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Reviewed scientific papers not funded by, but related to SVALI

Andreassen, L. M., B. Kjøllmoen, A. Rasmussen, K. Melvold and Ø. Nordli. Langfjordjøkelen, a rapidly shrinking glacier in northern Norway J. Glaciol., 58(209), 581–593, 2012. 

Atlaskin. E. and T. Vihma. Evaluation of NWP results for wintertime nocturnal boundary-layer temperatures over Europe and Finland. Q. J. R. Meteorol. Soc., 2012. doi:10.1002/qj.1885

Barletta, V. R., L. S. Sørensen and R. Forsberg. Variability of mass changes at basin scale for Greenland and Antarctica. The Cryosphere, 6, 3397–3446, 2012. doi:10.5194/tcd-6-3397-2012 

Beaudon, E., L. Arppe, U. Jonsell, T. Martma, M. Möller, V. A. Pohjola, D. Scherer, J. C. Moore. Spatial and temporal variability of net accumulation from shallow cores from Vestfonna ice cap (Nordaustlandet, Svalbard). Geogr. Ann. A, 93, 287–299, 2011. doi: 10.1111/j.1468-0459.2011.00439.x.

Beaudon, E., J. C. Moore, T. Martma, V. A. Pohjola, R. S. W. van de Wal and E. Isaksson. A 300 years environmental and climate archive for western Spitsbergen from Holtedahlfonna ice core. J.Glaciol., 2013. 

Boisvert, L. N., T. Markus, C.L. Parkinson and T. Vihma. Moisture fluxes derived from EOS aqua satellite data for the North Water Polynya over 2003–2009. J. Geophys. Res., 117, D06119, 2012. doi:10.1029/2011JD016949 

Braun, M., V. A. Pohjola, R. Pettersson, M. Möller, R. Finkelnburg, U. Falk, D. Scherer and C. Schneider. Changes of glacial front positions of Vestfonna (Nordaustlandet, Svalbard) Geogr. Ann. A, 93, 301–310, 2011. doi: 10.1111/j.1468-0459.2011.00437.x 

Callaghan, T. V., and 55 other (incl. V. A. Pohjola). Multi-decadal changes in tundra environments and ecosystems: synthesis of the International Polar Year – Back to the Future Project (IPY-BTF). Ambio, 40(6), 555–557, 2011. 

Citterio, M., D. van As, A. P. Ahlstrøm, M. L. Andersen, S. B. Andersen, J. E. Box, C. Charalampidis, W. T. Colgan, R. S. Fausto, S. Nielsen and M. Veicherts. Automatic weather stations for basic and applied glaciological research. Geol. Surv. Denmark Greenland Bull., 33, 69–72, 2015.

Cheng, B., M. Mäkynen, M. Similä, L. Rontu and T. Vihma. Modelling snow and ice thickness in the coastal Kara Sea, Russian ArcticAnn. Glaciol., 54(62) 2013, 2013. doi: 10.3189/2013AoG62A180 

Cheng, B., T. Vihma, L. Rontu, A. Kontu, H. K. Pour, C. Duguay, and J. Pulliainen. Evolution of snow and ice temperature, thickness and energy balance in Lake Orajärvi, northern Finland, submitted to Tellus. 

Chung, C. E., H. Cha, T. Vihma, and P. Räisänen. Validation of reanalyses in the Arctic: Vertical temperature structure. Atmos. Chem. Phys. Discuss., 13, 21927–21959, 2013. doi:10.5194/acpd-13-21927-2013.

Colgan, W., J. E. Box, R. S. Fausto, D. van As, V. R. Barletta and R. Forsberg. Surface albedo as a proxy for the mass balance of Greenland's terrestrial ice. Geol. Surv. Denmark Greenland Bull., 31, 91-94, 2014.

Divine, D., E. Isaksson, F. Godtliebsen, T. Martma, H. Meijer, J. C. Moore, V. A. Pohjola and R. S. W. van de Wal. Thousand years of winter surface air temperature variations in Svalbard and northern Norway reconstructed from ice core data. Pol.Res., 30, 73–79, 2011. doi: 10.3402/polar.v30i0.7379 

Divine, D., J. Sjolte, H. A. J. Meijer, R. S. W. van de Wal, T. Martma, V. A. Pohjola and F. Godtliebsen. Modeling the regional climate and isotopic composition of Svalbard precipitation using REMOiso model: a comparison with available GNIP and ice core data. Hydrological Processes, 25(24), 3748–3759, 2011. doi: 10.1002/hyp.8100. 

