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首页> 外文期刊>Bollettino di Geofisica Teorica ed Applicata >Innovative technologies for the sustainable management of water resources: The WARBO (WAter Re-BOrn) project
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Innovative technologies for the sustainable management of water resources: The WARBO (WAter Re-BOrn) project

机译:水资源可持续管理的创新技术:WARBO(重水)项目

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The WARBO project will facilitate the regulation of water artificial recharge (AR) and determine how to respond to the need to safeguard, protect and enhance water and land ecosystems. The project will focus on sites with AR problems hosting ecosystems of community interest where urgent measures are needed to fight against water scarcity and to develop protocols able to specify how to manage recharge activities. The protocols concerning direct (hydrogeological, geochemical and isotopic) and indirect (geophysical and remote sensing) surveys will be finalized and applied to two main macro-areas. The first is the Friuli plain (NE Italy), with the aim of identifying the short- and long-term effects of the recharge of highly permeable aquifers in order to mitigate the lowering of piezometric levels and the degradation of the forested areas impacted by a gradual shift of the springs towards lower altitudes and to estimate the water savings that could be achieved through the reclamation and use of grey water in the ZIPR test site (San Vito al Tagliamento, Pordenone). The second is the southern Po Plain in the Copparo area (Ferrara, northern Italy) in order to assess the effectiveness and the issues connected with recharge activities in salinised aquifer inland characterized by medium-low permeability and to estimate the effectiveness of phytopurification systems and the improvement of biodiversity. The aims of the WARBO project are: the integration and updating of the CAMI-LIFE database to improve existing knowledge and to better evaluate the hydrogeological and geochemical evolution of aquifers; the updating of the conceptual model and identification of test areas; the application of innovative hydrological 3D models implementing state-ofthe- art numerical procedures to solve partial differential equations (as finite elements, mixed finite elements, finite volumes).
机译:WARBO项目将促进水人工补给(AR)的监管,并确定如何响应维护,保护和改善水和土地生态系统的需求。该项目将重点关注那些存在AR问题的地点,该地点承载着社区关注的生态系统,需要采取紧急措施来应对水资源短缺并制定能够指定如何管理补给活动的协议。有关直接(水文地质,地球化学和同位素)和间接(地球物理和遥感)勘测的协议将最终确定并应用于两个主要的宏观区域。第一个是弗留利平原(意大利东北部),目的是确定高渗透性含水层的补给的短期和长期影响,以便减轻测压水准的降低以及受植被影响的林区的退化。逐渐将弹簧移向更低的高度,并估算通过ZIPR测试地点(圣维托·塔格利亚门托,波代诺内)中的灰水开垦和使用可以实现的节水效果。第二个是科帕罗地区(意大利北部费拉拉)的南部波平原(Po Plain),目的是评估以中低渗透性为特征的盐化含水层内陆的有效性和补给活动相关问题,并评估植物纯化系统和改善生物多样性。 WARBO项目的目标是:整合和更新CAMI-LIFE数据库,以改善现有知识并更好地评估含水层的水文地质和地球化学演化;更新概念模型并确定测试区域;运用创新的水文3D模型,应用最先进的数值程序来求解偏微分方程(例如有限元,混合有限元,有限体积)。

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