Advances in Thermokarst Research

ABSTRACT The term thermokarst describes the processes and landforms that involve collapse of the land surface as a result of the melting of ground ice. We review the literature that has contributed to our understanding of patterns, processes and feedbacks, and the environmental consequences of therm...

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Bibliographic Details
Published in:Permafrost and Periglacial Processes
Main Authors: Kokelj, S. V., Jorgenson, M. T.
Other Authors: Cumulative Impact Monitoring Program of Aboriginal Affairs and Northern Development Canada and the National Science Foundation
Format: Article in Journal/Newspaper
Language:English
Published: Wiley 2013
Subjects:
Ice
Online Access:http://dx.doi.org/10.1002/ppp.1779
https://api.wiley.com/onlinelibrary/tdm/v1/articles/10.1002%2Fppp.1779
https://onlinelibrary.wiley.com/doi/pdf/10.1002/ppp.1779
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Summary:ABSTRACT The term thermokarst describes the processes and landforms that involve collapse of the land surface as a result of the melting of ground ice. We review the literature that has contributed to our understanding of patterns, processes and feedbacks, and the environmental consequences of thermokarst, focusing on hillslope, thaw lake and wetland processes. Advances in remote sensing techniques, and their application in a broad suite of change detection studies, indicate recent increases in the rates and magnitude of thermokarst including retrogressive thaw slumping, lake expansion and the transformation of frozen peatlands to collapsed wetlands. Field‐based studies and modelling have enhanced the knowledge of processes and feedbacks associated with warming permafrost, changes in talik geometry and accelerated thaw slump activity, and thaw lake expansion. Hydrological processes can strongly influence the rates of thaw lake and gully development, and the degradation of frozen peatlands. Field studies and calibrated modelling efforts that investigate the drivers of thermokarst and test conceptual ideas of landscape evolution will be critical to further advance the prediction of landscape and ecosystem change. Thermokarst research provides an important context for studying the environmental implications of permafrost degradation. Hillslope thermokarst can alter the water quality of lakes and streams with implications for aquatic ecosystems. Investigation of the interactions between thermokarst and hydrologic and ecological processes has improved knowledge of the feedbacks that accelerate change or lead to stabilisation in terrestrial and thaw lake environments. Finally, the influence of permafrost thaw on soil carbon dynamics will be an important focus of thermokarst research because of feedbacks with the global climate system. Copyright © Her Majesty the Queen in Right of Canada 2013.