Profesor IGF PAN
Zakład Hydrologii i Hydrodynamiki
Zainteresowania badawcze
- dynamika lodowców
- hydrologia zlewni polarnych
- lodowce wysokogórskie
- modelowanie bilansu masy lodowców

Projekty naukowe
- Kierownik projektu PRELUDIUM BIS finansowanego przez Narodowe Centrum Nauki „Modelowanie topnienia podpowierzchniowego w obszarach niebieskiego lodu lodowcowego” (2025 – 2029)
- Kierownik projektu FONDECYT REGULAR (ANID Chile) “Modelling snow and ice penitentes and their future impact on the water resources along the Andes” (2022-2025)
- Kierownik projektu FONDECYT INICIACION (CONICYT Chile) “Modelling feedbacks in ice dynamics in the Northern Patagonia Icefield” (2017-2020)
- Kierownik projektu Proyectos de Investigación Científica y Tecnológica Antártica (INACH Chile) “PARA-ICE: towards the better understanding of calving events” (2013-2014)
Członkostwo w komitetach naukowych i organizacjach międzynarodowych
- Przedstawiciel Polski w Physical Sciences Group SCAR
- Korespondent Narodowy w IASC
- Członek Komitetu Narodowego ds. Współpracy z Międzynarodową Unią Geodezji i Geofizyki PAN
- Członek Zespołu ds. współpracy z Scientific Committee on Antarctic Research (SCAR) Komitetu Badań Polarnych PAN
- Członek Remote Sensing Working Group w Svalbard Integrated Arctic Earth Observing System
Publikacje
- Farías-Barahona D., Braun M.H., Schaefer M., Sugiyama S., Rivera A., Casassa G., Peña-Santibañez V., Fürst J.J., Temme F., Tabone I., Aniya M., Arndt J.E., Aguayo R., Bertrand S., Blindow N., Bown F., Bravo C., Carrasco-Escaff T., Cáceres C., Davies B., Dussaillant I., Falaschi D., Fernández A., Gacitúa G., Giesecke R., Glasser N., Hata S., Huenante J., Irarrazaval I., Iribarren P., Izagirre E., Langhamer L., Loriaux T., Maldonado P., Malz P., Mendoza L., Mcdonnell M., Meier W.H., Millan R., Minowa M., Pętlicki M., Richter A., Ruiz L., Sauter T., Wilson R., 2025: QFuego-Patagonia: a comprehensive glacier-related dataset for Patagonia and Tierra del Fuego, South America. Journal of Glaciology, in press, doi.org/10.1017/jog.2025.10110
- Ayala Á., Robson B., Navarro G., Macdonell S., Kinnard C., Vivero S., Thomas D., Moreno F., Yáñez E., Schaffer N., Segovia A., Pȩtlicki M., Retamal F., Schauwecker S., Casassa G., 2025: Monitoring the physical processes driving the mass loss of Tapado Glacier, Dry Andes of Chile. Journal of Glaciology, 71, e52, doi.org/10.1017/jog.2025.24
- Błaszczyk M., Luks B., Pȩtlicki M., Puczko D., Ignatiuk D., Laska M., Jania J., Głowacki P., 2024: High temporal resolution records of the velocity of Hansbreen, a tidewater glacier in Svalbard. Earth System Science Data, 16(4), 1847 – 1860, doi.org/10.5194/essd-16-1847-2024
- Fürst J.J., Farías-Barahona D., Blindow N., Casassa G., Gacitúa G., Koppes M., Lodolo E., Millan R., Minowa M., Mouginot J., Pȩtlicki M., Rignot E., Rivera A., Skvarca P., Stuefer M., Sugiyama S., Uribe J., Zamora R., Braun M.H., Gillet-Chaulet F., Malz P., Meier W.J.H., Schaefer M., 2024: The foundations of the Patagonian icefields. Communications Earth and Environment, 16(4), 1847 – 1860, doi.org/10.1038/s43247-023-01193-7
- Dudek J., Pȩtlicki M., 2023: Unlocking archival maps of the Hornsund fjord area for monitoring glaciers of the Sørkapp Land peninsula, Svalbard. Earth System Science Data, 15(9), 1853 – 1872, doi.org/10.5194/essd-15-3869-2023
- Holmes F.A., Van Dongen E., Noormets R., Pȩtlicki M., Kirchner N., 2023: Impact of tides on calving patterns at Kronebreen, Svalbard – Insights from three-dimensional ice dynamical modelling. The Cryosphere, 17(5), 3117 – 3137, doi.org/10.5194/tc-17-1853-2023
