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Kamal Kant Chandrakar
Kamal Kant Chandrakar
Project Scientist, National Center for Atmospheric Research
Verified email at mtu.edu
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Cited by
Year
Aerosol indirect effect from turbulence-induced broadening of cloud-droplet size distributions
KK Chandrakar, W Cantrell, K Chang, D Ciochetto, D Niedermeier, ...
Proceedings of the National Academy of Sciences 113 (50), 14243-14248, 2016
1392016
A laboratory facility to study gas–aerosol–cloud interactions in a turbulent environment: The Π chamber
K Chang, J Bench, M Brege, W Cantrell, K Chandrakar, D Ciochetto, ...
Bulletin of the American Meteorological Society 97 (12), 2343-2358, 2016
892016
Extensive soot compaction by cloud processing from laboratory and field observations
J Bhandari, S China, KK Chandrakar, G Kinney, W Cantrell, RA Shaw, ...
Scientific Reports 9 (1), 11824, 2019
562019
Influence of microphysical variability on stochastic condensation in a turbulent laboratory cloud
N Desai, KK Chandrakar, K Chang, W Cantrell, RA Shaw
Journal of the Atmospheric Sciences 75 (1), 189-201, 2018
472018
Aerosol removal and cloud collapse accelerated by supersaturation fluctuations in turbulence
KK Chandrakar, W Cantrell, D Ciochetto, S Karki, G Kinney, RA Shaw
Geophysical Research Letters 44 (9), 4359-4367, 2017
422017
Influence of turbulent fluctuations on cloud droplet size dispersion and aerosol indirect effects
KK Chandrakar, W Cantrell, RA Shaw
Journal of the atmospheric sciences 75 (9), 3191-3209, 2018
392018
Impact of entrainment mixing and turbulent fluctuations on droplet size distributions in a cumulus cloud: An investigation using Lagrangian microphysics with a subgrid-scale model
KK Chandrakar, WW Grabowski, H Morrison, GH Bryan
Journal of the Atmospheric Sciences 78 (9), 2983-3005, 2021
282021
Supersaturation fluctuations in moist turbulent Rayleigh–Bénard convection: A two-scalar transport problem
KK Chandrakar, W Cantrell, S Krueger, RA Shaw, S Wunsch
Journal of Fluid Mechanics 884, A19, 2020
262020
Influences of environmental relative humidity and horizontal scale of subcloud ascent on deep convective initiation
H Morrison, JM Peters, KK Chandrakar, SC Sherwood
Journal of the Atmospheric Sciences 79 (2), 337-359, 2022
252022
Observation of a link between energy dissipation rate and oscillation frequency of the large-scale circulation in dry and moist Rayleigh-Bénard turbulence
D Niedermeier, K Chang, W Cantrell, KK Chandrakar, D Ciochetto, ...
Physical Review Fluids 3 (8), 083501, 2018
252018
Droplet size distributions in turbulent clouds: Experimental evaluation of theoretical distributions
KK Chandrakar, I Saito, F Yang, W Cantrell, T Gotoh, RA Shaw
Quarterly Journal of the Royal Meteorological Society 146 (726), 483-504, 2020
232020
Aerosol‐mediated glaciation of mixed‐phase clouds: Steady‐state laboratory measurements
N Desai, KK Chandrakar, G Kinney, W Cantrell, RA Shaw
Geophysical Research Letters 46 (15), 9154-9162, 2019
222019
Dispersion aerosol indirect effect in turbulent clouds: Laboratory measurements of effective radius
KK Chandrakar, W Cantrell, AB Kostinski, RA Shaw
Geophysical research letters 45 (19), 10,738-10,745, 2018
192018
Extensive soot compaction by cloud processing from laboratory and field observations, Sci. Rep., 9, 11824
J Bhandari, S China, KK Chandrakar, G Kinney, W Cantrell, RA Shaw, ...
122019
Comparison of Lagrangian superdroplet and Eulerian double-moment spectral microphysics schemes in large-eddy simulations of an isolated cumulus congestus cloud
KK Chandrakar, H Morrison, WW Grabowski, GH Bryan
Journal of the Atmospheric Sciences 79 (7), 1887-1910, 2022
72022
Supersaturation variability from scalar mixing: Evaluation of a new subgrid-scale model using direct numerical simulations of turbulent Rayleigh–Bénard convection
KK Chandrakar, H Morrison, WW Grabowski, GH Bryan, RA Shaw
Journal of the Atmospheric Sciences 79 (4), 1191-1210, 2022
72022
Evolution of droplet size distributions during the transition of an ultraclean stratocumulus cloud system to open cell structure: An LES investigation using Lagrangian microphysics
KK Chandrakar, H Morrison, M Witte
Geophysical Research Letters 49 (17), e2022GL100511, 2022
52022
Observed and Bin Model Simulated Evolution of Drop Size Distributions in High‐Based Cumulus Congestus Over the United Arab Emirates
H Morrison, P Lawson, KK Chandrakar
Journal of Geophysical Research: Atmospheres 127 (3), e2021JD035711, 2022
42022
This article is licensed under a Creative Commons Attribution-NonCommercial 3.0 Unported Licence
J Bhandari, S China, KK Chandrakar, G Kinney, W Cantrell, RA Shaw, ...
MK Dubey, AC Aiken, RK Chakrabarty, H. Moosmüller, TB Onasch, RA Zaveri, BV …, 2019
22019
Data supporting the paper" Dispersion aerosol indirect effect in turbulent clouds: laboratory measurements of effective radius"
KK Chandrakar, W Cantrell, A Kostinski, RA Shaw
12018
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