Recent changes in the climatological characteristics of daily contiguous rain areas over India

Author:

Bhowmick MansiORCID,Sahany Sandeep,Das Ananda Kumar

Abstract

AbstractThis study documents the climatological feature (1951–1980) and recent changes (1981–2020) in rainfall characteristics considering the observed nearly full spectrum of rain event sizes (daily contiguous rain area (CRA) events) in all seasons over India. It is found that the low frequency very large CRA (~synoptic scale) from monsoon season contributes ~50% of annual rainfall. However, the small-sized CRA (isolated thunderstorms) are the most frequent daily rain events (~70% of annual frequency) and hence are important for rain-fed agricultural practices. The well-documented widespread drying trend in the monsoon season has manifested in the annual rainfall trend but with reduced magnitude illustrating the compensatory effect from other seasons. Spatial aggregated annual statistics show that there is no significant change in rainfall amount and frequency of occurrence of rain events in the recent past compared to the base period. However, seasonally the pre-monsoon rainfall amount has increased significantly. Annually, the number of extremely heavy CRA (EHR) events have significantly increased by ~55% owing to a significant increase in pre-monsoon and monsoon rainfall. In all seasons, small-sized extremely heavy CRA has intensified substantially by 50–200% as compared to the base period. Additionally, the rain events from areal category large (~Mesoscale Convective Complexes (MCC)) have intensified in all seasons except winter. Thus, to decrease the uncertainty in rain-fed agricultural practices and better prediction of EHR to develop effective climate change mitigation strategies; process studies beyond monsoon season and processes other than synoptic scales are also required.

Funder

Partially supported by IIT Delhi and University of Leeds.

No Funding

Publisher

Springer Science and Business Media LLC

Subject

Atmospheric Science,Environmental Chemistry,Global and Planetary Change

Reference59 articles.

1. Agricultural statistics: agricultural statistics at a glance, ministry of agriculture & farmers welfare, Government of India. https://agricoop.gov.in/Documents/agristatglance2018.pdf (2018).

2. Amrith, S. S. Risk and the South Asian monsoon. Clim. Change 151, 17–28 (2018).

3. Gadgil, S. & Gadgil, S. The Indian Monsoon, GDP and agriculture. Econ. Polit. Wkly. 41(Nov), 4887–4895 (2006).

4. Krishna Kumar, K., Rupa Kumar, K., Ashrit, R. G., Deshpade, N. R. & Hansen, J. W. Climate impact on India agriculture. Int. J. Climatol. 24, 1375–1393 (2004).

5. Rajeevan, M., Unnikrishnan, C. K., Kumar, K. N. & Sreekala, P. P. Northeast monsoon over India: variability and prediction. Meteorol. Appl. 19, 226–236 (2012).

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