Abstract
Less than 0.25 % of the 250 000 glaciers inventoried in the Randolph
Glacier Inventory (RGI V.5) are currently monitored with in situ measurements
of surface mass balance. Increasing this archive is very challenging,
especially using time-consuming methods based on in situ measurements, and
complementary methods are required to quantify the surface mass balance of
unmonitored glaciers. The current study relies on the so-called albedo
method, based on the analysis of albedo maps retrieved from optical satellite
imagery acquired since 2000 by the MODIS sensor, on board the TERRA
satellite. Recent studies revealed substantial relationships between summer
minimum glacier-wide surface albedo and annual surface mass balance, because
this minimum surface albedo is directly related to the accumulation–area
ratio and the equilibrium-line altitude.
On the basis of 30 glaciers located in the French Alps where annual surface
mass balance data are available, our study conducted on the period 2000–2015
confirms the robustness and reliability of the relationship between the
summer minimum surface albedo and the annual surface mass balance. For the
ablation season, the integrated summer surface albedo is significantly
correlated with the summer surface mass balance of the six glaciers
seasonally monitored. These results are promising to monitor both annual and
summer glacier-wide surface mass balances of individual glaciers at
a regional scale using optical satellite images. A sensitivity study on the
computed cloud masks revealed a high confidence in the retrieved albedo maps,
restricting the number of omission errors. Albedo retrieval artifacts have
been detected for topographically incised glaciers, highlighting limitations
in the shadow correction algorithm, although inter-annual comparisons are
not affected by systematic errors.
Citation
ID:
198061
Ref Key:
davaze2018themonitoring