Solution

ID: past-exam-of-the-mathematics-course-of-the-university-of-cambridge/2013/iii/paper-72/3/a/solution

A sea-ice pressure ridge forms where horizontal convergence compresses sea ice. The initially thinner sheet or colliding ice floes fracture and ride over or under one another. Continued convergence piles broken blocks into an emergent sail and a submerged keel. The submerged volume is normally larger because buoyancy supports the pile. Pores and brine-filled gaps initially make the rubble unlike a solid intact sheet; refreezing can consolidate it.
A sea-ice shear ridge develops along a fracture where neighbouring ice moves tangentially in opposite directions or at different speeds. Rough edges interlock, crush and locally converge, producing chains of piled blocks along the shear boundary. Thus the large-scale strain is mainly shear, but the actual production of ridge rubble involves local compression. Pure sliding of perfectly smooth parallel surfaces need not create a ridge. Pressure ridging is driven by convergence; shear ridging is driven by relative tangential motion with local crushing and convergence.

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