Skip to main navigation Skip to search Skip to main content

Melt-under-cutting and buoyancy-driven calving from tidewater glaciers: New insights from discrete element and continuum model simulations

  • D.I. Benn*
  • , J. Aström
  • , T. Zwinger
  • , J. Todd
  • , F.M. Nick
  • , S. Cook
  • , N.R.J. Hulton
  • , A. Luckman
  • *Corresponding author for this work

Research output: Contribution to journalArticleAcademicpeer-review

Abstract

The simple calving laws currently used in ice-sheet models do not adequately reflect the complexity and diversity of calving processes. To be effective, calving laws must be grounded in a sound understanding of how calving actually works. Here, we develop a new strategy for formulating calving laws, using (a) the Helsinki Discrete Element Model (HiDEM) to explicitly model fracture and calving processes, and (b) the continuum model Elmer/Ice to identify critical stress states associated with HiDEM calving events. A range of observed calving processes emerges spontaneously from HiDEM in response to variations in ice-front buoyancy and the size of subaqueous undercuts. Calving driven by buoyancy and melt under-cutting is under-predicted by existing calving laws, but we show that the location and magnitude of HiDEM calving events can be predicted in Elmer/Ice from characteristic stress patterns. Our results open the way to developing calving laws that properly reflect the diversity of calving processes, and provide a framework for a unified theory of the calving process continuum.
Original languageEnglish
Pages (from-to)691-702
JournalJournal of Glaciology
Volume63
Issue number240
DOIs
Publication statusPublished - 24 Jul 2017

Keywords

  • calving
  • glacier modelling
  • iceberg calving

Fingerprint

Dive into the research topics of 'Melt-under-cutting and buoyancy-driven calving from tidewater glaciers: New insights from discrete element and continuum model simulations'. Together they form a unique fingerprint.

Cite this