Assessing Variability and Trends of Rainfall and Temperature for the District of Musanze in Rwanda

IF 2.1 4区 地球科学 Q3 METEOROLOGY & ATMOSPHERIC SCIENCES Advances in Meteorology Pub Date : 2023-08-25 DOI:10.1155/2023/7177776
Anthony Twahirwa, C. Oludhe, P. Omondi, G. Rwanyiziri, Joseph Sebaziga Ndakize
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Abstract

Variability in rainfall and temperature results in different impacts on agricultural practices. Assessesment of variability and trend of rainfall and temperature for the district of Musanze in Rwanda was conducted using six meteorological stations for a period of 37 years, ranging from 1981 to 2018, and data were obtained from Rwanda Meteorology Agency. Musanze district is located in highland areas of Rwanda, understanding the variability and trend in rainfall and temperature is paramount to increase the uptake of climate information and support strategic orientation. The Mann–Kendall nonparametric test and modified Mann–Kendall were used to assess the trend in rainfall and temperature, whereas Sen’s slope estimator was used to assess the magnitude of change. The results from both methods showed much similarity and consistency. The assessment of variability and trend in rainfall and temperature in Musanza district indicated that increasing temperature and decreasing rainfall trends gave an indication of changes in variability and trend in rainfall and temperature. The annual pattern revealed a substantial downward tendency of −25.7% for Nyange, the only station with constant decreasing trend over all seasons, DJF, −61.4%, SON, −12.2%, JJA, −40.3%, and MAM, −4.35. Temperature analysis for both maximum and minimum indicated increasing trend which was signal for constant warming up in the area. The results from coefficient of variation indicated a high disparity in rainfall variation from June to August which ranged between 51 and 74%, and other seasons changes were moderate.
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卢旺达穆桑泽地区降雨量和温度的变化和趋势评估
降雨和温度的变化对农业实践产生了不同的影响。利用卢旺达气象局提供的数据,利用1981 - 2018年37年的6个气象站对卢旺达Musanze地区降雨和温度的变率和趋势进行了评估。Musanze地区位于卢旺达的高地地区,了解降雨和温度的变化和趋势对于增加对气候信息的吸收和支持战略定位至关重要。使用Mann-Kendall非参数检验和修正Mann-Kendall检验来评估降雨和温度的趋势,而使用Sen斜率估计来评估变化幅度。两种方法的计算结果具有很大的相似性和一致性。对木桑扎地区降水和温度的变率和趋势评价表明,增温和降水减少的趋势反映了降水和温度的变率和趋势变化。年平均下降趋势为- 25.7%,是唯一一个四季持续下降的站点,DJF为- 61.4%,SON为- 12.2%,JJA为- 40.3%,MAM为- 4.35。最高和最低温度分析均显示出上升趋势,这是该地区持续升温的信号。变异系数结果表明,6 ~ 8月降水量变化差异较大,在51% ~ 74%之间,其他季节变化不大。
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来源期刊
Advances in Meteorology
Advances in Meteorology 地学天文-气象与大气科学
CiteScore
5.30
自引率
3.40%
发文量
80
审稿时长
>12 weeks
期刊介绍: Advances in Meteorology is a peer-reviewed, Open Access journal that publishes original research articles as well as review articles in all areas of meteorology and climatology. Topics covered include, but are not limited to, forecasting techniques and applications, meteorological modeling, data analysis, atmospheric chemistry and physics, climate change, satellite meteorology, marine meteorology, and forest meteorology.
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