High-resolution estimates of water availability for the Iberian Peninsula under climate scenarios

IF 5.7 3区 环境科学与生态学 Q1 WATER RESOURCES Applied Water Science Pub Date : 2024-07-04 DOI:10.1007/s13201-024-02165-8
Bolivar Paredes-Beltran, Alvaro Sordo-Ward, Francisco Martin-Carrasco, Luis Garrote
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Abstract

Water availability is of paramount importance for sustainable development and environmental planning, specifically in regions such as the Iberian Peninsula, renowned for diverse landscapes and varying climatic conditions. Due to climate change, understanding the potential impacts on water resources becomes essential for effective water management strategies. This research effort aims to assess future potential water availability for the Iberian Peninsula in different climate scenarios, employing cutting-edge water resource modelling techniques integrated within a geographic information system (GIS) framework. In this study, potential water availability is defined as the annual demand for water that can be satisfied at a specific point in the fluvial network with certain reliability. An ensemble of state-of-the-art climate models is utilised to project runoff for the Iberian Peninsula during the mid- and late-twenty-first century periods. These climate projections were subsequently processed using the GIS-based water resource management model, WAAPA, to derive potential water availability under a range of realistic hypotheses. The results indicate that anticipated shifts in precipitation patterns will lead to alterations in hydrological regimes across the region, significantly impacting future water availability. By using GIS-based methodologies, we can facilitate the identification of vulnerable areas susceptible to changes in water availability, offering spatially explicit information along the main rivers of the Iberian Peninsula for decision-makers and stakeholders. High-resolution spatial outputs from this research and detailed water availability estimates serve as valuable input for integrated water resource management and climate change adaptation planning. By combining advanced GIS-based hydrological modelling with climate scenarios, this research presents a robust framework for assessing water resources amidst a changing climate, applicable to other regions struggling with analogous challenges. Ultimately, our study provides vital insights for policymakers and stakeholders, empowering them to make informed decisions and devise adaptive measures to ensure sustainable use of water resources despite uncertain future climatic conditions.

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气候情景下伊比利亚半岛可用水量的高分辨率估算值
水资源供应对于可持续发展和环境规划至关重要,尤其是在伊比利亚半岛等以地貌多样、气候条件各异而闻名的地区。由于气候变化,了解对水资源的潜在影响对于制定有效的水资源管理战略至关重要。这项研究工作旨在评估伊比利亚半岛未来在不同气候情景下的潜在可用水量,在地理信息系统(GIS)框架内采用最先进的水资源建模技术。在这项研究中,潜在可用水量被定义为在一定的可靠性条件下,河道网络中某一特定点能够满足的年需水量。研究采用了一系列最先进的气候模型来预测伊比利亚半岛在 21 世纪中后期的径流量。随后,利用基于地理信息系统的水资源管理模型 WAAPA 对这些气候预测进行了处理,以得出在一系列现实假设条件下的潜在可用水量。结果表明,降水模式的预期变化将导致整个地区水文系统的改变,从而对未来的供水量产生重大影响。通过使用基于地理信息系统的方法,我们可以帮助识别易受可用水量变化影响的脆弱地区,为决策者和利益相关者提供伊比利亚半岛主要河流沿岸的明确空间信息。这项研究的高分辨率空间输出结果和详细的可用水量估算结果是水资源综合管理和气候变化适应规划的宝贵输入。通过将先进的基于地理信息系统的水文模型与气候情景相结合,这项研究提出了一个在不断变化的气候中评估水资源的强大框架,适用于其他面临类似挑战的地区。最终,我们的研究为政策制定者和利益相关者提供了重要的见解,使他们能够做出明智的决策并制定适应措施,以确保在未来气候条件不确定的情况下可持续地利用水资源。
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来源期刊
Applied Water Science
Applied Water Science WATER RESOURCES-
CiteScore
9.90
自引率
3.60%
发文量
268
审稿时长
13 weeks
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