S
Sathianeson Satheesh
Researcher at King Abdulaziz University
Publications - 178
Citations - 12255
Sathianeson Satheesh is an academic researcher from King Abdulaziz University. The author has contributed to research in topics: Aerosol & Radiative forcing. The author has an hindex of 53, co-authored 172 publications receiving 11099 citations. Previous affiliations of Sathianeson Satheesh include Vikram Sarabhai Space Centre & Scripps Institution of Oceanography.
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Book ChapterDOI
Clouds and Aerosols
Olivier Boucher,David A. Randall,Paulo Artaxo,Christopher S. Bretherton,Graham Feingold,Piers M. Forster,Veli-Matti Kerminen,Yutaka Kondo,Hong Liao,Ulrike Lohmann,Philip J. Rasch,Sathianeson Satheesh,Steven C. Sherwood,Bjorn Stevens,Xiaoye Zhang +14 more
Journal ArticleDOI
Indian Ocean Experiment: An integrated analysis of the climate forcing and effects of the great Indo-Asian haze
Veerabhadran Ramanathan,Paul J. Crutzen,Jos Lelieveld,Abhijit Mitra,Dietrich Althausen,Joshua T. Anderson,Meinrat O. Andreae,Will Cantrell,Glen R. Cass,Chul Eddy Chung,Antony D. Clarke,James A. Coakley,William D. Collins,William C. Conant,François Dulac,J. Heintzenberg,Andrew J. Heymsfield,Brent N. Holben,Steven G. Howell,James G. Hudson,Achuthan Jayaraman,Jeffrey T. Kiehl,T. N. Krishnamurti,Dan Lubin,Greg M. McFarquhar,T. Novakov,John A. Ogren,Igor A. Podgorny,Kimberly A. Prather,Keith Priestley,Joseph M. Prospero,Patricia K. Quinn,Kunjukrishnapillai Rajeev,Philip J. Rasch,S. Rupert,R. Sadourny,Sathianeson Satheesh,Glenn E. Shaw,Patrick J. Sheridan,Francisco P. J. Valero +39 more
TL;DR: The Indian Ocean Experiment (INDOEX) documented this Indo-Asian haze at scales ranging from individual particles to its contribution to the regional climate forcing as discussed by the authors, and integrated the multiplatform observations (satellites, aircraft, ships, surface stations, and balloons) with one-and four-dimensional models to derive the regional aerosol forcing resulting from the direct, the semidirect and the two indirect effects.
Journal ArticleDOI
Large differences in tropical aerosol forcing at the top of the atmosphere and Earth's surface
TL;DR: An observational method is presented for quantifying aerosol forcing to within ±5 per cent at the Earth's surface and the top of the atmosphere over the tropical northern Indian Ocean to imply that tropical aerosols might slow down the hydrological cycle.
Journal ArticleDOI
Radiative effects of natural aerosols: A review
TL;DR: In this paper, a review of the influence of anthropogenic aerosols on climate through both direct and indirect effects has been carried out to assess the impact of human-made aerosols (e.g., greenhouse gases) on climate.