Doyle, S. H., A. L. Hubbard, C. F. Dow, G. A. Jones, A. Fitzpatrick, A. Gusmeroli, B. Kulessa, K. Lindback, R. Pettersson and J. E. Box. Ice tectonic deformation during the rapid in situ drainage of a supraglacial lake on the Greenland Ice Sheet. The Cryosphere, 7, 129-140, 2013. doi:10.5194/tc-7-129-2013

Dow, C. F., B. Kulessa, I. C. Rutt, V. C. Tsai, S. Pimentel, S. H. Doyle, D. van As, K. Lindbäck, R. Pettersson, G. A. Jones and A. Hubbard. Modeling of subglacial hydrological development following rapid supraglacial lake drainage. Journal of Geophysical Research. 

Drouet, A. S., D. Docquier, G. Durand, R. Hindmarsh, F. Pattyn, O. Gagliardini and T. Zwinger. Grounding line transient response in marine ice sheet models. The Cryosphere, 7, 395-406, 2013. doi:10.5194/tc-7-395-2013

Dunse, T., T. V. SchulerJ. O. Hagen and C. H. Reijmer. Seasonal speed-up of two outlet glaciers of Austfonna, Svalbard, inferred from continuous GPS measurements. The Cryosphere, 6, 453-466, 2012. doi:10.5194/tc-6-453-2012.

Fausto, R. S., D. van As and the PROMICE project team (incl. S. B. Andersen, A. P. Ahlstrøm, S. H. Larsen and H. Machguth). Ablation observations for 2008–2011 from the Programme for Monitoring of the Greenland Ice Sheet (PROMICE). Geol. Surv. Denmark Greenland Bull., 26, 73-76, 2012.

Fausto, R. S., D. van As, J. A. Antoft, J. E. Box, W. T. Colgan and the PROMICE project team (incl. S. B. Andersen, A. P. Ahlstrøm, C. Charalampidis, K. Haubner and S. H. Larsen). Greenland ice sheet melt area from MODIS (2000–2014), Geol. Surv. Denmark Greenland Bull., 33, 57-60, 2015.

Favier L., O. Gagliardini, G. Durand and T. Zwinger. A three-dimensional full Stokes model of the grounding line dynamics: effect of a pinning point beneath the ice shelf. The Cryosphere, 6, 101–112, 2012. doi:10.5194/tc-6-101-2012

Frey, H., H. Machguth, M. Huss, S. Bajracharya, T. Bolch, C. Huggel, A. Kulkarni, A. Linsbauer, N. Salzmann and M. Stoffel. Ice volume estimates for the Himalaya–Karakoram region: evaluating different methods. The Cryosphere Discuss., 7, 4813-4854, 2013. doi:10.5194/tcd-7-4813-2013

Gärtner-Roer, I., K. Naegeli, M. Huss, T. Knecht, H. Machguth and M. Zemp. A worldwide database of glacier thickness observations compiled by literature review and from open-access airborne data - assessment and application. Global and Planetary Change.

Gillet-Chaulet, F., O. Gagliardini, H. Seddik, M. Nodet, G. Durand, C. Ritz, T. Zwinger, R. Greve and D. G. Vaughan. Greenland ice sheet contribution to sea-level rise from a new-generation ice-sheet model. The Cryosphere, 6, 1561-1576, 2012. doi:10.5194/tc-6-1561-2012 

Gusmerioli, A., P. Jansson, R. Pettersson and T. Murray. Twenty years of cold surface layer thinning at Storglaciären, sub-Arctic Sweden, 1989-2009. J. Glaciol., 58(207), 3–10, 2012. 

Hawley, R. L., O. Brandt, T. Dunse, J. O. Hagen, V. Helm, J. Kohler, K. Langley, E. Malnes and K. A. Høgda. Using airborne Ku-band altimeter waveforms to investigate winter accumulation and glacier facies on Austfonna, Svalbard. Journal of Glaciology, 59 (217), 893-899, 2013.

