XIONIA / GLACIERS

Iceland glaciers: map, annual measurements & history

Explore 91 distinct glaciers in the available WGMS monitoring sample for Iceland. The combined record spans 1740–2025; coverage and gaps differ for each glacier. Examples in the record include SKAFTAFELLSJOKULL, SOLHEIMAJOKULL W, REYKJAFJARDARJOKULL.

Find the glacier pin and map temperatures, a forecast for up to 14 days and the hourly meteogram. Compare 850 hPa and precipitation ensembles, inspect weather satellite imagery and explore the WGMS observation history.

91glaciers with observation series
17with mass-balance measurements
1740–2025year range across available series
TUNGNAARJOKULL · 7-day forecast

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Glacier map, coordinates and temperatures

Dots mark WGMS monitoring locations. Select a glacier or click another map point: the widget, detailed forecast, meteogram, ensembles and satellite update for those same coordinates.

Loading catalogue… The catalogue and sources are also available below.

Temperatures apply to the selected forecast point. Day choices appear only where numeric data are available, up to 14 days.

FORECAST AT YOUR COORDINATES

Weather and 14-day forecast · TUNGNAARJOKULL

64.3200°, -18.0700°

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Detailed forecast and model comparison · TUNGNAARJOKULL

Daily temperature, 850 hPa, precipitation, snow, wind and pressure at the selected point. The combination uses the available models from the same forecast; missing values stay missing.

Hourly glacier meteogram · TUNGNAARJOKULL

Follow 2 m and 850 hPa temperature, rain, snow and wind over the next 72 hours. Change models, range and variables, select an hour on the chart or open full screen.

Ensembles 850 hPa & precipitation · TUNGNAARJOKULL

Each ensemble model calculates many possible outcomes from slightly different initial conditions. Thin lines represent its members and the stronger line their mean. A wider spread indicates greater uncertainty. Compare direct NOAA GEFS/AIGEFS, ECMWF IFS ENS/AIFS ENS and ECCC GEPS data when the corresponding downloads have completed.

The first visit to a new point may require collection time. This section shows the actual status and available range, without inventing members or values.

Weather satellite at the glacier · TUNGNAARJOKULL

Inspect cloud cover using available visible and infrared channels. Image times and geographic coverage depend on the satellite; not every geostationary satellite covers polar regions. Cloud images do not measure glacier thickness.

Open satellite and radar · Powered by www.xionia.com

Glacier history and WGMS observations

Historical observations belong to TUNGNAARJOKULL.

TUNGNAARJOKULL

Measurements and references

Powered by www.xionia.com · WGMS

Glacier catalogue — Iceland

Counts cover glaciers with mass-balance or observed front-variation records in this archive. They are not the total glacier population of a country.

WGMS observation series
GlacierMass balanceFront variation
BAEGISARJOKULL1967–19671939–2025
BIRNUDALSJOKULL1935–1972
BLAGNIPUJOKULL1997–2025
BREIDAMJOKULL E. A.1932–2025
BREIDAMJOKULL E. B.1998–20051936–2025
BREIDAMJOKULL W. A.1933–2025
BREIDAMJOKULL W. B.1933–1984
BREIDAMJOKULL W. C.1932–2011
BROKARJOKULL1935–2025
BRUARJOKULL1993–20251963–1988
BURFELLSJOKULL2017–2019
DEILDARDALSJOKULL2018–2025
DYNGJUJOKULL1992–2025
EYJABAKKAJOKULL1991–20251971–1985
EYVINDSTUNGNAJOKULL1935–1972
FALLJOKULL1957–2025
FJALLSJOKULL BY BREIDAMERKURFJALL1933–2025
FJALLSJOKULL BY GAMLASEL1933–2025
FJALLSJOKULL FITJAR1935–2003
FLAAJOKULL1905–2025
FLAAJOKULL E 1461934–1982
FLAAJOKULL E 1481905–2025
FLAAJOKULL E 1501934–2001
GEITLANDSJOKULL2002–2025
GIGJOKULL1930–2025
GLJUFURARJOKULL1932–2025
GRIMSLANDSJOKULL2017–2023
HAGAFELLSJOKULL E1890–2025
HAGAFELLSJOKULL W1970–2025
HALSJOKULL1990–1992
HEINABERGSJOKULL1904–2016
HEINABERGSJOKULL H1904–2020
HOFFELLSJOKULL1936–1938
HOFFELLSJOKULL E1930–1990
HOFFELLSJOKULL W1905–1998
HOFSJOEKULL E1989–2025
HOFSJOEKULL N1988–2025
HOFSJOEKULL SW1990–2025
HOFSJOKULL ICE CAP2010–2025
HRUTARJOKULL1947–2025
HYRNINGSJOKULL1931–2025
JOKULHALS1934–2025
JOKULKROKUR1933–2025
KALDALONSJOKULL1887–2025
KIRKJUJOKULL1997–2025
KOLDUKVISLARJ.1992–2025
KOTARJOKULL1891–2011
KOTLUJOKULL1993–2025
KVERKJOKULL1963–2025
KVIARJOKULL1934–2025
KVISLAJOKULL2002–2025
LAMBATUNGNAJOKULL2008–2025
LANGJOKULL ICE CAP1997–2025
LEIRUFJARDARJOKULL1840–2025
LODMUNDARJOKULL1932–2008
MORSARJOKULL1932–2025
MULAJOKULL S1932–2025
MULAJOKULL W1937–2025
NAUTHAGAJOKULL1932–2025
OLDUFELLSJOKULL1961–2025
REYKJAFJARDARJOKULL1850–2025
RJUPNABREKKUJOKULL1998–2025
SATUJOKULL E1950–2025
SATUJOKULL W1983–2025
SIDUJOKULL1992–1992
SIDUJOKULL E M 1751933–2008
SIDUJOKULL E M 1771992–19921933–2025
SKAFTAFELLSJOKULL1932–2025
SKALAFELLSJOKULL1934–2025
SKEIDARARJOKULL E11950–2025
SKEIDARARJOKULL E21904–2025
SKEIDARARJOKULL E31904–2025
SKEIDARARJOKULL M1990–2025
SKEIDARARJOKULL W1904–2025
SLETTJOKULL2001–2025
SOLHEIMAJOKULL E1930–1995
SOLHEIMAJOKULL J1930–1995
SOLHEIMAJOKULL W1930–2025
STEINSHOLTSJOKULL2023–2025
SVINAFELLSJOKULL1950–2025
SVINAFELLSJOKULL S1740–1995
THORISJOKULL-12018–2025
THORISJOKULL-22018–2025
THRANDARJOKULL1991–1996
TINDFJALLAJOKULL2017–2025
TORFAJOKULL N2017–2025
TORFAJOKULL S2017–2025
TUNGNAARJOKULL1986–20251944–2025
TUNGNAHRYGGSJOKULL2018–2025
VATNAJOKULL2020–2025
VIRKISJOKULL1932–2005

