Investigating Variations and Trend Analysis for Temperature and Precipitation as a Result of Climate Change in Rajasthan, India

IF 0.7 Q4 METEOROLOGY & ATMOSPHERIC SCIENCES Journal of Climate Change Pub Date : 2023-09-01 DOI:10.3233/jcc230022
Vratika Porwal, Mahendra Pratap Choudhary
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Abstract

Climate change is a pressing issue that is affecting the lives and livelihoods of millions of people across the world. This study investigates the trend analysis and spatial-temporal variations of temperature and precipitation on a monthly, seasonal, and annual basis in Rajasthan state, India, over the past 40 years (1981-2020). The trend analysis of temperature and precipitation were analysed using the Mann-Kendall test at the confidence level of 95%. The magnitude (slope) was determined by using Theil-Sen’s slope test. The results of the analysis revealed significant positive and negative trends of temperature and precipitation observed on a monthly, seasonal, and annual basis in all the 33 districts of Rajasthan state. The summer season experienced the maximum average temperature, while the winter season had the minimum. The study also found that the northern and western parts of Rajasthan experience “Mawat” rain during the winter due to cyclones happening in the Mediterranean Sea during that season. The annual average temperature and precipitation were observed to be maximum in the southern part and minimum in the northern and western parts of the state. The findings of this study provide valuable information for the future management of water resources and the likely impact of activities on the hydrologic cycle and natural resources in Rajasthan state.
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气候变化对印度拉贾斯坦邦温度和降水变化的影响及趋势分析
气候变化是一个紧迫的问题,影响着全世界数百万人的生活和生计。本文对印度拉贾斯坦邦近40年(1981-2020年)气温和降水的月、季、年趋势分析及时空变化进行了研究。温度和降水的趋势分析采用Mann-Kendall检验,置信水平为95%。采用Theil-Sen斜率试验确定其幅度(斜率)。分析结果显示,在拉贾斯坦邦所有33个地区观测到的月度、季节性和年度温度和降水的显著正趋势和负趋势。夏季平均气温最高,冬季平均气温最低。该研究还发现,拉贾斯坦邦的北部和西部地区在冬季经历了“毛笏”雨,这是由于地中海在这个季节发生的气旋。年平均气温和降水量南部最高,北部和西部最低。本研究的结果为未来水资源管理以及活动对拉贾斯坦邦水文循环和自然资源的可能影响提供了有价值的信息。
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来源期刊
Journal of Climate Change
Journal of Climate Change METEOROLOGY & ATMOSPHERIC SCIENCES-
自引率
16.70%
发文量
18
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