埃塞俄比亚两个不同生态区域的气候多变性趋势分析

IF 2.1 Q2 ENGINEERING, MULTIDISCIPLINARY Cogent Engineering Pub Date : 2023-11-28 DOI:10.1080/23311916.2023.2283337
M. Gedefaw
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引用次数: 0

摘要

摘要 本研究根据气候变异分析了代表埃塞俄比亚全境的两个生态区域的降水和气温趋势。研究采用了 Mann-Kendall、Sen 的斜率估计检验和创新趋势分析方法来检测降水和气温的变化趋势。本研究使用了 1980 年至 2016 年的历史气象观测数据来分析趋势。MATLAB 软件用于分析气候变异趋势。研究结果表明,降水趋势在高原生态区的贡达尔(β = 1.84)和巴哈达尔(β = 1.80)呈显著的正趋势,而在低洼生态区的内盖勒(β = 23.40)和格瓦内(β = 0.10)呈显著的增加趋势。不过,Sekoru(β = 0.01)和 Degahabur(β = 4.13)站的气温呈明显下降趋势。就气温变化趋势而言,贡德尔(β = 0.04)和巴哈达尔(β = 0.08)站的气温呈显著上升趋势,而高原生态区的塞科鲁(β = 0.01)站的气温呈急剧下降趋势。低地生态区(Gewane (β = 0. 10)、Degahabur (β = 0.03) 和 Negele (β = 0.07))的降水和气温在统计上呈显著上升趋势。埃塞俄比亚两个生态区域降水和气温趋势的一致性证实了趋势变化的稳健性。应通过更多站点和数据集开展进一步研究,以得出气候变化是否发生的结论。不过,这项研究的结果可以为政策制定者和决策者采取积极措施减缓气候变化提供启示。
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Analysis of the trends of climate variability over two different eco-regions of Ethiopia
Abstract This study analyzed the trends of precipitation and temperature in two eco-regions, which represent the whole part of Ethiopia based on climate variations. Mann–Kendall, Sen’s slope estimator test and innovative trend analysis method were used to detect precipitation and temperature trends. The observed historical meteorological data from 1980 to 2016 were used to analyze the trends in this study. MATLAB software was used to analyze the trends of climate variability. The findings of this study showed that the trends of precipitation were statistically significant with a positive trend in Gondar (β = 1.84) and Bahir Dar (β = 1.80) of highland eco-regions, whereas a significant increasing trend was observed in Negele (β = 23.40) and Gewane (β = 0.10) of lowland eco-regions. However, Sekoru (β = 0.01) and Degahabur (β = 4.13) stations showed a significant decreasing trend. As far as trends of temperature are concerned, a statistically significant increasing trend of temperature was observed in Gondar (β = 0.04) and Bahir Dar (β = 0.08), and a sharp significant decreasing trend was observed in Sekoru (β = 0.01) stations of highland eco-regions. The lowland eco-regions (Gewane (β = 0. 10), Degahabur (β = 0.03) and Negele (β = 0.07)) showed a statistically significant increasing trend. The consistency in precipitation and temperature trends over the two eco-regions of Ethiopia confirms the robustness of the change in trends. Further study should be done by taking more stations and datasets to reach a conclusion whether climate change has occurred or not. However, the findings of this study could provide insights for policy- and decision-makers to take proactive measures for climate change mitigation.
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来源期刊
Cogent Engineering
Cogent Engineering ENGINEERING, MULTIDISCIPLINARY-
CiteScore
4.00
自引率
5.30%
发文量
213
审稿时长
13 weeks
期刊介绍: One of the largest, multidisciplinary open access engineering journals of peer-reviewed research, Cogent Engineering, part of the Taylor & Francis Group, covers all areas of engineering and technology, from chemical engineering to computer science, and mechanical to materials engineering. Cogent Engineering encourages interdisciplinary research and also accepts negative results, software article, replication studies and reviews.
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