Newton Fund: Applying nature-based coastal defence to the world's largest urban area - from science to practice
Newton Fund: Applying nature-based coastal defence to the world's largest urban area - from science to practice
批准号:
EP/R024537/2
负责人:
Judith Wolf
金额:
$11.28万
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2019
资助国家:
英国
项目状态:
已结题
起止时间:
2019 至 --
中文摘要
项目摘要:以自然为基础的沿海防御解决方案日益被认为是应对气候变化的传统硬工程方法的更可持续的替代办法。这些措施包括使用湿地、红树林、珊瑚礁和牡蛎礁作为缓冲区,可以减弱海浪,在海平面适度上升的情况下,这些区域的沉积物捕获量可以与海平面保持同步。湿地和红树林是耐盐物种较多的地区,可以保护背后的淡水物种。基于自然的防御已经部署在美国、荷兰和英国,也部署在中国的部分地区,取得了不同程度的成功。在正在经历快速城市化的三角洲地区,应用基于自然的解决方案可能会导致与其他土地用途(如填海造地)争夺空间。为了优化管理,必须解决基于自然的解决方案需要多少空间的问题。然而,我们目前对不同生态系统依赖于大小的防御价值和弹性的知识是不够的。此外,我们对创建海防生态系统所需的方法缺乏充分的了解,因为以前的恢复工作成功率很低。目前的建议旨在以世界上最大的城市区域--中国的珠江三角洲为模型系统,建立基于过程的理解和预测模型,了解生态系统规模需求和如何创建海防生态系统。将进行三角洲尺度的红树林面积监测和水动力模拟,以研究近期湿地面积的变化,并在气候变化和填海造地的对比情景下,评估防御生态系统空间的优化。这项大规模的研究还将为局部规模的实验和建模提供支持边界条件。将使用新型仪器进行一系列实验,以提高我们对影响红树林复原力和繁殖过程的洞察力。利用疏浚材料和牡蛎礁促进红树林建立的创新措施也将进行实验测试。当地尺度的模型将结合新的实验知识来预测红树林生物地貌动力学并为管理提供指导。开发的模型和知识将直接应用于即将建设的生态堤防试点项目的设计中,与我们的项目合作伙伴合作。我们将考虑如何通过优化土地利用、体制和机制以实现更可持续的城市化,在空间规划和灾害管理相结合方面解决弹性城市规划和管理问题,探索生态动态设计方案,作为城市发展过程的一部分,为自然提供机会。英国申请者对该项目的贡献总结:英国申请者将领导工作任务1:湿地区域监测/水动力模型。这项工作将概述珠江三角洲的生物物理条件,包括珠江三角洲目前的形态和土地利用情况,以及未来对海平面和风暴的气候预测。英国团队将为珠江三角洲实施一个高分辨率的非结构网格模式(FVCOM),用于水动力、波浪和泥沙输送,该模式将提供较大规模的大气和海洋边界条件与我们的荷兰和中国合作伙伴将进行的较小规模的过程研究和生态系统模拟之间的接口。该模型与区域海平面预测一起,将被用来为当地的生态模型提供量化情景。
英文摘要
Project Summary:Nature-based coastal defence solutions have increasingly been recognized as more sustainable alternatives to conventional hard engineering approaches against climate change. These include using wetlands, mangroves, coral and oyster reefs as a buffer zone, which can attenuate waves and, in a regime of moderate sea level rise, the sediment trapping in such zones can keep pace with sea level. Wetlands and mangroves are regions in which more salt-tolerant species exist, which can protect freshwater species behind them. Nature-based defences have been deployed in the USA, Netherlands and UK and also in some parts of China, with varying degrees of success. In deltas undergoing fast urbanisation, applying nature-based solutions can lead to competition for space with other land uses, e.g.land-reclamation. For optimised management, the question of how much space is required by nature-based solutions must be addressed. However, our current knowledge of the size-dependent defence-value and resilience of different ecosystems is insufficient. Additionally, we lack full understanding of the methods needed for ecosystem creation for coastal defence, as previous restoration efforts have suffered low success rates.The current proposal aims to develop process-based understanding and predictive models of ecosystem size requirements and how to create ecosystems for coastal defence, using the world's largest urban area, the Pearl River Delta (PRD) in China, as a model system. Delta-scale mangrove area monitoring and hydrodynamic modelling will be conducted to study recent wetland area changes and estimate the optimisation of ecosystem spaces for defence, under contrasting scenarios of climate change and land-reclamation. This large-scaled study will also provide underpinning boundary conditions for local-scale experiments and modelling. A set of experiments using novel instruments will be conducted to improve our insights into the processes influencing mangrove resilience and