Stochastic Paleoclimatology: Modeling the EPICA Ice Core Climate Records

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Keyes, N. D. B., Giorgini, L. T., Wettlaufer, J. S.
Format: Preprint
Published: 2022
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866929243638726656
author Keyes, N. D. B.
Giorgini, L. T.
Wettlaufer, J. S.
author_facet Keyes, N. D. B.
Giorgini, L. T.
Wettlaufer, J. S.
contents We analyze and model the stochastic behavior of paleoclimate time series and assess the implications for the coupling of climate variables during the Pleistocene glacial cycles. We examine 800 kyr of carbon dioxide, methane, nitrous oxide, and temperature proxy data from the EPICA Dome-C ice core, which are characterized by 100~kyr glacial cycles overlain by fluctuations across a wide range of time scales. We quantify this behavior through multifractal time-weighted detrended fluctuation analysis, which distinguishes near red-noise and white-noise behavior below and above the 100~kyr glacial cycle respectively in all records. This allows us to model each time series as a one-dimensional periodic non-autonomous stochastic dynamical system, and assess the stability of physical processes and the fidelity of model-simulated time series. We extend this approach to a four-variable model with linear coupling terms, which we interpret in terms of the interrelationships between the time series. Methane and nitrous oxide are found to have significant destabilizing influences, while carbon dioxide and temperature have smaller stabilizing influences. We draw conclusions about causal relationships in glacial transitions and the climate processes that may have facilitated these couplings, and highlight opportunities to further develop stochastic modeling approaches.
format Preprint
id arxiv_https___arxiv_org_abs_2210_00308
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Stochastic Paleoclimatology: Modeling the EPICA Ice Core Climate Records
Keyes, N. D. B.
Giorgini, L. T.
Wettlaufer, J. S.
Soft Condensed Matter
Atmospheric and Oceanic Physics
We analyze and model the stochastic behavior of paleoclimate time series and assess the implications for the coupling of climate variables during the Pleistocene glacial cycles. We examine 800 kyr of carbon dioxide, methane, nitrous oxide, and temperature proxy data from the EPICA Dome-C ice core, which are characterized by 100~kyr glacial cycles overlain by fluctuations across a wide range of time scales. We quantify this behavior through multifractal time-weighted detrended fluctuation analysis, which distinguishes near red-noise and white-noise behavior below and above the 100~kyr glacial cycle respectively in all records. This allows us to model each time series as a one-dimensional periodic non-autonomous stochastic dynamical system, and assess the stability of physical processes and the fidelity of model-simulated time series. We extend this approach to a four-variable model with linear coupling terms, which we interpret in terms of the interrelationships between the time series. Methane and nitrous oxide are found to have significant destabilizing influences, while carbon dioxide and temperature have smaller stabilizing influences. We draw conclusions about causal relationships in glacial transitions and the climate processes that may have facilitated these couplings, and highlight opportunities to further develop stochastic modeling approaches.
title Stochastic Paleoclimatology: Modeling the EPICA Ice Core Climate Records
topic Soft Condensed Matter
Atmospheric and Oceanic Physics
url https://arxiv.org/abs/2210.00308