首页> 外文期刊>International journal of applied mechanics >Implementation of Nature-Based Solutions for Hydro-Meteorological Risk Reduction in Small Mediterranean Catchments: The Case of Portofino Natural Regional Park, Italy
【24h】

Implementation of Nature-Based Solutions for Hydro-Meteorological Risk Reduction in Small Mediterranean Catchments: The Case of Portofino Natural Regional Park, Italy

机译:小地中海集水区水力气象风险降低的基于自然解决方案的实施:意大利Portofino自然区域公园的情况

获取原文
获取原文并翻译 | 示例
           

摘要

Nature-based solutions (NBS) are usually defined as complementary or alternative solutions to "grey infrastructures" (traditionally made with cement) aimed at conserving and regenerating the functionality of natural and semi-natural ecosystems. The research to date shows a considerable potential of NBS to address the current challenges related to climate change and geo-hydrological risks. Despite significant interest in NBS by researchers and practitioners, knowledge concerning their practical implementation, monitoring, and evaluation is still lacking. This is particularly true for large-scale NBS. The present paper discusses how such solutions can be implemented in the context of hydro-meteorological risk reduction in small Mediterranean catchments with a strong tourist vocation. The work presented here is situated within the RECONECT Project (Regenerating ECOsystems with Nature-based solutions for hydro-meteorological risk rEduCTion), which aims to contribute to a European reference framework on NBS by demonstrating, upscaling, and replicating large-scale NBS in rural and natural areas. The Italian case study of RECONECT is the Portofino Natural Regional Park, which represents a unique natural landscape element with high ecologic, social, and economic (touristic) value, which is threatened by a range of geo-hydrological hazards, such as flash floods, hyper-concentrated floods, shallow landslides, rockfalls, and storm surges. This paper also presents details of NBS interventions in two pilot catchments (San Fruttuoso and Paraggi) visited by thousands of tourists throughout the year. It addresses some of the key aspects related to monitoring meteorological and hydrological processes, as well as remote sensing activities (i.e., LiDAR surveys), which are necessary for the identification of critical-instability areas along waterways and the reconstruction of dry stone walls. Lastly, a discussion of relevant mitigation and adaptation strategies that are potentially replicable at national and international levels is also provided.
机译:基于自然的解决方案(NBs)通常被定义为“灰色基础设施”(传统上用水泥制成)的互补或替代解决方案,旨在节约和再生天然和半天然生态系统的功能。迄今为止的研究表明,NB的相当大潜力,以解决与气候变化和地质水文风险有关的当前挑战。尽管研究人员和从业者对NBS有兴趣,但仍然缺乏关于其实际实施,监测和评估的知识。对于大型NB来说,这尤其如此。本文讨论了如何在具有强大旅游职业的小地中海集水区的水力 - 气象风险减少方面实施这些解决方案。这里提出的工作位于重新分析项目(再生基于自然基于水力气象风险的解决方案的生态系统),旨在通过在农村展示,升级和复制大规模的NBS来促进NBS的欧洲参考框架和自然区域。重新分析的意大利案例研究是波特多菲诺自然区域公园,它代表了具有高生态,社会和经济(旅游)价值的独特的自然景观元素,这受到一系列地质水文危害,如闪蒸洪水,超集中的洪水,浅层滑坡,岩石和风暴潮。本文还列出了在全年成千上万的游客访问过的两次飞行员(San Fruttuoso和Paraggi)中的NBS干预措施。它解决了与监测气象和水文过程有关的一些关键方面,以及遥感活动(即激光雷达调查),这对于沿着水道和干石壁的重建来确定临界不稳定区域是必要的。最后,还提供了对国家和国际一级可能可复制的相关缓解和适应策略的讨论。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号