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Aerosol-induced intensification of cooling effect of clouds during Indian summer monsoon

Chandan Sarangi, Vijay P. Kanawade (), Sachchida N. Tripathi (), Abin Thomas and Dilip Ganguly
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Chandan Sarangi: Indian Institute of Technology Kanpur
Vijay P. Kanawade: University of Hyderabad
Sachchida N. Tripathi: Indian Institute of Technology Kanpur
Abin Thomas: University of Hyderabad
Dilip Ganguly: Indian Institute of Technology Delhi

Nature Communications, 2018, vol. 9, issue 1, 1-9

Abstract: Abstract Measurements and models show that enhanced aerosol concentrations can modify macro- and micro-physical properties of clouds. Here, we examine the effect of aerosols on continental mesoscale convective cloud systems during the Indian summer monsoon and find that these aerosol–cloud interactions have a net cooling effect at the surface and the top-of-atmosphere. Long-term (2002–2016) satellite data provide evidence of aerosol-induced cloud invigoration effect (AIvE) during the Indian summer monsoon. The AIvE leads to enhanced formation of thicker stratiform anvil clouds at higher altitudes. These AIvE-induced stratiform anvil clouds are also relatively brighter because of the presence of smaller sized ice particles. As a result, AIvE-induced increase in shortwave cloud radiative forcing is much larger than longwave cloud radiative forcing leading to the intensified net cooling effect of clouds over the Indian summer monsoon region. Such aerosol-induced cooling could subsequently decrease the surface diurnal temperature range and have significant feedbacks on lower tropospheric turbulence in a warmer and polluted future scenario.

Date: 2018
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DOI: 10.1038/s41467-018-06015-5

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