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I
E. C. Pettit and Waddington, E. D., Ice flow at low deviatoric stress, Journal of Glaciology, vol. 49, pp. 359–369, 2003.
E. C. Pettit, Ice Flow at Low Deviatoric Stress: Siple Dome, West Antarctica, Glacier Science and Environmental Change, pp. 300–303, 2006.
J. M. Amundson, Fahnestock, M., Truffer, M., Brown, J., Lüthi, M. P., and Motyka, R. J., Ice mélange dynamics and implications for terminus stability, Jakobshavn Isbræ, Greenland, Journal of Geophysical Research, vol. 115, p. F01005, 2010.
S. OʼNeel, Larsen, C. F., Rupert, N., and Hansen, R., Iceberg calving as a primary source of regional-scale glacier-generated seismicity in the St. Elias Mountains, Alaska, Journal of Geophysical Research, vol. 115, p. F04034, 2010.
P. D. Neff, Steig, E. J., Clark, D. H., McConnell, J. R., Pettit, E. C., and Menounos, B., Ice-core net snow accumulation and seasonal snow chemistry at a temperate-glacier site: Mount Waddington, southwest British Columbia, Canada, Journal of Glaciology, vol. 58, pp. 1165–1175, 2012.
D. Peter, Steig, E. J., Clark, D. H., McConnell, J. R., and Erin, C., Ice-core net snow accumulation and seasonal snow chemistry at a temperate-glacier site: Mount Waddington, southwest British Columbia, Canada, Journal of Glaciology, vol. 58, p. 1165, 2012.
I. Joughin, Howat, I. M., Alley, R. B., Ekstrom, G., Fahnestock, M., Moon, T., Nettles, M., Truffer, M., and Tsai, V. C., Ice-front variation and tidewater behavior on Helheim and Kangerdlugssuaq Glaciers, Greenland, Journal of Geophysical Research, vol. 113, p. F01004, 2008.
I. Joughin, Howat, I., Alley, R. B., Ekstrom, G., Fahnestock, M., Moon, T., Nettles, M., Truffer, M., and Tsai, V. C., Ice-front variation and tidewater behavior on Helheim and Kangerdlugssuaq Glaciers, Greenland, Journal of Geophysical Research: Earth Surface, vol. 113, pp. 1–11, 2008.
R. A. Bindschadler, Nowicki, S., Abe-Ouchi, A., Aschwanden, A., Choi, H., Fastook, J., Granzow, G., Greve, R., Gutowski, G., Herzfeld, U., and others, Ice-sheet model sensitivities to environmental forcing and their use in projecting future sea-level (The SeaRISE Project), J. Glaciol, vol. 59, no. 214, pp. 195–224, 2013.
W. Harrison, Cox, L. H., Hock, R., March, R. S., and Pettit, E. C., Implications for the dynamic health of a glacier from comparison of conventional and reference-surface balances, Annals of Glaciology, vol. 50, pp. 25–30, 2009.
W. Colgan, Steffen, K., McLamb, W. Scott, Abdalati, W., Rajaram, H., Motyka, R. J., Phillips, T., and Anderson, R. S., An increase in crevasse extent, West Greenland: Hydrologic implications, Geophysical Research Letters, vol. 38, p. n/a–n/a, 2011.
E. C. Pettit, Whorton, E. N., Waddington, E. D., and Sletten, R. S., Influence of debris-rich basal ice on flow of a polar glacier, Journal of Glaciology, vol. 60, pp. 989–1006, 2014.
M. Habermann, Schweizer, J., and Jamieson, B., Influence of snowpack layering on human-triggered snow slab avalanche release, Cold Regions Science and Technology, vol. 54, no. 3, pp. 176-182, 2008. (640.2 KB)
S. Nowicki, Bindschadler, R. A., Abe-Ouchi, A., Aschwanden, A., Bueler, E., Choi, H., Fastook, J., Granzow, G., Greve, R., Gutowski, G., Herzfeld, U., Jackson, C., Johnson, J. V., Khroulev, C., Larour, E., Levermann, A., Lipscomb, W. H., Martin, M. A., Morlighem, M., Parizek, B. R., Pollard, D., Price, S. F., Ren, D., Rignot, E., Saito, F., Sato, T., Seddik, H., Seroussi, H., Takahashi, K., Walker, R., and Wang, W. Li, Insights into spatial sensitivities of ice mass response to environmental change from the SeaRISE ice sheet modeling project II: Greenland, J. Geophys. Res., vol. 118, pp. 1025–1044, 2013.
S. Nowicki, Bindschadler, R. A., Abe-Ouchi, A., Aschwanden, A., Bueler, E., Choi, H., Fastook, J., Granzow, G., Greve, R., Gutowski, G., Herzfeld, U., Jackson, C., Johnson, J. V., Khroulev, C., Larour, E., Levermann, A., Lipscomb, W. H., Martin, M. A., Morlighem, M., Parizek, B. R., Pollard, D., Price, S. F., Ren, D., Rignot, E., Saito, F., Sato, T., Seddik, H., Seroussi, H., Takahashi, K., Walker, R., and Wang, W. Li, Insights into spatial sensitivities of ice mass response to environmental change from the SeaRISE ice sheet modeling project I: Antarctica, J. Geophys. Res., vol. 118, pp. 1002–1024, 2013.
