Two-dimensional prognostic experiments for fast-flowing ice streams from the Academy of Sciences Ice Cap

Author:

Konovalov Yuri V.ORCID,Nagornov Oleg V.

Abstract

Abstract. Prognostic experiments for fast-flowing ice streams on the southern side of the Academy of Sciences Ice Cap on Komsomolets Island, Severnaya Zemlya archipelago, were undertaken in this study. The experiments were based on inversions of basal friction coefficients using a two-dimensional flow-line thermocoupled model and Tikhonov's regularization method. The modeled ice temperature distributions in the cross sections were obtained using ice surface temperature histories that were inverted previously from borehole temperature profiles derived at the summit of the Academy of Sciences Ice Cap and the elevational gradient of ice surface temperature changes (about 6.5 °C km−1). Input data included interferometric synthetic aperture radar (InSAR) ice surface velocities, ice surface elevations, and ice thicknesses obtained from airborne measurements, while the surface mass balance was adopted from previous investigations for the implementation of both the forward and inverse problems. The prognostic experiments revealed that both ice mass and ice stream extent declined for the reference time-independent surface mass balance. Specifically, the grounding line retreated: (a) along the B–B′ flow line from  ∼  40 to  ∼  30 km (the distance from the summit), (b) along the C–C′ flow line from  ∼  43 to  ∼  37 km, and (c) along the D–D′ flow line from  ∼  41 to  ∼  32 km, when considering a time period of 500 years and assuming a time-independent surface mass balance. Ice flow velocities in the ice streams decreased with time and this trend resulted in the overall decline of the outgoing ice flux. Generally, the modeled glacial evolution was in agreement with observations of deglaciation of the Severnaya Zemlya archipelago.

Publisher

Copernicus GmbH

Subject

General Earth and Planetary Sciences

Reference49 articles.

1. Arkhipov S. M.: Data Bank “Deep drilling of glaciers: Soviet-Russian Projects in Arctic, 1975–1990”, Data of Glaciological Studies, 87, 229–238, 1999.

2. Arthern, R. and Gudmundsson, H.: Initialization of ice-sheet forecasts viewed as an inverse Robin problem, J. Glaciol, 56, 527–533, 2010.

3. Bassford, R. P., Siegert, M. J., and Dowdeswell, J. A.: Quantifying the Mass Balance of Ice Caps on Severnaya Zemlya, Russian High Arctic III: Sensitivity of Ice Caps in Severnaya Zemlya to Future Climate Change, Arct. Antarct. Alp. Res., 38, 31–33, available at: http://www.jstor.org/stable/4095823, 2006.

4. Bassis, J. N., Fricker, H. A., Coleman, R., and Minster, J.-B.: An investigation into the forces that drive ice-shelf rift propagation on the Amery Ice Shelf, East Antarctica, J. Glaciol., 54, 17–27, 2008.

5. Bindschadler, R.: The importance of pressurized subglacial water in separation and sliding at the glacier bed, J. Glaciol., 29, 3–19, 1983.

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