Arctic System Science (ARCSS) Program Synthesis Retreat 2004 (or retreat #2) Welcome and Introduction… (note the smiling faces near the end of retreat.

Slides:



Advertisements
Similar presentations
Division Of Early Warning And Assessment MODULE 11: ASSESSING THE FUTURE.
Advertisements

Chapter 4 Design Approaches and Methods
Global Warming and Climate Sensitivity Professor Dennis L. Hartmann Department of Atmospheric Sciences University of Washington Seattle, Washington.
Systems Engineering in a System of Systems Context
Assessment of Progress toward Achieving Long Term Performance Measure Climate Change Research Sub- Committee Eugene Bierly, Robert Dickinson, James Ehleringer,
Climatic changes in the last 200 years (Ch. 17 & 18) 1. Is it warming? --climate proxy info (recap) -- info from historical & instrumental records 2. What.
B1 -Biogeochemical ANL - Townhall V. Rao Kotamarthi.
Research problem, Purpose, question
Health Systems and the Cycle of Health System Reform
Vulnerability and Adaptation Assessments Hands-On Training Workshop
Synthesis of Ideas from MERGA Conference 2007 Participants in VP Development Session on National Curriculum Gaye Williams VP (Development) thanks all MERGA.
How does it all work? Synthesis of Arctic System Science Discover, clarify, and improve our understanding of linkages, interactions, and feedbacks among.
Martin Sommerkorn WWF International Arctic Programme.
Integration and Synthesis WORKSHOP : LESSONS FROM THE 2007 ICE MINIMUM Preface.
Changing Seasonality in the Arctic System ARCSS eTown Meeting: Changing Seasonality in the Arctic System eTown Meeting of the Arctic Science Community.
Lecture 4 Transport Network and Flows. Mobility, Space and Place Transport is the vector by which movement and mobility is facilitated. It represents.
Oluwakemi Izomo Hans-Peter Plag October 6, 2014 Trends or Transitions What does this mean for Sea Level The Challenge: Leaving the Holocene Anticipating.
October 24, 2012 G 610 – Climate of the Holocene Presenter: Erin Dunbar Assistant: Jesse Senzer.
Report on March Crystal City Workshop to Identify Grand Challenges in Climate Change Science By its cochair- Robert Dickinson For the 5 Sept
Identifying Grand Challenges in Climate Change Research: Guiding DOE’s Strategic Planning: Report on the DOE/BERAC workshop March Crystal City For.
IWRM as a Tool for Adaptation to Climate Change Dealing with uncertainties.
Principles, Practices and Dynamics of Research Management LECTURE-4 Research Design Kazi Nurmohammad Hossainul Haque Senior Lecturer, Civil Service College.
Knowledge for development under climate change Habiba Gitay World Bank Institute.
Modern Climate Change Darryn Waugh OES Summer Course, July 2015.
FAOCGIARWMO. How will Global Environmental Change affect the vulnerability of food systems in different regions? How might food systems be adapted to.
What is this and how does it link to the topic?. Natural Causes of Climate Change L.O. To be able to describe the natural causes of climate change and.
Integration Across Social and Natural Sciences: A Social Science Perspective Matt Berman EPSCoR All Hands Meeting May 2009.
Climate Change Problem Solving (AOSS 480 // NRE 480) Richard B. Rood Cell: Space Research Building (North Campus)
Components of the Global Climate Change Process IPCC AR4.
Global climate system - link together many of the topics on the basis of the most recent modeling for future trends Climate patterns - short-term time.
SEARCH Understanding Change Panel: Priority Needs and Implementation Status Matt Berman John Walsh Nov. 5, 2007 Charge to panel: Plan the data analysis,
Arctic Sea Ice – Now and in the Future. J. Stroeve National Snow and Ice Data Center (NSIDC), Cooperative Institute for Research in Environmental Sciences.
SC.912.E.7.2: Analyze the causes of the various kinds of surface and deep water motion within the oceans and their impacts on the transfer of energy between.
SEARCH Understanding Change: Priorities and Needs Matt Berman, John Walsh SEARCH Science Steering Committee Meeting, Arlington, VA 28 October 2008.