Glaciers by country and territory

Antarctica299 in the sample · 1940–2025Argentina40 in the sample · 1660–2025Austria160 in the sample · 1620–2025Bhutan3 in the sample · 1984–2021Bolivia4 in the sample · 1963–2024Canada102 in the sample · 1720–2025Chile180 in the sample · 1628–2025China76 in the sample · 1900–2025Colombia46 in the sample · 1945–2025DR Congo1 in the sample · 1906–2005Ecuador1 in the sample · 1956–2025France17 in the sample · 1730–2025Georgia40 in the sample · 1810–2025Germany2 in the sample · 1896–1968Greenland99 in the sample · 1811–2025Heard and McDonald Islands21 in the sample · 1947–2019Iceland91 in the sample · 1740–2025India69 in the sample · 1780–2025Indonesia3 in the sample · 1825–1990Italy413 in the sample · 1833–2025Japan1 in the sample · 1968–2025Kazakhstan33 in the sample · 1850–2025Kenya13 in the sample · 1893–2014Kyrgyzstan45 in the sample · 1850–2025Mexico2 in the sample · 1921–1999Nepal23 in the sample · 1910–2025New Zealand95 in the sample · 1865–2025Norway97 in the sample · 1600–2025Pakistan17 in the sample · 1850–2010Peru17 in the sample · 1932–2025Poland4 in the sample · 1978–2016Russia113 in the sample · 1604–2025South Georgia and South Sandwich Islands6 in the sample · 1882–2003Spain30 in the sample · 1825–2025Svalbard and Jan Mayen42 in the sample · 1861–2025Sweden21 in the sample · 1896–2025Switzerland136 in the sample · 1833–2025Tajikistan180 in the sample · 1870–2025Türkiye1 in the sample · 1902–2008Uganda1 in the sample · 1906–2003United States223 in the sample · 1670–2025Uzbekistan11 in the sample · 1961–2025

Why glaciers matter: water, climate and changing mountains

A glacier is a body of snow and ice that flows over land. Snow accumulation adds mass; melting and ice loss remove it. A snowy week is therefore only one part of a much longer balance. NSIDC: glaciers.

Glacier melt contributes to river flow and freshwater supply. Ice stored on land also matters for sea level when it reaches the ocean. Changing ice affects mountain landscapes and the ecosystems connected to meltwater. NSIDC: why glaciers matter.

Use the country pages to move from a broad view to an individual observation record. Then open nearby mountain or ski-resort forecasts to examine temperature, precipitation and wind. These forecasts describe short-term weather; the glacier history describes measured change over years.

How to read glacier mass balance and retreat

Annual mass balance, m w.e. A positive value means net mass gain during the reported hydrological year; a negative value means net loss. Metres of water equivalent express the mass as an equivalent water layer. They are not a direct measurement of metres of ice thickness at one point. WGMS: mass-balance units.

Front variation, metres. This measures movement of the glacier terminus between the stated dates. Negative values mean retreat, positive values advance. A measurement interval may span several years: the chart preserves the interval and does not invent annual values.

Missing years and different methods. Gaps remain gaps. Winter and summer balances are displayed only when reported. Glacier outlines are dated observations of shape, while a mass-balance series measures change; combining them does not turn the map into a live ice forecast.

Planning a mountain visit. Links to nearby destinations show approximate straight-line distances, not routes across ice. Check the destination’s forecast and current local operating information before choosing a ski area or mountain itinerary.

Sources, coverage and updates

Location catalogue: public WGMS service, retrieved 2026-09-14. Historical series are requested from WGMS when you select a glacier, with a seven-day cache. Each series displays its edition and retrieval time. Cached copies are clearly marked when the source is unavailable.

Forecast and meteogram: available weather models via Open-Meteo or direct NOAA, ECMWF and ECCC/GEM feeds, with source selection. Ensembles use direct official feeds. Weather models and meteorological maps · Embeddable weather widgets.