Advances in Geoethics and Groundwater Management : Theory and Practice for a Sustainable Development - Proceedings of the 1st Congress on Geoethics and Groundwater Management (GEOETH&GWM'20), Porto, Portugal 2020

Advances in Geoethics and Groundwater Management : Theory and Practice for a Sustainable Development - Proceedings of the 1st Congress on Geoethics and Groundwater Management (GEOETH&GWM'20), Porto, Portugal 2020
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地球伦理学和地下水管理的进展:可持续发展的理论与实践 - 第一届地球伦理学和地下水管理大会(GEOETH)论文集

DOI:
10.1007/978-3-030-59320-9_83
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发表时间:
2021
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通讯作者:
Mustafa S
Mustafa S
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文献类型:
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作者:
Mustafa S

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有必要将对物理环境驱动因素的理解与社会、经济、文化和政治观点及信息结合起来,以建立抵御未来洪水和干旱灾害的能力。我们提出了一个灵活的协作建模方法,以提高弹性,在大型流域的水文极端应用林波波河流域(LRB)。它使用一个迭代的知识共同生产过程,以适当的规模加强科学家和水资源管理利益攸关方之间的重要桥梁。在拟议的协作建模方法中,综合水文(地质)模型与区域到跨界人民的知识和政策相结合。分析了利益相关者反馈对数值模式预报的影响和重要性。拟议的方法适用于林波波河流域(LRB),洪水和干旱是经常性的事件。通过这种迭代的多部门协作建模方法,我们的目标是开发一种可靠可行的管理工具,以帮助减少干旱和洪水交替的影响,并提高对水文极端情况的适应能力。
It is necessary to combine the understanding of physical environmental drivers with social, economic, cultural and political perspectives and information to build resilience to future flood and drought hazards. We present a flexible collaborative modelling approach to improve resilience to hydrological extremes in large basins with application to the Limpopo River Basin (LRB). It uses an iterative, knowledge co-production process to strengthen crucial bridges between scientists and water management stakeholders on the appropriate scale(s). In the proposed collaborative modelling approach, the integrated hydro(geo)logical model is combined with regional to transboundary people’s knowledges and policies. We analyse the effect and importance of stakeholders’ feedback on the numerical model prediction. The proposed methodology is applied in the Limpopo River Basin (LRB) where floods and droughts are recurrent events. Through this iterative multisector collaborative modelling approach, we aim to develop a reliable and feasible management instrument to help reduce the impact of alternating droughts and floods and increase the resilience to hydrological extremes.