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Joshin John Bejoy

Publications and source records attributed to Joshin John Bejoy.

2 recordsLinked to original sources

Recurrence analysis of meteorological data from climate zones in India

We present a study on the spatio-temporal pattern underlying the climate dynamics in various locations spread over India, including the Himalayan region, coastal region, central and northeastern parts of India. We try to capture the variations in the complexity of their dynamics derived from temperature and relative humidity data from 1948-2022. By estimating the recurrence-based measures from the reconstructed phase space dynamics using a sliding window analysis on the data sets, we study the climate variability in different spatial locations. The study brings out the variations in the complexity of the underlying dynamics as well as their heterogeneity across the locations in India. We find almost all locations indicate shifts to more irregular and stochastic dynamics for temperature data around 1972-79 and shifts back to more regular dynamics beyond 2000. These patterns correlate with reported shifts in the climate and Indian Summer Monsoon related to strong and moderate ENSO events and confirm their associated regional variability.

physics.ao-ph↗

Multifractal and recurrence measures from meteorological data of climate zones in India

We present a study on the spatio-temporal pattern underlying the climate dynamics in various locations spread over India, including the Himalayan region, coastal region, central and northeastern parts of India. We try to capture the variations in the complexity of their dynamics derived from temperature and relative humidity data and classify them based on the multifractal features of their reconstructed phase space dynamics. We also report the variations in climate dynamics over time in these locations by estimating the recurrence-based measures using a sliding window analysis on the data sets. We could then detect significant shifts in climate variability in different spatial locations during the period 1970-2000. The dynamical systems approach presented thus helps to understand the complexity and identify the heterogeneity in climate dynamics. The study also provides relevant inputs on the nature of the shifts in climate that occur in the locations spread over different climate zones.

physics.ao-ph↗