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Combined consideration for decentralised non-potable water supply from local groundwater and nutrient load reduction in urban drainage

机译:综合考虑从地方地下水中分散非饮用水和减少城市排水中的养分

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摘要

Integrated analysis of land use change and its effect on catchment water balance allows the selection of appropriate water and land management options for new urban developments to minimise the environmental impacts of urbanisation. A process-based coupled surface water-groundwater model was developed for Southern River catchment (Perth, Western Australia) to investigate the effect of urban development on catchment water balance. It was shown that urbanisation of highly permeable flat catchments with shallow groundwater resulted in significant increase in net groundwater recharge. The increased recharge creates the opportunity to use local groundwater resources for non-potable water supply with the added advantage of reducing the total discharge from new urban developments. This minimises the environmental impacts of increased urbanisation, as higher discharge is often associated with greater nutrient loads to receiving environments. Through the used of water balance modelling it was demonstrated that there are both water and nutrient benefits from local groundwater use in terms of reduced nutrient exports to receiving waters and additional water resources for non-potable water supply.
机译:通过对土地利用变化及其对流域水平衡的影响进行综合分析,可以为新的城市发展选择合适的水和土地管理方案,以最大程度地减少城市化对环境的影响。为南部河流集水区(珀斯,西澳大利亚州)开发了基于过程的地表水-地下水耦合模型,以研究城市发展对集水区水平衡的影响。结果表明,具有浅层地下水的高渗透性平坦流域的城市化导致地下水净补给量的显着增加。补给的增加为利用当地地下水资源提供非饮用水提供了机会,同时具有减少新的城市发展带来的总排放量的额外优势。由于更高的排放量通常与接收环境中更大的养分含量相关联,因此可以最大程度地减少城市化进程对环境的影响。通过水平衡模型的使用,证明了当地地下水的使用在水和养分方面都有好处,减少了养分向接收水的出口,并增加了非饮用水供应的水资源。

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