全球气候变化时代成长中的大都市长期气象资料趋势分析

Sayantan Haldar , Moharana Choudhury , Santanu Choudhury , Palas Samanta
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摘要

从气候变化的角度来看待时空气象动态至关重要,尤其是在雨水灌溉农业盛行的国家。组件的可变性或波动性程度因地区而异。这项研究考察了印度阿萨姆邦古瓦哈提市的温度和降雨模式。为了检验这些模式,本研究采用了1970年至2019年的观测历史天气数据。使用Mann-Kendall(MK)检验、Sen斜率预测和线性回归等工具对这些问题进行了分析。温度在年度和季节性期间呈上升趋势,在统计上显著为95%。根据调查结果,全年的季节性降雨量随着时间的推移而增加。特别是,季风和冬季降水量大幅下降,而季风前和季风后的月份都出现了降水量增加的趋势,特别是在过去50年中。对50年来的数据进行彻底审查表明,年最低和最高气温有所上升,而古瓦哈提市的季节最低和最高温度也有所上升。ARIMA的研究结果表明,未来几年的年平均降水量、最高气温、最低气温和平均气温将迅速攀升。到2029年,降水量、最高温度、最低温度和平均温度的年平均值将分别为3988.5毫米、35.75°C、23.33°C和28.40°C。研究气候变化的研究人员、决策者和决策者将以研究结果为指导。
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Trend analysis of long-term meteorological data of a growing metropolitan city in the era of global climate change

It is crucial to look at the spatiotemporal meteorological dynamics from the perspective of climatic variability, especially in nations where prevalent rain-fed agri-farming occurs. The degree of the components' variability or volatility varies depending on the locale. This study examined the temperature and rainfall patterns in the Guwahati city of Assam state of India. To examine the patterns, this study employed observed historical weather data from 1970 to 2019. The concerns were analysed using tools like the Mann-Kendall (MK) test, Sen's slope predictor, and linear regression. Temperature showed an upward trend for yearly and seasonal periods and was statistically significant at 95%. According to the findings, overall annual seasonal rainfall is increasing over time. In particular, there is a considerable drop in monsoon and winter precipitation, while both pre-monsoon and post-monsoon months witnessed an increasing precipitation trend, particularly over the past 50 years. A thorough review of the data for 50 years demonstrates that yearly temperature minimums and maximums have increased while the Guwahati city seasonal temperature minimums and maximums have also increased. The ARIMA findings indicated that annual average precipitation, maximum, minimum and average temperatures would quickly climb in coming years. The annual average values for precipitation, maximum, minimum and average temperatures would be 3988.5 mm, 35.75 °C, 23.33 °C and 28.40 °C, respectively by the year 2029. Researchers studying climate change, policymakers, and decision-makers will use the study's findings as a guide.

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