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Scientific Cooperation: Supporting Circumpolar Permafrost Monitoring and Data Sharing

Troy J. Bouffard, Ekaterina Uryupova, Klaus Dodds, Vladimir E. Romanovsky, Alec P. Bennett and Dmitry Streletskiy
Additional contact information
Troy J. Bouffard: Center for Arctic Security and Resilience, University of Alaska Fairbanks, Fairbanks, AK 99775, USA
Ekaterina Uryupova: Association of Polar Early Career Scientists, Arctic Institute, IS-600 Akureyri, Iceland
Klaus Dodds: Department of Geography, Royal Holloway University of London, Egham TW20 0EX, UK
Vladimir E. Romanovsky: Geophysical Institute (Emeritus), University of Alaska Fairbanks, Fairbanks, AK 99775, USA
Alec P. Bennett: School of Management, University of Alaska Fairbanks, Fairbanks, AK 99775, USA
Dmitry Streletskiy: Department of Geography, George Washington University, Washington, DC 20052, USA

Land, 2021, vol. 10, issue 6, 1-17

Abstract: While the world continues to work toward an understanding and projections of climate change impacts, the Arctic increasingly becomes a critical component as a bellwether region. Scientific cooperation is a well-supported narrative and theme in general, but in reality, presents many challenges and counter-productive difficulties. Moreover, data sharing specifically represents one of the more critical cooperation requirements, as part of the “scientific method [which] allows for verification of results and extending research from prior results”. One of the important pieces of the climate change puzzle is permafrost. In general, observational data on permafrost characteristics are limited. Currently, most permafrost data remain fragmented and restricted to national authorities, including scientific institutes. The preponderance of permafrost data is not available openly—important datasets reside in various government or university labs, where they remain largely unknown or where access restrictions prevent effective use. Although highly authoritative, separate data efforts involving creation and management result in a very incomplete picture of the state of permafrost as well as what to possibly anticipate. While nations maintain excellent individual permafrost research programs, a lack of shared research—especially data—significantly reduces effectiveness of understanding permafrost overall. Different nations resource and employ various approaches to studying permafrost, including the growing complexity of scientific modeling. Some are more effective than others and some achieve different purposes than others. Whereas it is not possible for a nation to effectively conduct the variety of modeling and research needed to comprehensively understand impacts to permafrost, a global community can. In some ways, separate scientific communities are not necessarily concerned about sharing data—their work is secured. However, decision and policy makers, especially on the international stage, struggle to understand how best to anticipate and prepare for changes, and thus support for scientific recommendations during policy development. To date, there is a lack of research exploring the need to share circumpolar permafrost data. This article will explore the global data systems on permafrost, which remain sporadic, rarely updated, and with almost nothing about the subsea permafrost publicly available. The authors suggest that the global permafrost monitoring system should be real time (within technical and reasonable possibility), often updated and with open access to the data (general way of representing data required). Additionally, it will require robust co-ordination in terms of accessibility, funding, and protocols to avoid either duplication and/or information sharing. Following a brief background, this article will offer three supporting themes, (1) the current state of permafrost data, (2) rationale and methods to share data, and (3) implications for global and national interests.

Keywords: permafrost; permafrost monitoring; permafrost data; data sharing; national security (search for similar items in EconPapers)
JEL-codes: Q15 Q2 Q24 Q28 Q5 R14 R52 (search for similar items in EconPapers)
Date: 2021
References: View references in EconPapers View complete reference list from CitEc
Citations: View citations in EconPapers (1)

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