veromanovsky
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“Burning trees in frozen soil: Simulating fire, vegetation, soil, and hydrology in the boreal forests of Alaska”, Ecological Modelling, vol. 481, p. 110367, 2023.
, “Detection of recent permafrost region disturbances across the Arctic and Subarctic with Landsat time-series and machine-learning classification”, in 15th International Circumpolar Remote Sensing Symposium, 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.
, “Scaling-up permafrost thermal measurements in western Alaska using an ecotype approach”, The Cryosphere, vol. 10, pp. 2517–2532, 2016. tc-10-2517-2016[1].pdf (5.48 MB)
, “Thermokarst rates intensify due to climate change and forest fragmentation in an Alaskan boreal forest lowland”, Global Change Biology, vol. 22, no. 2, pp. 816 - 829, 2016.
, “Active-Layer Soil Moisture Content Regional Variations in Alaska and Russia by Ground-Based and Satellite-Based Methods, 2002 through 2014”, International Journal of Geosciences, vol. 6, pp. 12-41, 2015.
, “Climate change and the permafrost carbon feedback”, Nature, vol. 520, no. 7546, pp. 171 - 179, 2015.
, “Effect of soil property uncertainties on permafrost thaw projections: a calibration-constrained analysis”, The Cryosphere Discussions, vol. 9, no. 3, pp. 3351 - 3404, 2015.
, “The Global Terrestrial Network for Permafrost Database: metadata statistics and prospective analysis on future permafrost temperature and active layer depth monitoring site distribution”, Earth System Science Data Discussions, vol. 8, no. 1, pp. 279 - 315, 2015.
, “Interactive effects of wildfire and climate on permafrost degradation in Alaskan lowland forests”, Journal of Geophysical Research: Biogeosciences, vol. 120, no. 8, pp. 1619 - 1637, 2015.
, “Isotopic identification of soil and permafrost nitrate sources in an Arctic tundra ecosystem”, Journal of Geophysical Research: Biogeosciences, vol. 120, no. 6, pp. 1000 - 1017, 2015.
, “Late Quaternary Permafrost Distributions Downscaled for South America: Examinations of GCM-based Maps with Observations”, Permafrost and Periglacial Processes, p. n/a - n/a, 2015.
, “The new database of the Global Terrestrial Network for Permafrost (GTN-P)”, Earth System Science Data, vol. 7, no. 2, pp. 245 - 259, 2015.
, “Polygonal tundra geomorphological change in response to warming alters future CO 2 and CH 4 flux on the Barrow Peninsula”, Global Change Biology, vol. 21, no. 4, pp. 1634 - 1651, 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.
, “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.
, “Distribution and changes of active layer thickness (ALT) and soil temperature (TTOP) in the source area of the Yellow River using the GIPL model”, SCIENCE CHINA Earth Sciences, vol. 57, pp. 1834-1845, 2014.
, “The effect of snow: How to better model ground surface temperatures”, Cold Regions Science and Technology, vol. 102, pp. 63 - 77, 2014.
, “Evaluation of LPM permafrost distribution in NE Asia reconstructed and downscaled from GCM simulations”, Boreas, vol. 43, pp. 733-749, 2014.
, “High-resolution permafrost modeling in Denali National Park and Preserve”, pp. 1 - 46, 2014.
, , “Expert assessment of potential permafrost carbon feedback to climate change”, Climatic Change, 2013.
, “Influence of the physical terrestrial Arctic in the eco-climate system”, Ecological Applications, vol. 23, pp. 1778-1797, 2013.
, “Quantifying landscape change in an arctic coastal lowland using repeat airborne LiDAR”, Environmental Research Letters, vol. 8, p. 045025, 2013.
, “Arctic RCM simulations of temperature and precipitation derived indices relevant to future frozen ground conditions”, Global and Planetary Change, vol. 80–81, pp. 136 - 148, 2012.
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