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Napovedovanje debeljenja in taljenja snega s Triglavskega ledenika : magistrsko delo št.: 159/II. GIG
ID Cestnik, Maruša (Author), ID Triglav Čekada, Mihaela (Mentor) More about this mentor... This link opens in a new window, ID Mangafić, Alen (Comentor)

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Abstract
Masna bilanca ledenika predstavlja povezavo med podnebjem in dinamiko ledenika. Pove nam, za koliko se je spremenila masa posameznega dela ledenika v izbranem časovnem obdobju. Za določanje masne bilance obstaja več metod. Triglavski ledenik z najrazličnejšimi geodetskimi metodami spremljamo od leta 1946. Na podlagi rezultatov geodetskih meritev ledenika in pridobljenih meteoroloških podatkov lahko izračunamo masno bilanco. Ta nam omogoča preučevanje spreminjanja debeline ledenika tudi v času, ko meritve niso bile izvedene. Najprej smo, glede na meritve v letih 2011 in 2012, izračunali empirična koeficienta masne bilance DDF in D(x,y). Na podlagi teh dveh koeficientov smo računali spremembe v debelini ledenika, glede na meritve iz septembra 2012, ko je bil ledenik najmanjši in najtanjši. V letih 2010–2016 so bile spremembe v debelini med 1 m in 3 m. V letih 2016–2020 so bile spremembe v debelini ledenika med 1,5 m in 3 m, s precej območji z negativnimi razlikami v debelini. Rezultate smo primerjali z izmerjenimi površinami ledenika in ugotovili, da se ob večanju debeline veča površina in obratno. Na koncu smo za vsa obravnavana leta izračunali povprečno specifično masno bilanco. V celotnem preučevanem obdobju med leti 2010 in 2020 smo izračunali najvišjo masno bilanco za ledeniško leto 2013 z 1,64 m v.e./leto, najnižja pa je bila leta 2015 z –2,68 m v.e./leto.

Language:Slovenian
Keywords:geodezija, magistrska dela, GIG, Triglavski ledenik, masna bilanca, geodetske meritve, spremembe debeline ledenika, Slovenija
Work type:Master's thesis/paper
Typology:2.09 - Master's Thesis
Organization:FGG - Faculty of Civil and Geodetic Engineering
Place of publishing:Ljubljana
Publisher:[M. Cestnik]
Year:2023
Number of pages:XII, 51 str., 6 str. pril.
PID:20.500.12556/RUL-144017-1b1a1cbb-d995-e5c1-efc8-c29b43f21e7c This link opens in a new window
UDC:528:551.324(234.323.6Triglav)(043.3)
COBISS.SI-ID:139547651 This link opens in a new window
Publication date in RUL:26.01.2023
Views:1423
Downloads:112
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Secondary language

Language:English
Title:Predicting thickening and melting of snow on the Triglav glacier : master thesis no.: 159/II. GIG
Abstract:
The mass balance of a glacier represents the link between climate and glacier dynamics. It tells us how much the mass of a part of the glacier has changed in the selected period. There are several methods for determining the mass balance. Triglav glacier has been monitored with various geodetic methods since 1946. Based on the results of geodetic measurements of the glacier and obtained meteorological data, we can calculate the mass balance. This allows us to model the change in the thickness of the glacier even at the time when the measurements were not performed. Based on measurements in 2011 and 2012, we firstly calculated the empirical mass balance coefficients DDF and D(x,y). With these two coefficients, we calculated changes in the thickness of the glacier, based on measurements from September 2012, when the glacier was the smallest and thinnest. In the years 2010–2016, changes in thickness were between 1 m and 3 m. Between 2016 and 2020, changes in glacier thickness were between 1,5 m and 3 m, with significant areas with negative thickness differences. We compared the results with the glacier area size and found that its area increases as the average thickness of the glacier increases and vice versa. Finally, we calculated the average specific mass balance for all the years under consideration. In the whole analysed period 2010–2020 we calculated the highest mass balance for the year 2013 with 1,64 m w.e.a-1 and the lowest for 2015 with –2,68 m w.e.a-1.

Keywords:geodesy, master thesis, Triglav Glacier, mass balance, geodetic measurements, glacier thickness change, Slovenia

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