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Long term surface-air temperature variations over the Indian region during 1970-2009

2018/11/16 by Kamsali Nagaraja, Nagaraja, Kamsali, S. C. Chakravarty +1
Computer Science · Environmental Science · Physics and Astronomy · #Atmospheric and Oceanic Physics (physics.ao-ph) #Climate variability and models #FOS: Physical sciences #Solar Radiation and Photovoltaics #Urban Heat Island Mitigation #physics.ao-ph

paper · pdf · doi:10.48550/arxiv.1811.06705

12 pages, 15 figures, presented at COSPAR-2018 42nd Assembly, Pasadena, USA during 14-22, July 2018

openalex publication_date 2018/11/16 · arxiv created 2019/08/22 · arxiv updated 2019/08/23 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/28

Abstract

Global and regional annual mean temperature data have been analysed by many groups to determine the linear trends of temperature over climatological time scales. The near consistent results generally show an increase of about 0.07 °C per decade during the 20th Century. But many basic questions including spatial and temporal data gaps, non-uniform distribution of observing sites, superposition of internal/natural variations at different scales with parametric feedbacks etc., still remain unresolved. This paper mainly deals with a detailed study of the climatological variations of surface-air temperatures over the Indian region using a well-tested, verified, researched and gridded (1°x1°) daily mean temperature data set for the period 1970-2009. The annual mean temperatures estimated with different spatial integration show linear trends with an increase of about 0.4 °C during this period. A detailed error analysis of the voluminous data shows that the statistical errors at 95% confidence interval are lower than that of the increase in temperatures determined from its linear trend. The annual mean temperature time series also shows consistent and nearly phase coherent periodic variations of 3-5 years with an average magnitude of ±0.4 °C. Possible causes of these temperature structures due to changes in solar activity, Galactic Cosmic Ray (GCR) fluxes and El Nino and Southern (ENSO) are examined.

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