalan Institute for Water Research (ICRA-CERCA), Emili Grahit 101, 17003 Girona, Spain.
NPJ Clean Water. 2023;6(1):23. doi: 10.1038/s41545-023-00222-4. Epub 2023 Mar 17.
Water scarcity and droughts are an increasing issue in many parts of the world. In the context of urban water systems, the transition to circularity may imply wastewater treatment and reuse. Planning and assessment of water reuse projects require decision-makers evaluating the cost and benefits of alternative scenarios. Manual or semi-automatic approaches are still common practice for planning both drinking and reclaimed water distribution networks. This work illustrates a decision support tool that, based on open data sources and graph theory coupled to greedy optimization algorithms, is able to automatically compute the optimal reclaimed water network for a given scenario. The tool provides not only the maximum amount of served reclaimed water per unit of invested cost, but also the length and diameters of the pipes required, the location and size of storage tanks, the population served, and the construction costs, i.e., everything under the same architecture. The usefulness of the tool is illustrated in two different but complementary cities in terms of size, density, and topography. The construction cost of the optimal water reclaimed network for a city of approximately 100,000 inhabitants is estimated to be in the range of €0.17-0.22/m (for a payback period of 30 years).
水资源短缺和干旱在世界许多地区正日益成为一个问题。在城市供水系统的背景下,向循环利用的转变可能意味着废水处理和回用。水回用项目的规划和评估要求决策者评估不同方案的成本和效益。对于饮用水和再生水分配网络的规划,手动或半自动方法仍然是常见做法。这项工作展示了一种决策支持工具,该工具基于开放数据源和图论,并结合贪婪优化算法,能够针对给定场景自动计算出最优的再生水网络。该工具不仅能提供每单位投资成本下服务的最大再生水量,还能提供所需管道的长度和直径、储水箱的位置和尺寸、服务的人口数量以及建设成本,即在相同架构下的所有信息。该工具的实用性在两个规模、密度和地形不同但互补的城市中得到了体现。对于一个约有10万居民的城市,最优再生水网络的建设成本估计在0.17 - 0.22欧元/米的范围内(投资回收期为30年)。