Glaciation-Induced Sea-Level Change: Theory and Applications Glenn Milne, University of Durham February 2004.

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Presentation transcript:

Glaciation-Induced Sea-Level Change: Theory and Applications Glenn Milne, University of Durham February 2004

GIA MODEL Earth ForcingEarth Rheology Rotational potential Euler equations Surface loading Ice Interdisciplinary approach Ocean Sea-level equation Other? Ice dammed lakes Sediment redistribution Impulse response formalism Linear Maxwell rheology 1D structure Ice history and Earth rheology are the key inputs

Mitrovica et al., Nature, 409, Geoid Perturbation

Solid Surface Perturbation

Ice-Induced Syphoning Mitrovica & Milne (2002)

Ocean-Induced Syphoning

Solving the Sea-Level Equation General methodology used is straightforward. Most groups now adopt the pseudo-spectral algorithm (Mitrovica and Peltier 1991). Some recent improvements have been incorporated: - Time-dependent shorelines (Lambeck &Nakada 1990; Johnston 1993; Peltier 1994) - Rotational feedback (Han & Wahr 1989; Milne & Mitrovica 1996;1998) - Near-field water influx (Milne 1998; Milne et al. 1999).

Applications of Sea-Level Model Infer solid earth rheology. Constrain regional ice sheet histories. Infer magnitude and source of glacial melt water -Glacial -Holocene -Present.

Data from 3 far-field sites indicate a massive melt water influx at ~14,250 yr BP (mwp-IA). Event of this magnitude would have a dramatic effect on climate system. Source(s) of mwp-IA strongly debated. Clark et al. (2002)

Fingerprinting the Source of mwp-IA Clark et al. (2002)

Fingerprinting the Source of mwp-IA Clark et al. (2002)