An emergent sub-grid sea surface temperature parameterization for sea ice melting simulation in an ocean-ice coupled model
ID:399 View Protection:ATTENDEE Updated Time:2026-08-31 16:11:43 Hits:1 Poster Presentation

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Abstract
The rapid decline of Arctic sea ice under global warming has led to increasingly heterogeneous ice conditions, with more frequent leads and open water. Although sea ice models (e.g., Icepack, the column physics package of CICE) represent sub-grid heterogeneity in sea ice, most ocean-ice coupled models still neglect sub-grid sea surface temperature (SST) heterogeneity between open-water and ice-covered fractions within a grid cell. In this study, we developed an emergent sub-grid SST parameterization for an ocean-ice coupled model to capture SST variations within individual grid cells. This approach distinguishes open-water SST from under-ice SST, explicitly represents spatial heterogeneity, and enables separate calculations of ice–ocean energy exchange processes, including basal and lateral melting. We further incorporated internal grid-scale exchange by introducing a parameterization of lateral mixing as a function of floe size and ice–ocean velocity differences. Idealized melt experiments show that the new scheme prolongs ice persistence relative to the baseline grid-averaged formulation. Under the same forcing conditions, larger floes also melt more slowly than smaller floes, consistent with results from some three-dimensional experiments. We further applied this scheme in sensitivity experiments for the Arctic Ocean during the melt season. The new parameterization improves agreement with satellite-derived ice concentration and reduces the bias by 10% relative to the baseline model.
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Speaker
Qian Wang
Xiamen University

Submission Author
Qian Wang Xiamen University
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Important Date
  • Conference Date

    Jan 12

    2027

    to

    Jan 15

    2027

  • Jul 21 2026

    Draft paper submission deadline

  • Jan 15 2027

    Registration deadline

Sponsored By
State Key Laboratory of Marine Environmental Science, Xiamen University (MEL)
Department of Earth Sciences, National Natural Science Foundation of China (NSFC)
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