Assessing the future evolution of meltwater intrusions into a mine below Gruvefonna, Svalbard

6Citations
Citations of this article
9Readers
Mendeley users who have this article in their library.

Abstract

Meltwater intrusions of glacial origin complicate the operation of a coalmine situated approximately 200 m below the bed of Gruvefonna ice cap, Svalbard. The magnitude of this water input is expected to increase with the intended enlargement of the mine. The current praxis, evacuation of the water by pumping, is an expensive undertaking and prompts the investigation of alternative solutions. The evaluation of different options requires reliable values of the total volume and the input rate of the water to be drained. To quantify the melt rate at the glacier surface, we applied a distributed temperature-index model. The model parameters were calibrated using mass-balance measurements performed at Gruvefonna during the 2003 ablation season. The water discharge in the mine during the same period was derived from records of the pump rate. Comparing the records of modelled melt and measured discharge reveals an efficient hydraulic connection between the glacier surface and the mine. The total discharge volume in the mine over the 2003 melt season was about 2.8 × 106 m3, exceeding significantly the total melt- and rainwater production on the glacier surface directly above the mine (1.2 × 106 m3). This implies that the mine discharge receives contributions from a larger surface area. Based on the distribution of hydraulic potential at the glacier bed, we estimate this contributing area. In a number of scenarios, we calculate the amount of meltwater intrusions for several steps of the planned mine enlargement.

Cite

CITATION STYLE

APA

Schuler, T. V., Melvold, K., Hagen, J. O., & Hock, R. (2005). Assessing the future evolution of meltwater intrusions into a mine below Gruvefonna, Svalbard. In Annals of Glaciology (Vol. 42, pp. 262–268). https://doi.org/10.3189/172756405781812970

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free