Publications

PEER-REVIEWED JOURNALS

1. Panda, S.K., Kholodov, A.L., Romanovsky, V.E., Hanson, T., Permafrost around Telida, Alaska: a modeling investigations. Climatic Change. (in preparation)

2. Payne, C., Panda, S.K., Prakash, A., 2018, Remote sensing of river erosion along the Colville, North Slope of Alaska. Remote Sensing (in review)

3. Panda, S.K., Romanovsky, V.E., Marchenko, S.S., and Swanson, D.K., 2017, The fate of permafrost. Alaska Park Science, 16(1): 39-46.

4. Jafarov, E.E., Parsekian, A.D., Schaefer, K., Liu, L., Chen, A., Panda, S.K., and Zhang, T., 2017. Estimating active layer thickness and volumetric water content from ground penetrating radar measurements in Barrow, Alaska. Geoscience Data Journal. DOI: 10.1002/gdj3.49

5. Nicolsky, D.J., Romanovsky, V.E., Panda, S.K., Marchenko, S.M., and Muskett, R.R., 2017, Applicability of the ecosystem type approach to model permafrost dynamics across the Alaska North Slope. Journal of Geophysical Research, 122(1): 50-75.

6. O’Donnell, J.A., Aiken, G.R., Swanson, D.K., Panda, S.K., Butler, K.D., and Baltensperger, A., 2016, DOM composition of Arctic rivers: linking permafrost and parent material to riverine carbon. Global Biogeochemical Cycles, 30(2): 1811-1826.

7. Chen, A., Parsekian, A., Schaefer, K., Jafarov, E., Panda, S.K., Liu, L., Zhang, T., and Zebker, H., 2016, Ground-penetrating radar measurements of active-layer thickness at landscape scale on the North Slope of Alaska. Geophysics, 81(2):h1-h11. [http://library.seg.org/doi/abs/10.1190/geo2015-0124.1]

8. Schaefer, K., Liu, L., Parsekian, A.D., Jafarov, E., Chen, A., Zhang, T., Gusmeroli, A., Panda, S.K., Zebker, H.A., and Schaefer, T., 2014, Remotely sensed active layer thickness (ReSALT) at Barrow, Alaska using Interferometric Synthetic Aperture Radar. Remote Sensing 7(4): 3735-3759.

9. Jafarov, E.E., Nicolsky, D.J., Romanovsky, V.E., Walsh, J.E., Panda, S.K., Serreze, M.C., 2014, The effect of snow: How to better model ground surface temperatures. Cold Region Science and Technology 102: 63-77.

10. Gray et al., 2013, Using integrated ecosystem modeling to understand climate change. National Park Service, Alaska Park Science Journal 12(2): 13-17.

11. Panda, S.K., Prakash, A., Jorgenson, M.T., and Solie D.N., 2012, Near-surface permafrost distribution mapping using logistic regression and remote sensing in Interior Alaska. GIScience and Remote Sensing, 49(3), 346-363.

12. Panda, S.K., Prakash, A., Solie, D.N., Romanovsky, V.E. and Jorgenson, M.T., 2010, Remote sensing and field-based mapping of permafrost distribution along the Alaska Highway corridor, Interior Alaska. Permafrost and Periglacial Processes, 21(3), 271-281.

13. Saraf, A.K., Rawat, V., Banerjee, P., Choudhury, S., Panda, S.K., Dasgupta, S. and Das, J.D., 2008, Satellite detection of earthquake thermal infrared precursors in Iran. Natural Hazards, 47, 119-135.

14. Saraf, A.K., Choudhury, S., Panda, S.K., Dasgupta, S. and Rawat, V., 2007, Does a major earthquake precede a thermal anomaly. International Journal of Geoinformatics, 3(3).

15. Panda, S.K., Choudhury, S., Saraf, A.K. and Das, J.D., 2007, MODIS land surface temperature data detects thermal anomaly preceding the 08 October 2005 Kashmir earthquake. International Journal of Remote Sensing, 28(20), 4587-4596.

16. Das, J.D., Saraf, A.K., and Panda, S.K., 2007, Satellite data on rapid analysis of Kashmir earthquake (October 2005) triggered landslide pattern and river water turbidity in and around epicentral region. International Journal of Remote Sensing, 28(8), 1835-1842.