Ingvander, S., C. Johansson, P. Jansson and R. Pettersson. Comparison of digital and manual methods of snow particle size estimation. Hyd. Res., 43(3), 192–202, 2012. 

Jakobson, E., T. Vihma, T. Palo, L. Jakobson, H. Keernik, and J. Jaagus. Validation of atmospheric reanalyzes over the central Arctic Ocean. Geophys. Res. Lett. 39, L10802, doi:10.1029/2012GL051591, 2012. 

Jakobson, L., T. Vihma, E. Jakobson, T. Palo, A. Männik, and J. Jaagus. Low-level jet characteristics over the Arctic Ocean in spring and summer. Atmos. Chem. Phys. Discuss., 13, 2125-2153, 2013. 

Johansson, C., V. A. Pohjola, C. Jonasson and T. V. Callaghan. Multi-decadal changes in snow characteristics in sub-Arctic Sweden. Ambio, 40(6), 566–574, 2011. 

Kääb, A., E. Berthier, C. Nuth, J. Gardelle  and Y. Arnaud. Contrasting patterns of early twenty-first-century glacier mass change in the Himalayas. Nature, 488, 495-498, 2012. 

Karvonen, J., B. Cheng, T. Vihma, M. Arkett and T. Carrieres. A method for sea ice thickness and concentration analysis based on SAR data and a thermodynamic model. The Cryosphere, 6, 1507-1526, 2012. doi:10.5194/tc-6-1507-2012. 

Kilpeläinen, T., T. Vihma, M. Manninen, A. Sjöblom, E. Jakobson, T. Palo and M. Maturilli. Modelling the vertical structure of the atmospheric boundary layer over Arctic fjords in Svalbard. Quart. J. Roy. Meteorol. Soc., 2012. doi:10.1002/qj.1914

Köhler, A., A. Chapuis, C. Nuth, J. Kohler and C. Weidle. Autonomous detection of calving related seismicity at Kronebreen, Svalbard. The Cryosphere, 6, 393-406, 2012. 

Kouznetsov, R., P. Tisler, T. Palo, and T. Vihma. An evidence of very shallow summertime katabatic ows in Dronning Maud Land, Antarctica. J. Appl. Meteorol. Climatol., 52, 164-168, 2013.

Lindbäck, K., R. Pettersson, S. H. Doyle, C. Helanow, P. Jansson, S. Savstrup Kristensen, L. Stenseng, R. Forsberg and A. L. Hubbard. High-resolution ice thickness and bed topography of a land-terminating section of the Greenland Ice Sheet. Earth Syst. Sci. Data Discuss., 7, 129-148, 2014. doi:10.5194/essdd-7-129-2014

Lindbäck, K. and R. Pettersson. Spectral roughness and glacial errosion of a land-terminating section of the Greenland Ice Sheet. Geomorphology, 238, 149-159, 2015. doi:10.1016/j.geomorph.2015.02.027    

Lindbäck, K., R. Pettersson, A. L. Hubbard, S. H. Doyle, D. van As, A. B. Mikkelsen and A. A. Fitzpatrick. Subglacial water drainage, storage, and piracy beneath the Greenland ice sheet, Geophys. Res. Lett., 42, 2015. doi:10.1002/2015GL065393

Machguth, H. Atmospheric science: Glaciers between two drivers. Nature Climate Change, 4, 2014.

Maksimovich, E., and T. Vihma. The effect of surface heat fluxes on interannual variability in the spring onset of snow melt in the central Arctic Ocean. J. Geophys. Res., 117, C07012, 2012. doi:10.1029/2011JC007220 

Moholdt, G., A. Mercer, C. Mayer, P. C. Joerg, P. Jansson, B. Hynek, A. Fischer, H. Escher-Vetter, H. Elvehy, L. M. Andreassen, T. Dunse, R. Greve, T. V. Schuler and J. O. Hagen. Permanent fast flow vs. cyclic surge behavior: numerical simulations of the Austfonna ice cap, Svalbard. Journal of Glaciology, 57 (202), 247-259, 2011. 

