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Accelerating subglacial drainage modeling with statistical emulators

Gwenn Flowers

Water flow under ice exerts a fundamental control on glacier and ice-sheet dynamics, with direct consequences for the pace of global sea-level rise and the frequency and severity of glaciological hazards. Despite its importance, progress in modeling the subglacial drainage system has been limited by challenges in upscaling the governing physics, the computational cost of resolving processes that operate across vastly different timescales, and to some extent, the persistent scarcity of direct observations. This seminar will sketch the development of physically based subglacial drainage models and describe how statistical emulators are being used to accelerate large-scale predictions of subglacial hydrological variables. We will reflect on the current state of the field and highlight the model deficiencies most in need of attention.

Speaker: Gwenn Flowers, Simon Fraser University

Attend in person or onlie (See weblink)

Room: 350/372

Thursday, 04/30/26

Contact:

Website: Click to Visit

Cost:

Free

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Mitchell Earth Sciences Building (04-560)

397 Panama Mall
Stanford University
Stanford, CA 94305