Scholarly Colloquia and Events

  • 4/13 ENVE Seminar- Dr. Eugenia Kalnay

                                                                                        Department of Civil and Environmental Engineering

                                                                                                    Environmental Engineering Program

                                                                                                      and the Eversource Energy Center

     

                                                                                                         Invite you to join us for the

    ENVIRONMENTAL ENGINEERING SPRING 2018 COLLOQUIUM SERIES

     

    Friday, April 13, 2018 • 12:15 PM

    F.L. Castleman, Room 212

     

    Seminars will be broadcasted LIVE at: https://uconnvtc.webex.com/join/EversourceEnergyCenter

     

     

     

    "Modeling Sustainability:

    Need to Couple Earth and Human System Models

     

    By

    Dr. Eugenia Kalnay

    Safa Motesharrei, Jorge Rivas

    University of Maryland

    Distinguished University Professor

    Dept. of Atmospheric and Oceanic Science

     

     

    Abstract:

    The Human System now dominates the Earth System, and since 1950 the population and GDP per capita have been both growing at about 2%/year, indicating that the total use of Earth resources is doubling every 20 years, a clearly unsustainable path. We point out that the IPCC Earth System models (and Integrated Assessment models) are not bi-directionally coupled with Human System. Without fully coupling the Earth and Human Systems it is not possible to model the positive and negative feedbacks and delays needed to represent climate change and sustainability, in the same way that without a fully coupled ocean-atmosphere model it is impossible to simulate El Niño, since it is the result of two-way feedbacks and delays between the ocean and the atmosphere. We describe a prototype of a fully coupled Earth System model, including government policies.

     

    A simple coupled Human and Nature Dynamical Model (HANDY) with Elites and Commoners allows performing “thought experiments”. They show that an egalitarian society can reach equilibrium with nature, whereas the presence of either large inequality or excessive use of natural resources both lead to societal collapse, as has happened with many civilizations in the last 5000 years. Introducing non-renewable resources into the HANDY model results in an explosive population growth similar to that observed since the use of fossil fuels triggered the Industrial Revolution in the 1800’s and the Green Revolution in the 1950’s. 

     

    References:

    Safa Motesharrei, Jorge Rivas, Eugenia Kalnay, 2014: Human and nature dynamics

    (HANDY): Modeling inequality and use of resources in the collapse or sustainability

    of societies. Ecological Economics, 101, 90-102.

    http://www.sciencedirect.com/science/article/pii/S0921800914000615

     

    S. Motesharrei and coauthors, 2016: Modeling Sustainability: Population, Inequality, Consumption and Bidirectional Coupling of the Earth and Human Systems. National Science Review:

    https://academic.oup.com/nsr/article-pdf/3/4/470/10871064/nww081.pdf

     

    Eugenia Kalnay Bio:

    Distinguished University Professor

    Prior to coming to UMD, Eugenia Kalnay was Branch Head at NASA Goddard, and later the Director of the Environmental Modeling Center (EMC) of the National Centers for Environmental Prediction (NCEP, formerly NMC), National Weather Service (NWS) from 1987 to 1997. During those ten years there were major improvements in the NWS models' forecast skill. Many successful projects such as the 60+years NCEP/NCAR Reanalysis (the paper on this Reanalysis has been cited over 10,000 times), seasonal and interannual dynamical predictions, the first operational ensemble forecasting, 3-D and 4-D variational data assimilation, advanced quality control, and coastal ocean forecasting. EMC became a pioneer in both the fundamental science and the practical applications of numerical weather prediction.

     

     

    Current research interests of Dr. Kalnay are in numerical weather prediction, data assimilation, predictability and ensemble forecasting, coupled ocean-atmosphere modeling and climate change and sustainability. Zoltan Toth and Eugenia Kalnay introduced the breeding method for ensemble forecasting. She is also the author of other widely used ensemble methods known as Lagged Averaged Forecasting and Scaled LAF. Her book, Atmospheric Modeling, Data Assimilation and Predictability (Cambridge University Press, 2003) sold out within a year, is now on its fifth printing and was published in Chinese (2005) and in Korean (2012). A second edition is in preparation. She has received numerous awards, including the 2009 IMO Prize of the World Meteorological Organization, and is a member of the UN Scientific Advisory Board (2013), the NOAA Scientific Advisory Board (2016) and other Scientific Boards

    For more information, contact: Tiffiny Thibodeau at tiffiny.thibodeau@uconn.edu