Improved representation of the contemporary Greenland ice sheet firn layer by IMAU-FDM v1.2G

Author:

Brils Max,Kuipers Munneke PeterORCID,van de Berg Willem JanORCID,van den Broeke MichielORCID

Abstract

Abstract. The firn layer that covers 90 % of the Greenland ice sheet (GrIS) plays an important role in determining the response of the ice sheet to climate change. Meltwater can percolate into the firn layer and refreeze at greater depths, thereby temporarily preventing mass loss. However, as global warming leads to increasing surface melt, more surface melt may refreeze in the firn layer, thereby reducing the capacity to buffer subsequent episodes of melt. This can lead to a tipping point in meltwater runoff. It is therefore important to study the evolution of the Greenland firn layer in the past, present and future. In this study, we present the latest version of our firn model, IMAU-FDM (Firn Densification Model) v1.2G, with an application to the GrIS. We improved the density of freshly fallen snow, the dry-snow densification rate and the firn's thermal conductivity using recently published parametrizations and by calibration to an extended set of observations of firn density, temperature and liquid water content at the GrIS. Overall, the updated model settings lead to higher firn air content and higher 10 m firn temperatures, owing to a lower density near the surface. The effect of the new model settings on the surface elevation change is investigated through three case studies located at Summit, KAN-U and FA-13. Most notably, the updated model shows greater inter- and intra-annual variability in elevation and an increased sensitivity to climate forcing.

Funder

Netherlands Earth System Science Centre

Publisher

Copernicus GmbH

Subject

General Medicine

Cited by 5 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Firn on ice sheets;Nature Reviews Earth & Environment;2024-01-23

2. Spatial Response of Greenland's Firn Layer to NAO Variability;Journal of Geophysical Research: Earth Surface;2023-08

3. Rapid Basal Channel Growth Beneath Greenland's Longest Floating Ice Shelf;Geophysical Research Letters;2023-06-09

4. Glacier Energy and Mass Balance (GEMB): a model of firn processes for cryosphere research;Geoscientific Model Development;2023-04-27

5. Characteristics of the 1979–2020 Antarctic firn layer simulated with IMAU-FDM v1.2A;The Cryosphere;2023-04-17

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