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Featured researches published by Jens Roessiger.


Journal of Glaciology | 2011

Competition between grain growth and grain-size reduction in polar ice

Jens Roessiger; Paul D. Bons; Albert Griera; Mark Jessell; Lynn Evans; Maurine Montagnat; Sepp Kipfstuhl; S. H. Faria; Ilka Weikusat

Static (or ‘normal’) grain growth, i.e. grain boundary migration driven solely by grain boundary energy, is considered to be an important process in polar ice. Many ice-core studies report a continual increase in average grain size with depth in the upper hundreds of metres of ice sheets, while at deeper levels grain size appears to reach a steady state as a consequence of a balance between grain growth and grain-size reduction by dynamic recrystallization. The growth factor k in the normal grain growth law is important for any process where grain growth plays a role, and it is normally assumed to be a temperature-dependent material property. Here we show, using numerical simulations with the program Elle, that the factor k also incorporates the effect of the microstructure on grain growth. For example, a change in grain-size distribution from normal to log-normal in a thin section is found to correspond to an increase in k by a factor of 3.5.


Philosophical Transactions of the Royal Society A | 2017

Dynamic recrystallization during deformation of polycrystalline ice: insights from numerical simulations

Maria Gema Llorens; Albert Griera; Florian Steinbach; Paul D. Bons; Enrique Gomez-Rivas; Daniela Jansen; Jens Roessiger; Ricardo A. Lebensohn; Ilka Weikusat

The flow of glaciers and polar ice sheets is controlled by the highly anisotropic rheology of ice crystals that have hexagonal symmetry (ice lh). To improve our knowledge of ice sheet dynamics, it is necessary to understand how dynamic recrystallization (DRX) controls ice microstructures and rheology at different boundary conditions that range from pure shear flattening at the top to simple shear near the base of the sheets. We present a series of two-dimensional numerical simulations that couple ice deformation with DRX of various intensities, paying special attention to the effect of boundary conditions. The simulations show how similar orientations of c-axis maxima with respect to the finite deformation direction develop regardless of the amount of DRX and applied boundary conditions. In pure shear this direction is parallel to the maximum compressional stress, while it rotates towards the shear direction in simple shear. This leads to strain hardening and increased activity of non-basal slip systems in pure shear and to strain softening in simple shear. Therefore, it is expected that ice is effectively weaker in the lower parts of the ice sheets than in the upper parts. Strain-rate localization occurs in all simulations, especially in simple shear cases. Recrystallization suppresses localization, which necessitates the activation of hard, non-basal slip systems. This article is part of the themed issue ‘Microdynamics of ice’.


Journal of Structural Geology | 2014

Multiscale modeling of ice deformation behavior

Maurine Montagnat; Olivier Castelnau; Paul D. Bons; Sérgio H. Faria; Olivier Gagliardini; F. Gillet-Chaulet; Fanny Grennerat; Albert Griera; Ricardo A. Lebensohn; Hervé Moulinec; Jens Roessiger; Pierre Suquet


Journal of Glaciology | 2016

Dynamic recrystallisation of ice aggregates during co-axial viscoplastic deformation: a numerical approach

Maria-Gema Llorens; Albert Griera; Paul D. Bons; Jens Roessiger; Ricardo A. Lebensohn; Lynn Evans; Ilka Weikusat


Journal of Structural Geology | 2014

Influence of bubbles on grain growth in ice

Jens Roessiger; Paul D. Bons; Sérgio H. Faria


The Cryosphere | 2016

Strain localization and dynamic recrystallization in the ice–air aggregate: a numerical study

Florian Steinbach; Paul D. Bons; Albert Griera; Daniela Jansen; Maria-Gema Llorens; Jens Roessiger; Ilka Weikusat


Journal of Structural Geology | 2018

The effect of dynamic recrystallisation on the rheology and microstructures of partially molten rocks

Maria-Gema Llorens; Enrique Gomez-Rivas; Anne-Céline Ganzhorn; Albert Griera; Florian Steinbach; Jens Roessiger; Loïc Labrousse; Nicolas P. Walte; Ilka Weikusat; Paul D. Bons


EPIC3Second Open Science Conference of the International Partnerships in Ice Core Sciences (IPICS2016), Hobart, Australia, 2016-03-07-2016-03-11 | 2016

Microdynamical simulations of polyphase deformation and recrystallisation processes in polar ice and firn

Florian Steinbach; Ilka Weikusat; Paul D. Bons; Albert Griera; Maria Gema Llorens Verde; Jens Roessiger


EPIC3MicroDICE Final conference, Montpellier, France, 2015-03-30-2015-04-01Montpellier, MicroDICE | 2015

Modelling the influence of air on the deformation and recrystallisation mechanisms in polar firn and ice

Florian Steinbach; Ilka Weikusat; Paul D. Bons; Albert Griera; Maria Gema Llorens Verde; Jens Roessiger


EPIC3EGU General Assembly 2015, Vienna, 2015-04-13-2015-04-17Copernicus | 2015

Numerical modelling of polyphase deformation and recrystallization in polar firn and ice

Florian Steinbach; Ilka Weikusat; Paul D. Bons; Albert Griera; Maria-Gema Llorens; Jens Roessiger

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Paul D. Bons

University of Tübingen

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Albert Griera

Autonomous University of Barcelona

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Ilka Weikusat

Alfred Wegener Institute for Polar and Marine Research

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Florian Steinbach

Alfred Wegener Institute for Polar and Marine Research

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Ricardo A. Lebensohn

Los Alamos National Laboratory

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Maurine Montagnat

Centre national de la recherche scientifique

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Daniela Jansen

Alfred Wegener Institute for Polar and Marine Research

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