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eTown Meeting of the Arctic Science Community 17 March 2006

eTown Meeting of the Arctic Science Community 17 March 2006. Data and Modeling Strategies eTown Meeting Ad-Hoc ARCSS Committee Data and Modeling Working Group Charles J. V ö r ö smarty, Jennifer Francis, Marika Holland, Jonathan Overpeck, Mark Serreze, John Weatherly.

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eTown Meeting of the Arctic Science Community 17 March 2006

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  1. eTown Meeting of the Arctic Science Community 17 March 2006 Data and Modeling Strategies eTown MeetingAd-Hoc ARCSS Committee Data and Modeling Working GroupCharles J. Vörösmarty, Jennifer Francis, Marika Holland, Jonathan Overpeck, Mark Serreze, John Weatherly

  2. ARCSS Move Toward Synthesis NSF Arctic System Science Program reformulating around synthesis and integrative research Aim: improved understanding of the Arctic as a system and of its particular role in the larger Earth system. scientific hypotheses on the Arctic system's inner workings and ultimate state (e.g. Overpeck et al. 2005, Eos AGU Transactions) the knowledge demands of an increasingly urgent policy debate (e.g. ACIA, IPCC).

  3. Tradition of NSF Arctic Science History of ARCSS-funded research based largely on disciplinary study (i.e terrestrial ecosystems, ocean dynamics, ocean-atmosphere, and paleo-climatology, etc.) critical insights into the workings of major component processes broad array of scientific approaches and techniques, including process-level field experimentation, descriptive study, in situ and remote sensing monitoring, sophisticated time series and other statistical analyses, simulation modeling

  4. Some Impediments to Info Flow This scientific knowledge not necessarily translated into accessible data sets or smooth information flow among these studies Discipline-specific, project-specific models/data sets employ highly specialized structures, resolutions, time/space domains Data restrictions/data policy impedes full access (e.g. human/social science data sets) Arguably, the typical PI focuses on his/her science; community framework for wide data & model dissemination lacking

  5. The Consequence • Opportunities missed to see larger-scale patterns and emergent system properties……which is the essence of synthesis

  6. New Opportunities Building around Modeling and Data Major new observational and modeling initiatives: International Polar Year (IPY) International Conference on Arctic Research Planning (ICARP-II) SEARCH Coordinated Environmental Observational Program (CEOP) Global Environmental System of Systems (GEOSS) Unprecedented technical capabilities to create a coherent picture of the past, present, and future states of the pan-Arctic…. using data to force models orin assimilation schemes ARCSS could help catalyze and benefit immensely from a coordinated data synthesis strategy

  7. What modeling and data integration methods, approaches or activities will best contribute to synthesis and uncover new insights into the workings of the Arctic system? But before opening the dialogue……. some examples of pathways to synthesis

  8. “WELL-POPULATED” SET of COMPONENT STUDIES Cassano/Gutowski, Holland, Francis, Serreze Cassano/Gutowski, Holland, Francis, Serreze Karabanov, Lettenmaier, Peterson, Semiletov, Smith, Vörösmarty Hinzman/Cassano/ Gutowski, Lettenmaier, Liston, Semiletov, Yang, Zhang ? Hinzman Semiletov, Zhang Yu, Francis ? Falkner, Lee, Proshutinsky, Steele ?

  9. SYNERGY BETWEEN OBSERVATIONS AND MODELED OUTPUTS Poor Good SYSTEMIC UNDERSTANDING Coverage or Quality DEDUCTIVE PATH General to Specific INDUCTIVE PATH Specific to General Longitude Longitude 0° 60° 120° 180° 240° 300° 360° 0° 60° 120° 180° 240° 300° 360° Paleo Paleo 1900-50 1900-50 1950s 1950s Year 1960s 1960s 1970s 1970s 1980s 1980s 1990s 1990s Observations • Spatially/temporally patchy • Quality: High to Low • Challenging to explain in aggregate Modeled Outputs • Spatially/temporally contiguous • Physically-consistent but incomplete • Gap-filling

  10. Hydrological Variables Sensitive to Environmental Changes over N. Eurasia: Combined Annual Discharge 6 Largest Eurasian Arctic Rivers --- 7% increase over period of record Peterson et al. 2002,, Shiklomanov et al. 2006 Lammers et al. 2001, JGR-Atmospheres • Aggregate Trend Detectable for Arctic -Temporal character complex -Geography of D Complex • Linked to NAO and global T rise • 18-70% Increase in River Q to 2100

  11. Synthesis through Earth System Modeling CCSM-Polar WG Slide courtesy Marika Holland, NCAR

  12. FWI Budgeteers • Literature-based • Distillations of FWI outputs, dedicated to this task • New processing of data streams • The “account” is physically meaningful CHAIRS: Mark Serreze (Atmosphere), Richard Lammers (Land), Richard Moritz and Craig Lee (Ocean)

  13. Synthesis through Intercomparison Experiments Broad disparities among models(e.g. land surface hydrology)of some of the basic building blocks of the pan-Arctic system Ongoing experiments for ocean(AO-MIP),regional climate models(ARC-MIP) PILPS-2e (Lettenmaier et al.)

  14. Synthesis through Heuristic Workshops The 2003-04 ARCSS Arctic System Synthesis • An adaptive process - the participants guided both the goals and the process (and soon, the final products…)

  15. MOVING FORWARD: OUR QUESTION TO YOU…… What modeling and data integration methods, approaches or activities will best contribute to synthesis and uncover new insights into the workings of the Arctic system? - Workshops? Intercomparison projects? Community-based models? Community-based data set development? Reanalysis? Impact assessment? Arctic Analog for Earth System GRID?

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