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首页> 外文期刊>Climatic Change >Assessment of climate change impacts on the quantity and quality of a coastal catchment using a coupled groundwater-surface water model.
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Assessment of climate change impacts on the quantity and quality of a coastal catchment using a coupled groundwater-surface water model.

机译:使用地下水-地表水耦合模型评估气候变化对沿海集水区的数量和质量的影响。

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摘要

The hydrology of coastal catchments is influenced by both sea level and climate. Hence, a comprehensive assessment of the impact of climate change on coastal catchments is a challenging task. In the present study, a coupled groundwater-surface water model is forced by dynamically downscaled results from a general circulation model. The effects on water quantity and quality of a relatively large lake used for water supply are analyzed. Although stream inflow to the lake is predicted to decrease during summer, the storage capacity of the lake is found to provide a sufficient buffer to support sustainable water abstraction in the future. On the other hand, seawater intrusion into the stream is found to be a significant threat to the water quality of the lake, possibly limiting its use for water supply and impacting the aquatic environment. Additionally, the results indicate that the nutrient load to the lake and adjacent coastal waters is likely to increase significantly, which will increase eutrophication and have negative effects on the surface water ecology. The hydrological impact assessment is based on only one climate change projection; nevertheless, the range of changes generated by other climate models indicates that the predicted results are a plausible realization of climate change impacts. The problems identified here are expected to be relevant for many coastal regimes, where the hydrology is determined by the interaction between saline and fresh groundwater and surface water systems.
机译:沿海流域的水文学受到海平面和气候的影响。因此,全面评估气候变化对沿海流域的影响是一项艰巨的任务。在本研究中,地下水-地表水耦合模型是由一般循环模型的动态按比例缩小结果强制执行的。分析了用于供水的较大湖泊对水量和水质的影响。尽管预计夏季流入湖泊的水流将减少,但已发现湖泊的蓄水能力可为将来的可持续取水提供足够的缓冲。另一方面,发现海水侵入溪流对湖泊的水质构成重大威胁,可能会限制其用于供水并影响水生环境。此外,结果表明,湖泊和附近沿海水域的养分负荷可能会显着增加,这将增加富营养化并对地表水生态产生负面影响。水文影响评估仅基于一项气候变化预测;然而,其他气候模型产生的变化范围表明,预测结果似乎是对气候变化影响的合理认识。预计此处确定的问题与许多沿海地区有关,这些地区的水文状况是由盐水,淡水和地表水系统之间的相互作用决定的。

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