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From:Geoscientific Model Development (Vol. 15, Issue 9) Peer-ReviewedWe present MPAS-Seaice, a sea-ice model which uses the Model for Prediction Across Scales (MPAS) framework and spherical centroidal Voronoi tessellation (SCVT) unstructured meshes. As well as SCVT meshes, MPAS-Seaice can...
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From:Geoscientific Model Development (Vol. 15, Issue 9) Peer-ReviewedWe introduce a newly developed global ice sheet model coupled to the Globally Resolved Energy Balance (GREB) climate model for the simulation of global ice sheet evolution on timescales of 100 kyr or longer (GREB-ISM...
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From:Geoscientific Model Development (Vol. 15, Issue 9) Peer-ReviewedNumerical simulations of volcanic processes play a fundamental role in understanding the dynamics of magma storage, ascent, and eruption. The recent extraordinary progress in computer performance and improvements in...
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From:Geoscientific Model Development (Vol. 15, Issue 9) Peer-ReviewedAccurately modelling the contribution of Greenland and Antarctica to sea level rise requires solving partial differential equations at a high spatial resolution. In this paper, we discuss the scaling of the Ice-sheet and...
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From:Geoscientific Model Development (Vol. 15, Issue 9) Peer-ReviewedDespite recent progress of numerical air quality models, accurate prediction of fine particulate matter (PM.sub.2.5) is still challenging because of uncertainties in physical and chemical parameterizations,...