Groundwater feedbacks on ice sheets and subglacial hydrology

Fuente: arXiv
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Main Authors: Cairns, Gabriel J., Benham, Graham P., Hewitt, Ian J.
Format: Preprint
Published: 2026
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author Cairns, Gabriel J.
Benham, Graham P.
Hewitt, Ian J.
author_facet Cairns, Gabriel J.
Benham, Graham P.
Hewitt, Ian J.
contents The dynamics of many of Antarctica's glaciers are modulated by a hydrological system at the base of the ice. Sedimentary basins beneath the ice bed contribute to the water budget in this hydrological system by discharging or taking up water. However, sedimentary basins are not included in most current models of ice dynamics, and little is known about their effect. In this paper we develop an idealised model of a glacier whose sliding is coupled to a subglacial hydrological system, which includes a sedimentary basin. We find that groundwater discharge (exfiltration) and recharge (infiltration) are controlled by the shape of the ice sheet and of the sedimentary basin, and that exfiltration promotes sliding whereas infiltration hinders it. Overall, the presence of a sedimentary basin leads to thicker and slower-flowing ice in the steady state. We also find that, when the ice sheet is undergoing retreating, groundwater exfiltration can lead to a positive feedback which accelerates this retreat. Our results shed light on the potential role and importance of Antarctic sedimentary basins, and how these might be incorporated into existing models of ice and subglacial hydrology.
format Preprint
id arxiv_https___arxiv_org_abs_2602_14905
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Groundwater feedbacks on ice sheets and subglacial hydrology
Cairns, Gabriel J.
Benham, Graham P.
Hewitt, Ian J.
Geophysics
The dynamics of many of Antarctica's glaciers are modulated by a hydrological system at the base of the ice. Sedimentary basins beneath the ice bed contribute to the water budget in this hydrological system by discharging or taking up water. However, sedimentary basins are not included in most current models of ice dynamics, and little is known about their effect. In this paper we develop an idealised model of a glacier whose sliding is coupled to a subglacial hydrological system, which includes a sedimentary basin. We find that groundwater discharge (exfiltration) and recharge (infiltration) are controlled by the shape of the ice sheet and of the sedimentary basin, and that exfiltration promotes sliding whereas infiltration hinders it. Overall, the presence of a sedimentary basin leads to thicker and slower-flowing ice in the steady state. We also find that, when the ice sheet is undergoing retreating, groundwater exfiltration can lead to a positive feedback which accelerates this retreat. Our results shed light on the potential role and importance of Antarctic sedimentary basins, and how these might be incorporated into existing models of ice and subglacial hydrology.
title Groundwater feedbacks on ice sheets and subglacial hydrology
topic Geophysics
url https://arxiv.org/abs/2602.14905