- Podgórski J., Pętlicki M., Fernández A., Urrutia R., Kinnard C., 2023: Evaluating the impact of the Central Chile Mega Drought on debris cover, broadband albedo, and surface drainage system of a Dry Andes glacier. Science of the Total Environment, 905, 166907, doi.org/10.1016/j.scitotenv.2023.166907
- Laska M., Luks B., Kępski D., Gądek B., Głowacki P., Puczko D., Migała K., Nawrot A., Pętlicki M., 2022: Hansbreen Snowpit Dataset – over 30-year of detailed snow research on an Arctic glacier. Scientific Data, 9(1), 656, doi.org/10.1038/s41597-022-01767-8
- Podgórski J., Pętlicki M., 2020: Detailed lacustrine calving iceberg inventory from very high resolution optical imagery and object-based image analysis. Remote Sensing, 12(11), 1807, doi.org/10.3390/rs12111807
- Bown F., Rivera A., Pȩtlicki M., Bravo C., Oberreuter J., Moffat C., 2016: Recent ice dynamics and mass balance of Jorge Montt Glacier, Southern Patagonia Icefield. Journal of Glaciology, 65(253), 732 – 744, doi.org/10.1017/jog.2019.47
- Köhler A., Pȩtlicki M., Lefeuvre P.-M., Buscaino G., Nuth C., Weidle C., 2019: Contribution of calving to frontal ablation quantified from seismic and hydroacoustic observations calibrated with lidar volume measurements. The Cryosphere, 13(11), 3117 – 3137, doi.org/10.5194/tc-13-3117-2019
- Michielsen R.J., Ausems A.N.M.A., Jakubas D., Pętlicki M., Plenzler J., Shamoun-Baranes J., Jakubas K.W., 2019: Nest characteristics determine nest microclimate and affect breeding output in an Antarctic seabird, the Wilson’s storm-petrel. PLoS ONE, 14(6), e0217708, doi.org/10.1371/journal.pone.0217708
- Podgórski J., Kinnard C., Pętlicki M., Urrutia R., 2019: Performance Assessment of TanDEM-X DEM for Mountain Glacier Elevation Change Detection. Remote Sensing, 11(2), 187, doi.org/10.3390/rs11020187
- Pȩtlicki M., 2018: Subglacial topography of an icefall inferred from repeated terrestrial laser scanning. IEEE Geoscience and Remote Sensing Letters, 15(9), 8396278, doi.org/10.1109/LGRS.2018.2845342
- Podgórski J., Pętlicki M., Kinnard C., 2018: Revealing recent calving activity of a tidewater glacier with terrestrial LiDAR reflection intensity. Cold Regions Science and Technology, 151, 288 – 301, doi.org/10.1016/j.coldregions.2018.03.003
- Pȩtlicki M., Sziło J., MacDonell S., Vivero S., Bialik R.J.: Recent Deceleration of the Ice Elevation Change of Ecology Glacier (King George Island, Antarctica). Remote Sensing, 9(6), 520, doi.org/10.3390/rs9060520
- Nicholson L.I., Pȩtlicki M., Partan B., MacDonell S., 2016: 3-D surface properties of glacier penitentes over an ablation season, measured using a Microsoft Xbox Kinect. The Cryosphere, 10(5), 1897 – 1913, doi.org/10.5194/tc-10-1897-2016
- Pȩtlicki M., Kinnard C. 2016: Calving of Fuerza Aérea Glacier (Greenwich Island, Antarctica) observed with terrestrial laser scanning and continuous video monitoring. Journal of Glaciology, 62(235), 835 – 846, doi.org/10.1017/jog.2016.72
- Pȩtlicki M., Ciepły M., Jania J.A., Promińska A., Kinnard C., 2015: Calving of a tidewater glacier driven by melting at the waterline. Journal of Glaciology, 61(229), 851 – 863, doi.org/10.1017/jog.2016.72
- Lapazaran J., Pętlicki M., Navarro F., Machío F., Puczko D., Glowacki P., Nawrot A., 2013: Ice volume changes (1936-1990-2007) and ground-penetrating radar studies of Ariebreen, Hornsund, Spitsbergen. Polar Research, 32, 11068, doi.org/10.3402/polar.v32i0.11068