“Clean energy” boondoggle Climate is constantly changing CO2 is not the cause Warming is no threat Mandating “clean energy” would be foolish Cartoon says.
Critical thinking in interdisciplinary science using Katrina Catherine Gautier UC Santa Barbara.
CSD 5100 Introduction to Research Methods in CSD Where To Begin?? Selecting the Research Problem Identification of a topic Framing a research problem Research.
Overview of: ARCSS community science planning and ARCSS Committee direction and activities Jonathan Overpeck March 29, 2006 Seattle ARCSS Committee Meeting.
International Global Atmospheric Chemistry (IGAC) Integration and Synthesis Team (I&ST) Preparation notes for the first meeting of the I&S Team Toulouse.
Arctic Research Office May, 2002 Update on SEARCH from the Agency Perspective.
The Ocean-Climate Nexus: Key messages from the EMB 5 th Forum Jan Mees Chair, European Marine Board European Academy of Sciences Symposium Climate change.
1.Abrupt climate change 2.Greenhouse gases in the past 3.Climate change simulation Atlas Week 2008 Climate Change: How Physics Lays the Basis.
Prof. Gerbrand Komen (ex-) Director Climate Research KNMI 20 November 2008 KNGMG Conference Climate change facts - uncertainties - myths.
Willie Soon. Introduction 1. The relationship between atmospheric CO2 and CH4 concentrations, temperature, and ice-sheet volume 2. Atmospheric CO2 radiative.
Arctic System Science (ARCSS) Synthesis Retreat Big Sky MT August, 2003.
Arctic System Synthesis: Is the Arctic Headed Toward a New State? Jonathan Overpeck, ARCSS Committee*, ARCSS Synthesis retreat participants* * See abstract.
WIRING DIAGRAM APPROACH Wiring Diagram in Broader Synthesis Context Example from CHAMP Character/Advantages of Such an Exercise Key Principles and Themes.
Meetings Managers are people who do things right, while leaders are people who do the right thing. Warren Bennis, Ph.D. “On Becoming a Leader”
New Product Development Page 1 Teddy Concurrent Engineering by Teddy Sjafrizal.
Lecturers: Stefan Mulitza André Paul Michael Schulz Rüdiger Stein
This work is supported by a National Science Foundation (NSF) collaboration between the Directorates for Education and Human Resources (EHR) and Geociences.
Improving public involvement – examples of education and information frameworks Rachel Carless Coastal Literacy Officer, Coastnet.
ARCSS eTown Meeting Surface Dynamics Science Priorities Friday, 6 January 2006.
Key Evidence Needed for Informed Policy Formulation Understanding the relationship between biodiversity and ecosystem services Assessing the response of.
What are the key uncertainties? 1.The Common Causes and Remarkability of Recent Changes in the Arctic System 2.The Nature and Importance of Threshold Events,
Next Generation Climate Related Standards (2013) K Middle School High School K-PS3-1. Make observations to determine the effect of sunlight on Earth’s.
Representing Simple, Complicated and Complex Aspects in Logic Models for Evaluation Quality Presentation to the American Evaluation Association conference,
Consultation feedback so far on Research Strategy SC Diversitas BioSUSTAINABILITY, ecoSERVICES, bioGENESIS, bioDISCOVERY, ecoHEALH, GMBA, freshwaterBIODIVERSITY.
Ocean Carbon and Biogeochemistry Scoping Workshop on Terrestrial and Coastal Carbon Fluxes and Exchanges in the Gulf of Mexico May 6-8, 2008 St. Petersburg,
Seasonal-to-Decadal Predictions of Arctic Sea Ice: Challenges and Strategies Sponsors: NASA, ONR, Intelligence Community Report available: October 30,
THE SCIENTIFIC METHOD IN THE HISTORY CLASSROOM AND OTHER THEORETICAL APPROACHES.
Craig Nicolson, UMass-Amherst
Programme Board 6th Meeting May 2017 Craig Larlee
Irreversible climate change due to carbon dioxide emissions
Overview of working draft v. 29 January 2018
Modeling the Atmos.-Ocean System
Arctic System Synthesis: Is the Arctic Headed Toward a New State?
Nutrient Cycles in Nature Ch. 3-3
Second Arctic System Science All-Hands Meeting
ARCSS All Hands Workshop
Presentation transcript:

Arctic System Science (ARCSS) Program Synthesis Retreat 2004 (or retreat #2) Welcome and Introduction… (note the smiling faces near the end of retreat #1)