C. H. Reijmer and Hock, R., Internal accumulation on Storglaciaren, Sweden, in a multi-layer snow model coupled to a distributed energy-and mass-balance model, Journal of Glaciology, vol. 54, pp. 61–72, 2008.
S. Avdonin, Kozlov, V., Maxwell, D., and Truffer, M., Iterative methods for solving a nonlinear boundary inverse problem in glaciology, Journal of Inverse and Ill-posed Problems, vol. 17, pp. 239–258, 2009.
D. Maxwell, Truffer, M., Avdonin, S., and Stuefer, M., An iterative scheme for determining glacier velocities and stresses, Journal of Glaciology, vol. 54, pp. 888–898, 2008.
M
M. Nolan, Larsen, C. F., and Sturm, M., Mapping snow depth from manned aircraft on landscape scales at centimeter resolution using structure-from-motion photogrammetry, The Cryosphere, vol. 9, pp. 1445–1463, 2015.
C. Kienholz, Hock, R., Truffer, M., Bieniek, P., and Lader, R., Mass Balance Evolution of Black Rapids Glacier, Alaska, 1980–2100, and Its Implications for Surge Recurrence, Frontiers in Earth Science, vol. 5, p. 56, 2017.
A. J. Johnson, Larsen, C. F., Murphy, N., Arendt, A. A., and Zirnheld, S. Lee, Mass balance in the Glacier Bay area of Alaska, USA, and British Columbia, Canada, 1995–2011, using airborne laser altimetry, Journal of Glaciology, vol. 59, no. 216, pp. 632–648, 2013.
E. Rignot, Box, J. E., Burgess, E. W., and Hanna, E., Mass balance of the Greenland ice sheet from 1958 to 2007, Geophysical Research Letters, vol. 35, 2008.
E. Bueler and van Pelt, W., Mass-conserving subglacial hydrology in the Parallel Ice Sheet Model version 0.6, Geoscientific Model Development, vol. 8, pp. 1613–1635, 2015.
A. Aschwanden and Blatter, H., Mathematical modeling and numerical simulation of polythermal glaciers, J. Geophys. Res., vol. 114, pp. 1–10, 2009.
M. A. Zumberge, Elsberg, D. H., Harrison, W. D., Husmann, E., Morack, J. L., Pettit, E. C., and Waddington, E. D., Measurement of vertical strain and velocity at Siple Dome, Antarctica, with optical sensors, Journal of Glaciology, vol. 48, pp. 217–225, 2002.
B. Kamb, Engelhardt, H., Fahnestock, M. A., Humphrey, N., Meier, M., and Stone, D., Mechanical and hydrologic basis for the rapid motion of a large tidewater glacier: 2. Interpretation, Journal of Geophysical Research, vol. 99, p. 15231, 1994.
A. Aschwanden and Blatter, H., Meltwater production due to strain heating in Storglaciären, Sweden, J. Geophys. Res., vol. 110, 2005.
K. Konya, Hock, R., and Naruse, R., Meteorological observations and energy balance at Storglaciären, northern Sweden, IAH Publ, vol. 318, pp. 186-194, 2007.
D. Farinotti, Huss, M., Bauder, A., Funk, M., and Truffer, M., A method to estimate the ice volume and ice-thickness distribution of alpine glaciers, Journal of Glaciology, vol. 55, pp. 422–430, 2009.
F. A. Ziemen, Hock, R., Aschwanden, A., Khroulev, C., Kienholz, C., MELKONIAN, A. N. D. R. E. W., and ZHANG, J. I. N. G., Modeling the evolution of the Juneau Icefield between 1971 and 2100 using the Parallel Ice Sheet Model (PISM), Journal of Glaciology, vol. 62, pp. 199–214, 2016.
A. Roth, Hock, R., Schuler, T. V., Bieniek, P. A., Pelto, M., and Aschwanden, A., Modeling Winter Precipitation Over the Juneau Icefield, Alaska, Using a Linear Model of Orographic Precipitation, Frontiers in Earth Science, vol. 6, pp. 1–19, 2018.
I. S. Muresan, Khan, S. A., Aschwanden, A., Khroulev, C., Van Dam, T., Bamber, J., van den Broeke, M. R., Wouters, B., Munneke, P. Kuipers, and Kjær, K. H., Modelled glacier dynamics over the last quarter of a century at Jakobshavn Isbræ, The Cryosphere, vol. 10, pp. 597–611, 2016.
M. J. Sharp, Ananicheva, M., Arendt, A. A., Hagen, J. Ove, Hock, R., Josberger, E., Moore, R. D., Pfeffer, W. Tad, and Wolken, G. J., Mountain Glaciers and ice caps, Arctic Monitoring and Assessment Programme (AMAP), Oslo, Norway, xii, 2012.
R. Hock, de Woul, M., Radić, V., and Dyurgerov, M., Mountain glaciers and ice caps around Antarctica make a large sea-level rise contribution, Geophysical Research Letters, vol. 36, p. L07501, 2009.

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