Impacts of Climate Change on Groundwater in the Al-Badan Sub-Catchment, Palestine: Analyzing Historical Data and Future Scenarios

IF 2.4 4区 环境科学与生态学 Q2 Environmental Science
Hamzah Faquseh, Sameer Shadeed, Giovanna Grossi
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引用次数: 2

Abstract

Climate change is significantly impacting water resources, especially in arid regions. This study evaluates its effects on groundwater in the Al-Badan sub-catchment, Palestine, by analyzing hydroclimatic data from 1990 to 2020 and the future predicted climate change scenarios. Using the Mann-Kendall test and Sen’s slope estimator, a significant annual decline in annual precipitation of 125 mm and a temperature increase of 1.84 °C were observed, resulting in a spring discharge reduction of 1.2 MCM. Multiple linear regression analysis showed that a 10% increase in precipitation correlates with a 5% discharge increase, while a 1 °C rise in temperature results in a 2.3% discharge decrease. Future scenarios indicate significant changes: for 2040–2060, RCP2.6 forecasts average precipitation of 334.5 mm with temperatures at 18.5 °C, resulting in spring discharge of about 4.6 MCM. In contrast, RCP4.5 and RCP8.5 predict reductions in precipitation to 307.2 mm and 311.2 mm, respectively, with temperatures rising to 18.9 °C and 19.3 °C, leading to discharge declines to 4.2 MCM and 4.0 MCM. For 2080–2100, RCP2.6 anticipates 335.8 mm of precipitation and temperatures rising to 19.5 °C, resulting in average discharge of 4.5 MCM. RCP4.5 and RCP8.5 predict further declines in precipitation and discharge, underscoring the need for effective water management strategies.
气候变化对巴勒斯坦Al-Badan流域地下水的影响:历史数据和未来情景分析
气候变化正在严重影响水资源,特别是在干旱地区。本研究通过分析1990 - 2020年的水文气候数据和未来预测的气候变化情景,评估了其对巴勒斯坦Al-Badan子集水区地下水的影响。利用Mann-Kendall检验和Sen 's斜率估计,观测到年降水量显著减少125 mm,气温升高1.84°C,导致春季流量减少1.2 MCM。多元线性回归分析表明,降水量每增加10%,排放量增加5%,而温度每升高1℃,排放量减少2.3%。未来情景显示出显著的变化:2040-2060年,RCP2.6预测平均降水量为334.5 mm,温度为18.5℃,导致春季流量约4.6 MCM。RCP4.5和RCP8.5预测,随着温度升高至18.9°C和19.3°C,降水分别减少307.2 mm和311.2 mm,导致流量减少至4.2 MCM和4.0 MCM。在2080-2100年,RCP2.6预计降雨量为335.8毫米,气温上升至19.5°C,平均排放量为4.5 MCM。RCP4.5和RCP8.5预测降水和流量将进一步下降,强调需要有效的水管理战略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Hydrology Research
Hydrology Research Environmental Science-Water Science and Technology
CiteScore
5.30
自引率
7.40%
发文量
70
审稿时长
17 weeks
期刊介绍: Hydrology Research provides international coverage on all aspects of hydrology in its widest sense, and welcomes the submission of papers from across the subject. While emphasis is placed on studies of the hydrological cycle, the Journal also covers the physics and chemistry of water. Hydrology Research is intended to be a link between basic hydrological research and the practical application of scientific results within the broad field of water management.
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