TY - JOUR
T1 - Mass balance of the Prince of Wales Icefield, Ellesmere Island, Nunavut, Canada
AU - Mair, Douglas
AU - Burgess, David
AU - Sharp, Martin
AU - Dowdeswell, Julian A.
AU - Benham, Toby
AU - Marshall, Shawn
AU - Cawkwell, Fiona
PY - 2009/6/1
Y1 - 2009/6/1
N2 - This paper estimates the mass balance of the Prince of Wales Icefield, Ellesmere Island, Canada, averaged over four decades, from measurements of surface mass balance (SMB) and iceberg calving. Shallow ice core net accumulation measurements and annual mass balance stake measurements are used in conjunction with a digital elevation model and knowledge of the location of the dominant moisture source for precipitation over the ice cap to interpolate and extrapolate spatial patterns of SMB across the Prince of Wales Icefield. The contribution of iceberg calving to the mass balance is calculated from estimates of (1) the annual volume of ice discharged at the major tidewater glacier termini and (2) the annual volume loss or gain due to terminus fluctuations. Two different approaches to determining the SMB conclude that the SMB of the ice field is approximately in balance (average equals-0.1 ± 0.4 km 3 w.e. a-1, where w.e. means water equivalent) largely because of its proximity to the main year-round moisture source that is the Smith Sound portion of the North Open Water polynya. Iceberg calving is a highly significant component of mass loss (-1.9 ± 0.2 km3 w.e. a-1) and is sufficient to make the overall mass balance of the ice field averaged over the period 1963-2003 clearly negative (-2 ± 0.45 km3 w.e. a-1, equivalent to a mean-specific mass balance across the ice field of-0.1 m w.e. a-1). The Prince of Wales Icefield contributes ∼0.005 mm a-1 to global eustatic sea level rise.
AB - This paper estimates the mass balance of the Prince of Wales Icefield, Ellesmere Island, Canada, averaged over four decades, from measurements of surface mass balance (SMB) and iceberg calving. Shallow ice core net accumulation measurements and annual mass balance stake measurements are used in conjunction with a digital elevation model and knowledge of the location of the dominant moisture source for precipitation over the ice cap to interpolate and extrapolate spatial patterns of SMB across the Prince of Wales Icefield. The contribution of iceberg calving to the mass balance is calculated from estimates of (1) the annual volume of ice discharged at the major tidewater glacier termini and (2) the annual volume loss or gain due to terminus fluctuations. Two different approaches to determining the SMB conclude that the SMB of the ice field is approximately in balance (average equals-0.1 ± 0.4 km 3 w.e. a-1, where w.e. means water equivalent) largely because of its proximity to the main year-round moisture source that is the Smith Sound portion of the North Open Water polynya. Iceberg calving is a highly significant component of mass loss (-1.9 ± 0.2 km3 w.e. a-1) and is sufficient to make the overall mass balance of the ice field averaged over the period 1963-2003 clearly negative (-2 ± 0.45 km3 w.e. a-1, equivalent to a mean-specific mass balance across the ice field of-0.1 m w.e. a-1). The Prince of Wales Icefield contributes ∼0.005 mm a-1 to global eustatic sea level rise.
UR - https://www.scopus.com/pages/publications/73649115681
U2 - 10.1029/2008JF001082
DO - 10.1029/2008JF001082
M3 - Article
AN - SCOPUS:73649115681
SN - 2169-9003
VL - 114
JO - Journal of Geophysical Research: Earth Surface
JF - Journal of Geophysical Research: Earth Surface
IS - 2
M1 - F02011
ER -