propagation. Innovative measures of using dredged materials and oyster reefs to facilitate mangrove establishment will also be tested experimentally. Local-scale models will incorporate the new experimental knowledge to predict mangrove bio-geomorphic dynamics and provide guidelines for management.The developed models and knowledge will be directly applied in the design of a pilot eco-dike project due to be constructed, in collaboration with our project partners. We will consider how to address resilient urban planning and management, in terms of combining spatial planning and disaster management by optimising land use, institutions and mechanisms for more sustainable urbanisation, exploring eco-dynamic design options to provide opportunities for nature as part of the urban development processes. Summary of the UK applicants' contribution to the project:The UK applicants will lead Work Task 1: Wetland area monitoring/hydrodynamic modelling. This work task will provide an over-view of the bio-physical conditions, including the morphological and land-use aspects of the PRD and its regional setting, for the present day, and under future climate projections of sea level and storms.The UK team will implement a high resolution unstructured-grid model (FVCOM) for the Pearl River Delta (PRD) for hydrodynamics, waves and sediment transport which will provide the interface between the larger scale atmospheric and oceanic boundary conditions and the smaller-scale process studies and ecosystem modelling to be carried out by our Dutch and Chinese partners. This model, together with regional sea level projections, will be used to provide quantitative scenarios for the local area ecological modelling.
期刊论文(3)
专著(0)
科研奖励(0)
会议论文
DOI:
10.3389/fmars.2020.00236
发表时间:
2020-04
期刊:
影响因子:
--
作者:
[P. Zheng;Ming Li;Caixia Wang;J. Wolf;Xue'en Chen;M. De Dominicis;P. Yao;Zhan Hu]
通讯作者:
P. Zheng;Ming Li;Caixia Wang;J. Wolf;Xue'en Chen;M. De Dominicis;P. Yao;Zhan Hu
DOI:
10.1002/lno.11875
发表时间:
2021-06
期刊:
Limnology and Oceanography
影响因子:
4.5
作者:
[Rosanna Hespen;Zhan Hu;Yisheng Peng;B. Borsje;M. Kleinhans;T. Ysebaert;T. Bouma]
通讯作者:
Rosanna Hespen;Zhan Hu;Yisheng Peng;B. Borsje;M. Kleinhans;T. Ysebaert;T. Bouma
DOI:
10.1029/2021gl095596
发表时间:
2021-11-28
期刊:
GEOPHYSICAL RESEARCH LETTERS
影响因子:
5.2
作者:
[Hu, Zhan, Borsje, Bas W., Bouma, Tjeerd J.]
通讯作者:
Bouma, Tjeerd J.
Newton Fund: Applying nature-based coastal defence to the world's largest urban area - from science to practice
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批准号:EP/R024537/1
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项目类别:Research Grant
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资助金额:$26.9万
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财政年份:2018
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负责人:Judith Wolf
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依托单位:
Assessing health, livelihoods, ecosystem services and poverty alleviation in populous deltas
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批准号:NE/J002852/1
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项目类别:Research Grant
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资助金额:$16.65万
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财政年份:2012
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负责人:Judith Wolf
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依托单位:
海外基金