17. Choudhury, S., Rajpal, H., Saraf, A.K. and Panda, S.K., 2007, Mapping and forecasting of north Indian winter fog: An application of spatial technologies. International Journal of Remote Sensing, 28(16), 3649-3663.

18. Choudhury, S., Saraf, A.K., and Panda, S.K., 2006, SSM/I Application in Studies of Thermal Anomalies Associated with Earthquakes. International Journal of Geoinformatics, 2(3), 9-16.

19. Choudhury, S., Dasgupta, S., Saraf, A.K., and Panda, S.K., 2006, Remote sensing observations of pre-earthquake thermal anomalies in Iran. International Journal of Remote Sensing, 27(20), 4381-4396.

REPORTS

1. Panda, S.K., Whitley, M.A., 2017, Sixty-five years of Colville River dynamics and its impact on present river navigability near Nuiqsut, North Slope of Alaska. Alaska EPSCoR Project Report, 19 p.

2. Panda, S.K., Romanovsky, V.E., Marchenko, S.S., 2016, High-resolution permafrost modeling in the Arctic Network National Parks, Preserves and Monuments. Natural Resource Technical Report NPS/ARCN/NRTR-2016/1366. National Park Service, Fort Collins, Colorado. [https://irma.nps.gov/DataStore/Reference/Profile/2237720]

3. Panda, S.K., Marchenko, S.S., Romanovsky, V.E., 2014, High-resolution permafrost modeling in Denali National Park and Preserve. Natural Resource Technical Report NPS/CAKN/NRTR-2014/858. National Park Service, Fort Collins, Colorado. [https://irma.nps.gov/App/Reference/Profile/2208990]

4. Panda, S.K., Marchenko, S.S., Romanovsky, V.E., 2014, High-resolution permafrost modeling in Wrangell-St. Elias National Park and Preserve. Natural Resource Technical Report NPS/CAKN/NRTR-2014/861. National Park Service, Fort Collins, Colorado. [https://irma.nps.gov/App/Reference/Profile/2209250]

PUBLISHED DATA AND PRODUCTS

1. Nicolsky, D.J., Romanovsky, V.E., Panda, S.K., Marchenko, S.M., and Muskett, R.R., 2018, Simulated Permafrost Dynamics and Thaw Subsidence across the Alaskan North Slope Region in the 20th and 21st Centuries. USGS CSC Archive. [In review]

2. Jafarov, E., A. Parsekian, K. Schaefer, L. Liu, A. Chen, S.K. Panda, and T. Zhang. 2016. Pre-ABoVE: Active Layer Thickness and Soil Water Content, Barrow, Alaska, 2013. ORNL DAAC, Oak Ridge, Tennessee, USA. http://dx.doi.org/10.3334/ORNLDAAC/1355

3. Chen, A., A. Parsekian, K. Schaefer, E. Jafarov, S.K. Panda, L. Liu, T. Zhang, and H.A. Zebker. 2015. Pre-ABoVE: Ground-penetrating Radar Measurements of ALT on the Alaska North Slope. Available on-line [http://daac.ornl.gov/cgi-bin/dsviewer.pl?ds_id=1265] from Oak Ridge National Laboratory Distributed Active Archive Center, Oak Ridge, Tennessee, USA. http://dx.doi.org/10.3334/ORNLDAAC/1265

4. Liu, L., K. Schaefer, A. Chen, A. Gusmeroli, E. Jafarov, S. Panda, A. Parsekian, T. Schaefer, H. A. Zebker, T. Zhang. 2015. Pre-ABoVE: Remotely Sensed Active Layer Thickness, Barrow, Alaska, 2006-2011. Data set. Available on-line [http://daac.ornl.gov] from Oak Ridge National Laboratory Distributed Active Archive Center, Oak Ridge, Tennessee, USA. http://dx.doi.org/10.3334/ORNLDAAC/1266

5. Liu, L., K. Schaefer, A. Chen, A. Gusmeroli, E. Jafarov, S. Panda, A. Parsekian, T. Schaefer, H. A. Zebker, T. Zhang. 2015. Pre-ABoVE: Remotely Sensed Active Layer Thickness, Prudhoe Bay, Alaska, 1992-2000. Data set. Available on-line [http://daac.ornl.gov] from Oak Ridge National Laboratory Distributed Active Archive Center, Oak Ridge, Tennessee, USA. http://dx.doi.org/10.3334/ORNLDAAC/1267