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迈向基于自然的解决方案在自然灾害中的应用。

Towards an operationalisation of nature-based solutions for natural hazards.

机构信息

Global Centre for Clean Air Research (GCARE), Department of Civil and Environmental Engineering, Faculty of Engineering and Physical Sciences, University of Surrey, Guildford GU2 7XH, United Kingdom; Department of Civil, Structural & Environmental Engineering, School of Engineering, Trinity College Dublin, Dublin, Ireland.

Global Centre for Clean Air Research (GCARE), Department of Civil and Environmental Engineering, Faculty of Engineering and Physical Sciences, University of Surrey, Guildford GU2 7XH, United Kingdom.

出版信息

Sci Total Environ. 2020 Aug 20;731:138855. doi: 10.1016/j.scitotenv.2020.138855. Epub 2020 Apr 29.

Abstract

Nature-based solutions (NBS) are being promoted as adaptive measures against predicted increasing hydrometeorological hazards (HMHs), such as heatwaves and floods which have already caused significant loss of life and economic damage across the globe. However, the underpinning factors such as policy framework, end-users' interests and participation for NBS design and operationalisation are yet to be established. We discuss the operationalisation and implementation processes of NBS by means of a novel concept of Open-Air Laboratories (OAL) for its wider acceptance. The design and implementation of environmentally, economically, technically and socio-culturally sustainable NBS require inter- and transdisciplinary approaches which could be achieved by fostering co-creation processes by engaging stakeholders across various sectors and levels, inspiring more effective use of skills, diverse knowledge, manpower and resources, and connecting and harmonising the adaptation aims. The OAL serves as a benchmark for NBS upscaling, replication and exploitation in policy-making process through monitoring by field measurement, evaluation by key performance indicators and building solid evidence on their short- and long-term multiple benefits in different climatic, environmental and socio-economic conditions, thereby alleviating the challenges of political resistance, financial barriers and lack of knowledge. We conclude that holistic management of HMHs by effective use of NBS can be achieved with standard compliant data for replicating and monitoring NBS in OALs, knowledge about policy silos and interaction between research communities and end-users. Further research is needed for multi-risk analysis of HMHs and inclusion of NBS into policy frameworks, adaptable at local, regional and national scales leading to modification in the prevalent guidelines related to HMHs. The findings of this work can be used for developing synergies between current policy frameworks, scientific research and practical implementation of NBS in Europe and beyond for its wider acceptance.

摘要

基于自然的解决方案(NBS)被作为应对预测的增加的水文气象灾害(HMH)的适应措施而被推广,例如热浪和洪水已经在全球范围内造成了重大的生命损失和经济损失。然而,NBS 的设计和运作所需要的政策框架、最终用户的利益和参与等基础因素尚未建立。我们通过露天实验室(OAL)这一全新概念讨论了 NBS 的运作和实施过程,以促进其更广泛的接受。环境、经济、技术和社会文化可持续的 NBS 的设计和实施需要跨学科和多学科的方法,这可以通过在各个部门和层次上培养利益相关者的共同创造过程来实现,激发更有效地利用技能、多样化的知识、人力和资源,并连接和协调适应目标。OAL 作为 NBS 在政策制定过程中扩大规模、复制和利用的基准,通过现场测量监测、关键绩效指标评估和建立关于其在不同气候、环境和社会经济条件下的短期和长期多重效益的可靠证据,从而缓解政治抵制、财务障碍和知识缺乏的挑战。我们的结论是,通过有效利用 NBS 对 HMH 进行全面管理,可以通过符合标准的数据来实现 NBS 在 OAL 中的复制和监测,以及了解政策孤岛和研究界与最终用户之间的相互作用。需要进一步研究 HMH 的多风险分析,并将 NBS 纳入政策框架,以适应地方、区域和国家各级,从而修改与 HMH 相关的现行准则。这项工作的结果可以用于在欧洲及其他地区发展当前政策框架、科学研究和 NBS 实际实施之间的协同作用,以促进其更广泛的接受。

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