Möller, M., R. Finkelnburg, M. Braun, R. Hock, U. Jonsell, V. A. Pohjola, D. Scherer and C. Schneider. Climatic mass balance of the ice cap Vestfonna, Svalbard – a spatially distributed assessment using ERA‐Interim and MODIS data. J.Geogr.Res., 116, F03009, 2011. doi:10.1029/2010JF001905 

Nick, F. M., A. Vieli, M. L. Andersen, I. Joughin, A. J. Payne, T. L. Edwards, F. Pattyn and R. S. W. van de Wal. Future sea-level rise from Greenland's main outlet glaciers in a warming climate. Nature 497, 235-238, 2013.

Nield, G. A., V. R. Barletta, A. Bordoni, M. A. King, P. L. Whitehouse, P. J. Clarke, E. Domack, T. A. Scambos and E. Berthier. Rapid bedrock uplift in the Antarctic Peninsula explained by viscoelastic response to recent ice unloading. Earth and Planetary Science Letters 397, 32–41, 2014. doi:10.1016/j.epsl.2014.04.019 

Nilsson, E., E. Sahlée and A. Rutgersson. Turbulent momentum flux characterization using extended mulitresolution analysis. Q.J.R. Meteorol. Soc., 2013. 

Norman M., A. Rutgersson, L. S. Sørensen and E. Sahlée. Methods for Estimating Air-Sea fluxes of CO2 Using High-Frequency Measurements. Bound. Layer Met. 144:379–400, 2012. doi:10.1007/s10546-012-9730-9 

Nuth, C., T. V Schuler, J. Kohler, B. Altena and J. O. Hagen. Estimating the long term calving flux of Kronebreen, Svalbard, from geodetic elevation changes and mass balance modeling. Journal of Glaciology, 58(207), 119-133, 2012. 

Nygård, T., T. Valkonen, and T. Vihma. Characteristics of Arctic low-tropospheric humidity inversions based on radio soundings. Atmos. Chem. Phys. Discuss., 13, 22575-22605, 2013. doi:10.5194/acpd-13-22575-2013.

Paul, F., N. Barrand, S. Baumann, E. Berthier, T. Bolch, K. Casey, H. Frey, S. Joshi, V. Konovalov, R. Bris, N. Mlg, G. Nosenko, C. Nuth, A. Pope, A. Racoviteanu, P. Rastner, B. Raup, K. Scharrer, S. Steffen and S. Winsvold. On the accuracy of glacier outlines derived from remote sensing data. Annals of Glaciology, 54, 171-182, 2013. 

Rolstad Denby, C. and J. Hulth. Assessment of differentiated surface elevation data from 1949, 1975 and 2008 for estimates of ice-volume changes at Jan Mayen. J. Glaciol., 57(205), 976–980, 2011.

Schaefer, M., H. Machguth, M. Falvey, G. Casassa and E. Rignot. Quantifying mass balance processes on the Southern Patagonia Icefield. The Cryosphere Discuss., 8, 3117-3139, 2014. doi:10.5194/tcd-8-3117-2014

Seddik H., R. Greve, T. Zwinger, F. Gillet-Chaulet and O. Gagliardini. Simulations of the Greenland ice sheet 100 years into the future with the full Stokes model Elmer/Ice. J. Glaciol., 58(209), 427–440, 2012.

Sevestre, H. and D. I. Benn. Climatic and geometric controls on the global distribution of surge-type glaciers: implications for a unifying model of surging. J. Glaciol., 61(228), 646-662, 2015. doi:10.3189/2015JoG14J136

Sevestre, H., D. I. Benn, N. R. J. Hulton and K. Bælum. Thermal structureof Svalbard glaciers and implicationsfor thermal switch models of glaciersurging, J. Geophys. Res. Earth Surf. , 120,2220–2236, 2015. doi:10.1002/2015JF003517

Shannon, S. R., A. J. Payne, I. D. Bartholomew, M. R. van den Broeke, T. L. Edwards, X. Fettweis, O. Gagliardini, F. Gillet-Chaulet, H. Goelzer, M. J. Hoffman, P. Huybrechts, D. W. F. Mair, P. W. Nienow, M. Perego, S. F. Price, C. J. P. Paul Smeets, A. J. Sole, R. S. W. van de Wal, and T. Zwinger. Enhanced basal lubrication and the contribution of the Greenland ice sheet to future sea-level rise. PNAS, 2013. doi:10.1073/pnas.1212647110 

