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埃塞俄比亚安格尔流域土地利用动态和气候变化情景对地下水补给的影响

Impact of land-use dynamics and climate change scenarios on Groundwater recharge in the case of Anger watershed, Ethiopia.

作者信息

Chuko Fikadu Warku, Abdissa Abera Gonfa

机构信息

Department of Earth Sciences, Wollega University, P.O. Box 395, Nekemte, Ethiopia.

出版信息

Heliyon. 2023 Jul 26;9(8):e18467. doi: 10.1016/j.heliyon.2023.e18467. eCollection 2023 Aug.

Abstract

An assessment of land use dynamics and climate variability impacts on hydrological processes is vital and a prerequisite for effective water resources management. This study aimed to quantify the effect of land-use changes and long-term climate variability on the Anger watershed's annual groundwater recharge, which covers a total drainage area of 7717 km. The WetSpass (Water and Energy Transfer between Soil, Plants, and Atmosphere under quasi-Steady State) model was used to investigate the impact of land cover and climate variability on groundwater. The Mann-Kendall (MK) test was used to analyze the spatial variations and temporal trends of the climate variables in the watershed. Input data for the model, such as land use, hydro-meteorological data, soil texture, topography, and groundwater elevation parameters, were prepared in the form of gridded maps with a 30 m resolution. The model results indicate that land-use change and climate variability considerably impact distributed groundwater recharges. Groundwater recharge decreased with land use in 2000 and 2019, respectively, as compared to baseline land usage (1985). The study also demonstrates how the anticipated future combination of less precipitation and higher temperatures has a detrimental effect on the watershed's annual average groundwater recharge. Future rising temperatures and reduced precipitation are projected to result in an average annual groundwater recharge showing significant decreases in 2050, 2080, and 2110, respectively, according to scenario-based models. The result has provided valuable information on the management and response of groundwater recharge to climate and land-use changes, particularly for the Anger watershed and for the total country as well.

摘要

评估土地利用动态和气候变化对水文过程的影响至关重要,是有效水资源管理的前提条件。本研究旨在量化土地利用变化和长期气候变化对安格尔流域年地下水补给的影响,该流域总面积为7717平方公里。利用WetSpass(准稳态下土壤、植物和大气之间的水与能量传输)模型研究土地覆盖和气候变化对地下水的影响。采用曼-肯德尔(MK)检验分析流域内气候变量的空间变化和时间趋势。模型的输入数据,如土地利用、水文气象数据、土壤质地、地形和地下水位参数,均以分辨率为30米的网格地图形式编制。模型结果表明,土地利用变化和气候变化对分布式地下水补给有显著影响。与基准土地利用情况(1985年)相比,2000年和2019年的土地利用分别导致地下水补给量减少。该研究还表明,预计未来降水减少和气温升高的综合情况将对流域的年平均地下水补给产生不利影响。根据基于情景的模型预测,未来气温上升和降水减少预计将分别导致2050年、2080年和2110年的年平均地下水补给量显著下降。该结果为地下水补给对气候和土地利用变化的管理与响应提供了有价值的信息,特别是对于安格尔流域以及整个国家而言。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a519/10404673/b7ac18a6fb8b/gr1.jpg

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