Arctic System Science (ARCSS) Program Synthesis Retreat Lake Tahoe Overview of Presentation Welcome and thanks for your time First (and LAST!) mention of programmatic framework A little on “synthesis” versus “analysis” Overview of first (Big Sky) retreat Intro to second (Lake Tahoe) retreat - starting point - participant-driven agenda - outcomes, goals & products - relaxed or family-friendly context

Arctic System Science (ARCSS) Program Synthesis Retreat Lake Tahoe Welcome and thanks This introduction on behalf of the organizing committee/team: ARCSS Committee, Dan Ferguson, Julia McCarthy and Helen Wiggins (with special thanks to Marika, Craig, Dan and Julia)

Arctic System Science (ARCSS) Program Primary Overarching Goals to understand the physical, geological, chemical, biological, and social processes of the arctic system that interact with the total Earth system and thus contribute to or are influenced by global change, in order… to advance the scientific basis for predicting environmental change on a seasonal-to centuries time scale, and for formulating policy options in response to the anticipated impacts of global changes on human beings and societal support systems.

Arctic System Science (ARCSS) Program The first 15 years… LAII, ATLAS OAII, SHEBA, SBI GISP2, PALE, PARCS HARC, RAISE, CHAMP PACTS, LSI, SNACS SIMS Sub-system focused initiatives -- observation,process study,modeling, some synthesis

Arctic System Science (ARCSS) Program The first 15 years… LAII, ATLAS OAII, SHEBA, SBI GISP2, PALE, PARCS HARC, RAISE, CHAMP PACTS, LSI, SNACS SIMS - Synthesis, Integration, and Modeling Studies consider the interaction of the Arctic with the global system, span two or more of the ARCSS components, synthesis ARCSS data with results from other large global change programs Bring together (e.g., model) elements of different disciplines

Arctic System Science (ARCSS) Program The NEXT X years… An ARCSS Program that emphasizes the Arctic System and its roles in the global system continued focus on critical sub-system understanding (i.e., a proven ARCSS capability) but with stronger complementary focus on the system (including humans) as an interacting whole… … integrated synthesis and analysis

Arctic System Science (ARCSS) Program The NEXT X years… And, hence, the experiments in ARCSS synthesis summer retreats (Big Sky in 2003, and Lake Tahoe in 2004) future ARCSS AO’s

Arctic System Science (ARCSS) Program The NEXT X years… And, hence, the experiments in ARCSS synthesis summer retreats (Big Sky in 2003, and Lake Tahoe in 2004) future ARCSS AO’s BUT DON’T FORGET - primary goal is not just to learn about how we do system science, but (more importantly) to learn about how the arctic system works (and will work).

Arctic System Science (ARCSS) Program Synthesis Retreat Lake Tahoe RULE #1 No more discussion, mention, etc. of programmatic issues (hooray!)

Arctic System Science (ARCSS) Program Synthesis Retreat Lake Tahoe A little on “synthesis” versus “analysis”

Arctic System Science (ARCSS) Program Synthesis Retreat Lake Tahoe A little on “synthesis” versus “analysis” Tom Ritchey, based on a study by Bernhard Riemann: “Analysis and synthesis, as scientific methods, always go hand in hand; they complement one another. Every synthesis is built upon the results of a preceding analysis, and every analysis requires a subsequent synthesis in order to verify and correct its results.” “There are, however, important situations in which one method can be regarded as more suitable than the other.”

Arctic System Science (ARCSS) Program Synthesis Retreat Lake Tahoe A little on “synthesis” versus “analysis” And next on the agenda, everyone will provide some of their own insight into the issue of synthesis. “In the context of this Arctic system workshop, scientific synthesis means…”

Arctic System Science (ARCSS) Program Synthesis Retreat Lake Tahoe A little on “synthesis” versus “analysis” And next on the agenda, everyone will provide some of their own insight into the issue of synthesis. “In the context of this Arctic system workshop, scientific synthesis means…” but first, a Big Sky perspective…

synthesis noun (plural: -ses) 1 the process of combining objects or ideas into a complex whole Compare: analysis 2 the combination or whole produced by such a process Source: The Collins English Dictionary © 2000 HarperCollins Publishers: The Big Sky Starting Point “known” causes (Ritchey/Riemann)

analysis noun (plural: -ses) 1 the division of a physical or abstract whole into its constituent parts to examine or determine their relationship or value Compare: synthesis [1] 2 a statement of the results of this … 7 (Philosophy) (in the writings of Kant) the separation of a concept from another that contains it Compare: synthesis [6a] Source: The Collins English Dictionary © 2000 HarperCollins Publishers: The Big Sky Starting Point

