Lagrangian tracking of sea ice in Community Ice CodE (CICE; version 5)

Sea ice models are essential tools for simulating the thermodynamic and dynamic processes of the sea ice and the coupling with the polar atmosphere and ocean. Popular models such as the Community Ice CodE (CICE) are usually based on non-moving, locally orthogonal Eulerian grids. However, the various...

Full description

Bibliographic Details
Main Authors: Ning, Chenhui, Xu, Shiming, Zhang, Yan, Wang, Xuantong, Fan, Zhihao, Liu, Jiping
Format: Text
Language:English
Published: 2024
Subjects:
Online Access:https://doi.org/10.5194/gmd-2024-29
https://gmd.copernicus.org/preprints/gmd-2024-29/
id ftcopernicus:oai:publications.copernicus.org:gmdd118284
record_format openpolar
spelling ftcopernicus:oai:publications.copernicus.org:gmdd118284 2024-06-23T07:56:38+00:00 Lagrangian tracking of sea ice in Community Ice CodE (CICE; version 5) Ning, Chenhui Xu, Shiming Zhang, Yan Wang, Xuantong Fan, Zhihao Liu, Jiping 2024-03-15 application/pdf https://doi.org/10.5194/gmd-2024-29 https://gmd.copernicus.org/preprints/gmd-2024-29/ eng eng doi:10.5194/gmd-2024-29 https://gmd.copernicus.org/preprints/gmd-2024-29/ eISSN: 1991-9603 Text 2024 ftcopernicus https://doi.org/10.5194/gmd-2024-29 2024-06-13T01:23:50Z Sea ice models are essential tools for simulating the thermodynamic and dynamic processes of the sea ice and the coupling with the polar atmosphere and ocean. Popular models such as the Community Ice CodE (CICE) are usually based on non-moving, locally orthogonal Eulerian grids. However, the various in-situ observations such as ice tethered buoys and drift stations, are subjected to sea ice drift and hence by nature Lagrangian. Furthermore, the statistical analysis of sea ice kinematics requires the Lagrangian perspective. As a result, the offline sea ice tracking with model output is usually carried out for many scientific and validational practices. Certain limitations exist, such as the need of high frequency model outputs, as well unaccountable tracking errors. In order to facilitate Lagrangian diagnostics in current sea ice models, we design and implement an online Lagrangian tracking module in CICE under the coupled model system of CESM (Community Earth System Model). In this work, we introduce its design and implementation in detail, as well as the numerical experiments for the validation and the analysis of sea ice deformations. In particular, the sea ice model is forced with historical atmospheric reanalysis data and the Lagrangian tracking results are compared with the observed buoys' tracks for the years from 1979 to 2001. Moreover, high-resolution simulations are carried out with the Lagrangian tracking to study the multi-scale sea ice deformations modeled by CICE. Through scaling analysis, we show that CICE simulates multi-fractal sea ice deformations in both the spatial and the temporal domain, as well as the spatial-temporal coupling characteristics. The analysis with model output on the Eulerian grid shows systematic difference with the Lagrangian tracking-based results, highlighting the importance of the Lagrangian perspective for scaling analysis. Related topics, including the subdaily sea ice kinematics and the potential application of the Lagrangian tracking module, are also discussed. Text Sea ice Copernicus Publications: E-Journals
institution Open Polar
collection Copernicus Publications: E-Journals
op_collection_id ftcopernicus
language English
description Sea ice models are essential tools for simulating the thermodynamic and dynamic processes of the sea ice and the coupling with the polar atmosphere and ocean. Popular models such as the Community Ice CodE (CICE) are usually based on non-moving, locally orthogonal Eulerian grids. However, the various in-situ observations such as ice tethered buoys and drift stations, are subjected to sea ice drift and hence by nature Lagrangian. Furthermore, the statistical analysis of sea ice kinematics requires the Lagrangian perspective. As a result, the offline sea ice tracking with model output is usually carried out for many scientific and validational practices. Certain limitations exist, such as the need of high frequency model outputs, as well unaccountable tracking errors. In order to facilitate Lagrangian diagnostics in current sea ice models, we design and implement an online Lagrangian tracking module in CICE under the coupled model system of CESM (Community Earth System Model). In this work, we introduce its design and implementation in detail, as well as the numerical experiments for the validation and the analysis of sea ice deformations. In particular, the sea ice model is forced with historical atmospheric reanalysis data and the Lagrangian tracking results are compared with the observed buoys' tracks for the years from 1979 to 2001. Moreover, high-resolution simulations are carried out with the Lagrangian tracking to study the multi-scale sea ice deformations modeled by CICE. Through scaling analysis, we show that CICE simulates multi-fractal sea ice deformations in both the spatial and the temporal domain, as well as the spatial-temporal coupling characteristics. The analysis with model output on the Eulerian grid shows systematic difference with the Lagrangian tracking-based results, highlighting the importance of the Lagrangian perspective for scaling analysis. Related topics, including the subdaily sea ice kinematics and the potential application of the Lagrangian tracking module, are also discussed.
format Text
author Ning, Chenhui
Xu, Shiming
Zhang, Yan
Wang, Xuantong
Fan, Zhihao
Liu, Jiping
spellingShingle Ning, Chenhui
Xu, Shiming
Zhang, Yan
Wang, Xuantong
Fan, Zhihao
Liu, Jiping
Lagrangian tracking of sea ice in Community Ice CodE (CICE; version 5)
author_facet Ning, Chenhui
Xu, Shiming
Zhang, Yan
Wang, Xuantong
Fan, Zhihao
Liu, Jiping
author_sort Ning, Chenhui
title Lagrangian tracking of sea ice in Community Ice CodE (CICE; version 5)
title_short Lagrangian tracking of sea ice in Community Ice CodE (CICE; version 5)
title_full Lagrangian tracking of sea ice in Community Ice CodE (CICE; version 5)
title_fullStr Lagrangian tracking of sea ice in Community Ice CodE (CICE; version 5)
title_full_unstemmed Lagrangian tracking of sea ice in Community Ice CodE (CICE; version 5)
title_sort lagrangian tracking of sea ice in community ice code (cice; version 5)
publishDate 2024
url https://doi.org/10.5194/gmd-2024-29
https://gmd.copernicus.org/preprints/gmd-2024-29/
genre Sea ice
genre_facet Sea ice
op_source eISSN: 1991-9603
op_relation doi:10.5194/gmd-2024-29
https://gmd.copernicus.org/preprints/gmd-2024-29/
op_doi https://doi.org/10.5194/gmd-2024-29
_version_ 1802649889849475072