Sigurðsson, O., R. S. Jr. Williams and S. Vikingsson. Map of the glaciers of Iceland, 1:500000. Reykjavik, Icelandic Meteorological Office, 2013 (Publication related to SVALI tasks in Theme 1 but not funded by SVALI)

Sørensen. L. S., S. B. Simonsen, K. Nielsen, P. Lucas-Picher, G. Spada, G. Aðalgeirsdóttir, R. Forsberg and C. S. Hvidberg. Mass balance of the Greenland ice sheet (2003-2008) from ICESat data – the impact of interpolation, sampling and firn density. The Cryosphere, 5, 173–186, 2011. doi:10.5194/tc-5-173-2011 

Tastula, E.-M., T. Vihma, E. L. Andreas, and B. Galperin. Validation of the diurnal cycles in atmospheric reanalyses over Antarctic sea ice. J. Geophys. Res., 2013. doi: 10.1002/jgrd.50336. 

Tetzlaff, A., L. Kaleschke, C. Lüpkes, F. Ament and T. Vihma. The impact of  heterogeneous surface temperatures on the 2-m air temperature over the Arctic Ocean under clear skies in spring. The Cryosphere, 7, 153-166, 2013. doi:10.5194/tc-7-153-2013.

Thorsteinsson, T., T. Jóhannesson and Á. Snorrason. Glaciers and ice caps: Vulnerable water resources in a warming climate. Current Opinion in Environmental Sustainability, 5(6), 590–598, 2013. doi: 10.1016/j.cosust.2013.11.003

van As, D., R. S. Fausto, W. T. Colgan, J. E. Box and the PROMICE project team (incl. S. B. Andersen, A. P. Ahlstrøm, C. Charalampidis, S. H. Larsen and H. Machguth). Darkening of the Greenland ice sheet due to the melt albedo feedback observed at PROMICE weather stations. Geol. Surv. Denmark Greenland Bull., 28, 69-72, 2013.

van As, D., R. S. Fausto, K. Steffen and the PROMICE project team (incl. S. B. Andersen, A. P. Ahlstrøm, C. Charalampidis and S. H. Larsen). Katabatic winds and piteraq storms: observations from the Greenland ice sheet. Geol. Surv. Denmark Greenland Bull., 31, 83-86, 2014. 

van der Wel, L. G., H. J. Streurman, E. Isaksson, M. M. Helsen, R. S. W. van de Wal, T. Martma, V. A. Pohjola, J. C. Moore and H. A. J. Meijer. Using high resolution tritium profiles to quantify the effects of melt on two Spitsbergen ice cores. J. Glaciol., 57(206), 1087–1097, 2011. 

van Pelt, W. J. J., J. Oerlemans, C. H. Reijmer, V. A. Pohjola, R. Pettersson and J. H. van Angelen. Simulating melt, runoff and refreezing on Nordenskiöldbreen, Svalbard, using a coupled snow and energy balance model. The Cryosphere, 6(3), 641–659, 2012. doi:10.5194/tc-6-641-2012

Valkonen, T., T. Vihma, M. Johansson, and J. Launiainen. Atmosphere - sea ice interaction in early summer in the Antarctic: evaluation and challenges of a regional atmospheric model. Q.J.R. Meteorol. Soc., in press., 2013. 

Vihma, T., P. Tisler, and P. Uotila. Atmospheric forcing on the drift of Arctic sea ice in 1989–2009. Geophys. Res. Lett., 39, L02501, 2012. doi:10.1029/2011GL050118. 

Vihma, T. Effects of Arctic Sea Ice Decline on Weather and Climate. Submitted to Surv. Geophys. 

Zemp, M., E. Thibert, M. Huss, D. Stumm, C. Rolstad Denby, C. Nuth and S. U. Nussbaumer. Reanalysing glacier mass balance measurement series. The Cryosphere, 7, 1227-1245, 2013   


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