The meaning of synthesis The Concise Oxford Dictionary definition of 'synthesis' is "the process or result of building up separate elements, especially ideas, into a connected whole, especially into a theory or system" The definition is straightforward but the interpretation of the process can vary considerably. Source: The Big Sky Starting Point

Synthesis: The scientific method, of which synthesis is part, increases understanding about Nature and does so through successive approximation. The purpose of synthesis is to reduce diverse parts of a project or experiment into a coherent simplified statement for practical application and to set the stage for the next hypothesis and experiment. Source: Patrick Webber, March 1997 ARCSS Workshop (colors and italics, J. Overpeck) The Big Sky Starting Point

Synthesis: continued… Synthesis is not the listing of data or research achievements; it is the abstraction of the best understanding of the fundamental characteristics, dynamics and controlling principles of the system. It is the critical last step before the design of the next experiment. Source: Patrick Webber, March 1997 ARCSS Workshop (colors and italics, J. Overpeck) The Big Sky Starting Point

Synthesis: “It is the abstraction of the best understanding - through the combining of ideas from disparate elements to gain new insight. It is that NEW INSIGHT - the “AHA syndrome” that is essential in my mind. That is what makes the whole more than the sum of the parts. …you only achieve that new insight by asking questions you cannot answer with the understanding you currently have.” Source: Neil Swanberg, July 2003 (colors and italics, J. Overpeck) The Big Sky Starting Point

Arctic System Science (ARCSS) Program Synthesis Retreat Lake Tahoe Overview of first (Big Sky) retreat

Arctic System Science (ARCSS) Program Synthesis Retreat Lake Tahoe Overview of first (Big Sky) retreat The synthesis was designed to be non-programmatic, and is viewed as an experiment to: 1)determine the value of synthesis to arctic environmental science 2)begin uncovering the best way to carry out arctic system synthesis 3)identify key arctic system unknowns 4) learn something new about how the arctic system works, and what it means for the future The “Ah ha“ factor

The ARCSS Arctic System Synthesis An adaptive process - the participants guided both the goals and the process (and soon, the final products…)

The ARCSS Arctic System Synthesis An adaptive process - the participants guided both the goals and the process (and soon, the final products…) Quickly converged on the value of “the big question,” which focused several days of plenary and breakout group discussions… “Is the Arctic System moving to a new state outside the envelop of the natural glacial-interglacial cycle?”

Includes the biosphere and humans too! Cartoon drafted by E. Carmack

Sea ice (5-3) P-E (6-2) Population (0-3) Econ. Product. (1-4) Marine Primary Prod. (1-2) THC (3-3) Permafrost (2-3) Terrest. ice (3-2) Terrest. Biomass (2-3) (in – out) weak strong The Arctic System today

P-E (6-2) Population (0-3) Econ. Product. (1-4) Marine Primary Prod. (1-2) THC (3-3) Terrest. Biomass (2-3) (in – out) weak strong The Arctic System… in a few centuries??? Atmospheric Carbon Sea Level Rise

Arctic System Synthesis… the Ah ha’s arctic IS likely being driven to a new seasonally ice- free state current patterns of system change are likely a sign of things to come feedbacks generally positive in Arctic; cloud feedback are not likely to prevent state change These guys just didn’t wait long enough…

Arctic System Synthesis… the Ah ha’s arctic IS likely being driven to a new seasonally ice- free state current patterns of system change are likely a sign of things to come feedbacks generally positive in Arctic; cloud feedback are not likely to prevent state change must therefore look outside arctic for possible thermostats - e.g., decreased poleward heat transport by atmosphere and/or oceans

Arctic System Synthesis… the Ah ha’s arctic IS likely being driven to a new seasonally ice- free state current patterns of system change are likely a sign of things to come feedbacks generally positive in Arctic; cloud feedback are not likely to prevent state change must therefore look outside arctic for possible thermostats - e.g., decreased poleward heat transport by atmosphere and/or oceans change likely to accelerate across poorly understood thresholds

Simulated summer surface air temperature anomalies - 130ka versus the future AD 2100AD ka (Overpeck, Otto-Bleisner, Kiehl and Miller (in prep.)

