PPT-The Southern Ocean Clouds, Radiation, Aerosol Transport Exp
Author : myesha-ticknor | Published Date : 2016-07-20
The SOCRATES Planning Team Greg McFarquhar mcfarqatmosuiucedu Roj Marchand Robert Wood Chris Bretherton Alain Protat Patricia Quinn Steven Siems
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The Southern Ocean Clouds, Radiation, Aerosol Transport Exp: Transcript
The SOCRATES Planning Team Greg McFarquhar mcfarqatmosuiucedu Roj Marchand Robert Wood Chris Bretherton Alain Protat Patricia Quinn Steven Siems Simon Alexander and Bob Weller. Rockefeller Jr Memorial PKWY Big Hole NB Cowpens NB Fort Donelson NB Fort Necessity NB Moores Creek NB Petersburg NB Stones River NB Tupelo NB Wilsons Creek NB Kennesaw Mountain NBP Richmond NBP Brices Cross Roads NBS Chickamauga and Chattanooga NMP RJ(!)exp(i!t) exp(~!) 1d!CBBy(t)=h^Bt^Byi=~ RJ(!)exp( i!t) 1 exp( ~!)d!IV.MARKOVIANCASEAtT 0thecorrelationscannotbecometime-localingeneral.If,however,therangeoftherelevant(coupled)partofthespectr Shortwave Climate Feedbacks . Jen Kay. University of Colorado at Boulder. Why Southern Ocean. Shortwave Feedbacks?. C. loud feedbacks . in idealized 2xCO. 2. . experiments. Gettelman. , Kay, and Shell . Eric Schulz, CAWCR, BoM. The Centre for Australian Weather and Climate Research. . A partnership between CSIRO and the Bureau of Meteorology. Motivation. The Southern Ocean is large (22% of world ocean) and is expected to play a significant role in the global climate system. Robert Wood Graham Feingold Dave Turner. Warm cloud responses to aerosols. Microphysical, structural, and dynamical properties of low, liquid-phase clouds show sensitivity to aerosol loading, . but. the responses are not uniform. eulerian. model WRF/. Chem. Paolo Tuccella, Gabriele Curci, . Suzanne. . Crumeyrolle. , Guido Visconti. Direct and . Indirect. aerosol . effects. Clean. Polluted. Direct . effect. Indirect. . effect. Chris Jones . Department of Applied Math. Advisor: Chris Bretherton. Departments of Applied Math and Atmospheric Sciences. VOCALS RF05, . 72W, . 20S. Overview. Introduction: Marine boundary layer (MBL) clouds and climate sensitivity. S. . Fadnavis, . K. . Semeniuk, . L. . Pozzoli, . M. G. . Schultz, . S. D. . Ghude, . S. . Das. ACP, 2013. CO2, CO, VOCs, BC, SO2,NOX …….. . CO2. CO. H2O. PAN. BC. CH4. OC. SO2. NOX. HCN. Emission: . Jón. Egill . Kristjánsson. (Univ. Oslo). Many thanks to: Alf . Kirkevåg. (. met.no. ), . Corinna. . Hoose. (Univ. Oslo), Leo Donner (GFDL). Problem Definition. Most GCMs give an aerosol indirect effect which is too high compared to results from residual calculations – . Urgent Research Needs. James . Hansen*. 17 October 2018. AGU-CAS Meeting on Atmospheric PM. 2.5. *. Director, Climate Science, Awareness & Solutions, Columbia University Earth Institute. Aerosol Effects (Outline). Robert C. Levy (NASA-GSFC). robert.c.levy@nasa.gov. Shana . Mattoo. , Leigh . Munchak. . and Richard . Kleidman. . (SSAI/GSFC). Lorraine Remer. . (UMBC/JCET), . Falguni. . Patadia. (MSU/GSFC), . GOES-R Algorithm Working Group Aerosol, Atmospheric Chemistry and Air Quality (AAA) Application Team. 1. Presentations. Suspended Matter/Aerosol Optical Depth Algorithm – . Istvan. Laszlo, STAR. Aerosol Detection Algorithm – . . Spring Quarter 2015. Logistics. Class . webpage. . Class meets 1:30-2:50 Mondays and Wednesdays in Room 406, ATG Building. Instructor: . Prof. . Robert . Wood . [ATG . 718, Phone . Recognizes outstanding contributions to aerosol science and technology through research, technical development, education, and service. 2020 Award Committee. Murray Johnston (Chair - AAAR) . Junji. Cao (CAAST).
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