Conceptual model simulations of the Miocene Antarctic ice sheet

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Autori principali: Stap, Lennert Bastiaan, Knorr, Gregor, Lohmann, Gerrit
Natura: Dataset Open Access
Lingua:en
Pubblicazione: PANGAEA 2019
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author Stap, Lennert Bastiaan
Knorr, Gregor
Lohmann, Gerrit
author_facet Stap, Lennert Bastiaan
Knorr, Gregor
Lohmann, Gerrit
collection Datos científicos de ciencias marinas y ambientales
contents We present results from ice volume simulations, performed using a conceptual model of transient ice volume variability. This model is based on the notion that at any level of a control parameter (C), in our case a CO2-index, an ice sheet will grow or shrink towards an equilibrium state (Veq). Details are given in the accompanying publication. For more information or data, please contact the authors. Dataset 2020_Stap_data_pism.xlsx contains the results from the simulations using the input C-Veq relation, and growth and decay rates, which mimic Miocene Antarctic ice sheet results obtained using the 3D thermodynamical ice sheet model PISM. Dataset 2020_Stap_data_linear.xlsx contains the results from the simulations using the simple linear C-Veq relation and growth and decay rates specified per experiment. Dataset 2020_Stap_data_hysteresis.xlsx contains the results from the simulations using the piecewise linear C-Veq relation with hysteresis, and growth and decay rates specified per experiment, which are discussed in the Appendix of the accompanying publication.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_907521
institution PANGAEA
language en
publishDate 2019
publisher PANGAEA
record_format pangaea
spellingShingle Conceptual model simulations of the Miocene Antarctic ice sheet
Stap, Lennert Bastiaan
Knorr, Gregor
Lohmann, Gerrit
Antarctica; carbon dioxide; Ice volume; Miocene; pan-Antarctica; transient variability
We present results from ice volume simulations, performed using a conceptual model of transient ice volume variability. This model is based on the notion that at any level of a control parameter (C), in our case a CO2-index, an ice sheet will grow or shrink towards an equilibrium state (Veq). Details are given in the accompanying publication. For more information or data, please contact the authors. Dataset 2020_Stap_data_pism.xlsx contains the results from the simulations using the input C-Veq relation, and growth and decay rates, which mimic Miocene Antarctic ice sheet results obtained using the 3D thermodynamical ice sheet model PISM. Dataset 2020_Stap_data_linear.xlsx contains the results from the simulations using the simple linear C-Veq relation and growth and decay rates specified per experiment. Dataset 2020_Stap_data_hysteresis.xlsx contains the results from the simulations using the piecewise linear C-Veq relation with hysteresis, and growth and decay rates specified per experiment, which are discussed in the Appendix of the accompanying publication.
title Conceptual model simulations of the Miocene Antarctic ice sheet
topic Antarctica; carbon dioxide; Ice volume; Miocene; pan-Antarctica; transient variability
url https://doi.org/10.1594/PANGAEA.907521