Combined Management of Groundwater Resources and Water Supply Systems at Basin Scale Under Climate Change

被引:0
作者
Giada Felisa
Giulio Panini
Pietro Pedrazzoli
Vittorio Di Federico
机构
[1] IRETI S.p.A., Department of Civil, Chemical, Environmental and Materials Engineering (DICAM)
[2] University of Bologna,undefined
来源
Water Resources Management | 2022年 / 36卷
关键词
Groundwater modelling; Optimization; Long-term strategies; Climate change; Sustainability; Combined management;
D O I
暂无
中图分类号
学科分类号
摘要
Water stress conditions associated with population growth, climate change, and groundwater contamination, represent a significant challenge for all stakeholders in the water sector. Increasing the resilience of Water Supply Systems (WSSs) becomes of fundamental importance: along with an adequate level of service, sustainability targets must be ensured. A long-term management strategy is strictly connected to a holistic approach, based on analyses at different scales. To this end, both groundwater modeling tools and water management models, with different spatial and temporal scales, are routinely and independently employed. Here, we propose a coupled approach combining: i) groundwater models (MODFLOW) to investigate different stress scenarios, involving climate change and anthropic activities; ii) water management models (Aquator), to assess the water resources availability and the best long-term management strategy for large-scale WSS. The management models are implemented starting from input and output flows derived by groundwater models: this leads to establish a comprehensive framework usually not defined in management models and including a quantitative characterization of the aquifer. The proposed methodology, general and applicable to any study area, is here implemented to the WSS of Reggio Emilia Province, and its main groundwater resource, the Enza aquifer, considering three different stress scenarios for groundwater models (BAU, ST1, and ST2), and for management strategies (BAU, BAURV2, ST2). Among the key results, we observe that coupling the two model types: i) allows evaluating water resources availability in connection with management rules; ii) leads to examining more realistic operation choices; iii) permits planning of infrastructures at basin scale.
引用
收藏
页码:915 / 930
页数:15
相关论文
共 71 条
[1]  
Ali SR(2020)Modeling the impacts of climate change on groundwater resources: a review Int J Environ Climate Change 10 61-76
[2]  
Khan JN(2020)Groundwater system and climate change: Present status and future considerations J Hydrol 589 125163-544
[3]  
Pandey Y(2015)Sensitivity of regional water supply systems models to the level of skeletonization - a case study from Apulia, Italy Procedia Eng 119 535-418
[4]  
Dar MUD(2019)Sustainability analysis of alternative long-term management strategies for water supply systems: a case study in Reggio Emilia (Italy) Water 11 450-1230
[5]  
Shafi M(2017)The assessment of sustainability indexes and climate change impacts on integrated water resource management Water 9 213-3755
[6]  
Hassan I(2017)The challenges of water, waste and climate change in cities Environ Dev Sustain 19 385-151
[7]  
Amanambu AC(2007)Estimating resilience for water resources systems Water Resour Res 43 W07422-3877
[8]  
Obarein OA(2016)Metabolism-based modelling for performance assessment of a water supply system: A case study of Reggio Emilia, Italy Water Sci Technol Water Supply 16 1221-5324
[9]  
Mossa J(2012)Resilience assessment of water resources system Water Resour Manag 26 3743-851
[10]  
Li L(2015)Measuring the sustainability of urban water services Environ Sci Pol 54 142-5206