Bibliography
Found 80 results
Author Title Type [ Year
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“Classification of freshwater ice conditions on the Alaskan Arctic Coastal Plain using ground penetrating radar and TerraSAR-X satellite data”, International Journal of Remote Sensing, pp. 8253-8265, 2013.
, “Classification of freshwater ice conditions on the Alaskan Arctic Coastal Plain using ground penetrating radar and TerraSAR-X satellite data”, International Journal of Remote Sensing, pp. 8253 - 8265, 2013.
, “Expert assessment of potential permafrost carbon feedback to climate change”, Climatic Change, 2013.
, “Identification of unrecognized tundra fire events on the north slope of Alaska”, JGR Biogeosciences, vol. 118, pp. 1-11, 2013.
, “Impacts of disturbance on the terrestrial carbon budget of North America”, JGR Biogeosciences, vol. 118, pp. 303–316, 2013.
, “Recent lake ice-out phenology within and among lake districts of Alaska, U.S.A.”, Limnol. Oceanogr., vol. 58, pp. 2013-2028, 2013.
, , “Thermokarst Lakes, Drainage, and Drained Basins”, in Treatise on Geomorphology, 1stst ed., vol. 8, San Diego: Academic Press, 2013, pp. 325-353.
, “Cumulative geoecological effects of 62 years of infrastructure and climate change in ice-rich permafrost landscapes, Prudhoe Bay Oilfield, Alaska”, Global Change Biology, p. n/a-n/a, 2014.
, “A shift of thermokarst lakes from carbon sources to sinks during the Holocene epoch”, Nature, vol. advance online publication, p. -, 2014.
, “A shift of thermokarst lakes from carbon sources to sinks during the Holocene epoch”, Nature, vol. advance online publication, p. -, 2014.
, “Effect of soil property uncertainties on permafrost thaw projections: a calibration-constrained analysis”, The Cryosphere Discussions, vol. 9, no. 3, pp. 3351 - 3404, 2015.
, “A simplified, data-constrained approach to estimate the permafrost carbon–climate feedback”, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences, vol. 37323, GB2023263926116, G00M02261114, F020212512116, no. 2054, p. 20140423, 2015.
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“A decade of remotely sensed observations highlight complex processes linked to coastal permafrost bluff erosion in the Arctic”, Environmental Research Letters, vol. 13, no. 11, p. 115001, 2018.
, “Degrading permafrost puts Arctic infrastructure at risk by mid-century”, vol. 9, no. 1, p. 5147, 2018.
, “High temporal and spatial resolution satellite image observations for the past decade highlight complexities associated with permafrost coastal bluff erosion in the Arctic”, in 15th International Circumpolar Remote Sensing Symposium, 2018.
, “Modeling the role of preferential snow accumulation in through talik development and hillslope groundwater flow in a transitional permafrost landscape”, Environmental Research Letters, vol. 13, no. 10, p. 105006, 2018.
, “Modelling the impacts of projected sea ice decline on the low atmosphere and near-surface permafrost on the North Slope of Alaska”, International Journal of ClimatologyInternational Journal of ClimatologyInt J Climatol, vol. 38, no. 15, pp. 5491 - 5504, 2018.
, “Modelling the impacts of projected sea ice decline on the low atmosphere and near-surface permafrost on the North Slope of Alaska”, International Journal of ClimatologyInternational Journal of ClimatologyInt J Climatol, vol. 38, no. 15, pp. 5491 - 5504, 2018.
, “Circumpolar permafrost maps and geohazard indices for near-future infrastructure risk assessments”, vol. 6, no. 1, p. 190037, 2019.
, “Permafrost is warming at a global scale”, vol. 10, no. 1, p. 264, 2019.
, “Permafrost is warming at a global scale”, vol. 10, no. 1, p. 264, 2019.
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“Water balance response of permafrost-affected watersheds to changes in air temperatures”, Environmental Research Letters, vol. 16, no. 8, p. 084054, 2021.
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