Sea level Rise Time Period (cm/year)Source Next 100 to 1000 yrs. 0.1 to 0.8IPCC (model simulations) many models (0.1 to 0.8 m per century) Last Deglaciation 13,000 to 7000 yr B.P. Up to 1.1Bard et al., 1996 (observations) (1+ m per century) coral dating Penultimate Deglaciation 2.0 to 5.0 Esat et al., 1999 Ca. 130,000 yr B.P. (2 to 5m per century) McCulloch & Esat, 2000 (observations) + thermal expansion coral dating (1990’s observed = 0.25) Can sea level rise faster than previously estimated? (Overpeck et al., in prep.)

Zwally et al., (2002) Science Parizek and Alley (2004) QSR New mechanisms for increased ice sheet sensitivity to surface warming

 Northern lives/lifestyles/culture  Costs to both existing and future infrastructure  Biodiversity  Global climate change - possibly abrupt  Release of stored carbon to atmosphere  Sea level rise - possibly abrupt  Lack of predictability for all stakeholders Arctic System Synthesis… selected impacts Arctic Global

“Our analysis of current trends, models, and feedback mechanisms leads us to state--with 80/20 confidence--that the arctic system is moving toward a new state outside known cycles, and that this change will impact the Earth system” Arctic System Synthesis - conclusion Despite fact that much remains to be done

Arctic System Science (ARCSS) Program Synthesis Retreat Lake Tahoe Intro to second (Lake Tahoe) retreat

Arctic System Science (ARCSS) Program Synthesis Retreat Lake Tahoe Intro to second (Lake Tahoe) retreat With more of a starting point than Big Sky, but still intended to be participant-driven. Starting questions: “How realistic is the Big Sky conceptual model of a two-state (modern and future seasonally ice free) arctic system, and how well do we understand the mechanisms of possible state change?”

Arctic System Science (ARCSS) Program Synthesis Retreat Lake Tahoe Intro to second (Lake Tahoe) retreat With more of a starting point than Big Sky, but still intended to be participant-driven. Starting questions: “How realistic is the Big Sky conceptual model of a two-state (modern and future seasonally ice free) arctic system, and how well do we understand the mechanisms of possible state change?” - what will trajectory look like? " - what are the likely thresholds? - any potential surprises? - any way to slow or stop state change? - is there a point of no return? changes irreversible? “sub-questions”

Arctic System Science (ARCSS) Program Synthesis Retreat Lake Tahoe Intro to second (Lake Tahoe) retreat With more of a starting point than Big Sky, but still intended to be participant-driven. Starting questions: “How realistic is the Big Sky conceptual model of a two-state (modern and future seasonally ice free) arctic system, and how well do we understand the mechanisms of possible state change?” … and how well are these key processes represented in state- of-the-art predictive models?

Arctic System Science (ARCSS) Program Synthesis Retreat Lake Tahoe Intro to second (Lake Tahoe) retreat Starting recommendation: Can we guide our process-focus on the basis of what might be most important to society (i.e., by possible impacts of arctic system change)? Rapid sea level rise Abrupt change to THC Accelerated release of carbon to atmosphere Opening of Arctic sea transport route Dramatic changes in high latitude fisheries Imperiled cultural integrity Threats to biodiversity Frozen-ground transformations Sea level +6 meters

Arctic System Science (ARCSS) Program Synthesis Retreat Lake Tahoe Intro to second (Lake Tahoe) retreat With more of a starting point than Big Sky, but still intended to be participant-driven. Outcomes, goals and products (group discussion in afternoon): want to focus more on outcomes, goals & products at onset (with realization that we might adapt as the week progresses) build on, and/or complement, the Big Sky paper ideas? - paper focused on realism (or advance) of conceptual model from perspective of earth system models (e.g., AOGCMs) - issue papers (e.g., focused on sub-questions; humans as part of system) - focus on role of the arctic in likely impacts - need to identify writing team(s) early

Arctic System Science (ARCSS) Program Synthesis Retreat 2004 (or retreat #2) And don’t forget - our objective is to have fun too! (reminder to discuss logistics - including interest in wine/desert)