A set of analytical formulae to model deglaciation-induced polar wander

Traditionally, deglaciation-induced polar wander changes are modelled using a saw-tooth-shaped function for the time-history of ice sheets and spherical caps to express their spatial extent. In this contribution we present a set of analytical formulae that allow for a more realistic temporal evoluti...

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Main Authors: Keller, Wolfgang, Kuhn, Michael, Featherstone, Will
Other Authors: Steve Kenyon
Format: Conference Paper
Published: Springer 2012
Online Access:http://link.springer.com/chapter/10.1007%2F978-3-642-20338-1_64#
http://hdl.handle.net/20.500.11937/31510
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author Keller, Wolfgang
Kuhn, Michael
Featherstone, Will
author2 Steve Kenyon
author_facet Steve Kenyon
Keller, Wolfgang
Kuhn, Michael
Featherstone, Will
author_sort Keller, Wolfgang
building Curtin Institutional Repository
collection Online Access
description Traditionally, deglaciation-induced polar wander changes are modelled using a saw-tooth-shaped function for the time-history of ice sheets and spherical caps to express their spatial extent. In this contribution we present a set of analytical formulae that allow for a more realistic temporal evolution as well as spatial distribution of current ice masses and the corresponding sea level change when partly or completely melted. Starting with the linearized Liouville equations we develop closed-form time-domain solutions via the Laplace-domain, which are based on the assumption of a piecewise linear time-history of the perturbation of the inertia, which do not require the solution of convolution integrals. As being a central aspect of polar wander modelling we also revisit perturbation of the moment of inertia changes due to arbitrary surface loading due to changes in ice and ocean water masses and compare them with the result of the more simplistic models of spherical ice caps and a uniform sea level change. Finally, the correctness of the developed formulae is checked by various numerical checks based on more simplistic models and numerical integration techniques.
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spelling curtin-20.500.11937-315102023-02-07T08:01:19Z A set of analytical formulae to model deglaciation-induced polar wander Keller, Wolfgang Kuhn, Michael Featherstone, Will Steve Kenyon Maria Christina Pacino Urs Marti Traditionally, deglaciation-induced polar wander changes are modelled using a saw-tooth-shaped function for the time-history of ice sheets and spherical caps to express their spatial extent. In this contribution we present a set of analytical formulae that allow for a more realistic temporal evolution as well as spatial distribution of current ice masses and the corresponding sea level change when partly or completely melted. Starting with the linearized Liouville equations we develop closed-form time-domain solutions via the Laplace-domain, which are based on the assumption of a piecewise linear time-history of the perturbation of the inertia, which do not require the solution of convolution integrals. As being a central aspect of polar wander modelling we also revisit perturbation of the moment of inertia changes due to arbitrary surface loading due to changes in ice and ocean water masses and compare them with the result of the more simplistic models of spherical ice caps and a uniform sea level change. Finally, the correctness of the developed formulae is checked by various numerical checks based on more simplistic models and numerical integration techniques. 2012 Conference Paper http://hdl.handle.net/20.500.11937/31510 http://link.springer.com/chapter/10.1007%2F978-3-642-20338-1_64# Springer restricted
spellingShingle Keller, Wolfgang
Kuhn, Michael
Featherstone, Will
A set of analytical formulae to model deglaciation-induced polar wander
title A set of analytical formulae to model deglaciation-induced polar wander
title_full A set of analytical formulae to model deglaciation-induced polar wander
title_fullStr A set of analytical formulae to model deglaciation-induced polar wander
title_full_unstemmed A set of analytical formulae to model deglaciation-induced polar wander
title_short A set of analytical formulae to model deglaciation-induced polar wander
title_sort set of analytical formulae to model deglaciation-induced polar wander
url http://link.springer.com/chapter/10.1007%2F978-3-642-20338-1_64#
http://hdl.handle.net/20.500.11937/31510