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Modelling small groundwater systems: experiences from the Braunton Burrows and Ainsdale coastal dune systems, UK

机译:模型小地下水系统:英国Braunton Burrows和Ainsdale沿海沙丘系统的经验

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摘要

Coastal dunes are delicate systems that are under threat from a variety of human and natural influences. Groundwater modelling can provide a better understanding of how these systems operate and can be a useful tool towards the effective management of a coastal dune system, e.g. by identifying strategically important locations for flora and fauna and guiding the planning of management operations through predicting impacts from climatic change, sea level rise and land use management. Most dune systems are small, typically of the size 10-100 km(2), compared with inland groundwater systems. Applying conventional groundwater modelling approaches to these small systems presents a number of challenges due to the local scale of the system and the fact that the system boundaries (sea, drains, ponds etc.) are close to the main body of the aquifer. In this paper, two case studies will be presented using different modelling approaches to understand the groundwater balance in two dune systems in the UK. The studies demonstrate that, although conventional hydraulic models can describe the general system behaviour, a fuller understanding of the recharge mechanisms and system boundaries is needed to represent adequately system dynamics of small groundwater systems.
机译:沿海沙丘是各种人类和自然影响的精致系统。地下水建模可以更好地了解这些系统如何运行,并且可以成为沿海沙丘系统的有效管理的有用工具,例如,通过识别植物群和动物群的战略重要地点,并通过预测气候变化,海平面上升和土地利用管理的影响指导管理业务的规划。与内陆地下水系统相比,大多数沙丘系统都很小,通常为10-100公里(2)。应用于这些小系统的传统地下水建模方法呈现出许多挑战,由于系统的局部规模以及系统边界(海,排水管,池塘等)靠近含水层的主体的事实。在本文中,将使用不同的建模方法呈现两种案例研究,以了解英国两个沙丘系统中的地下水平衡。研究表明,虽然传统的液压模型可以描述一般系统行为,但需要更全面了解给充电机制和系统边界,以表示小地下水系统的充分系统动态。

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