Observed and Parameterized Roughness Lengths for Momentum and Heat Over Rough Ice Surfaces

Author:

van Tiggelen Maurice1ORCID,Smeets Paul C. J. P.1,Reijmer Carleen H.1ORCID,van den Broeke Michiel R.1ORCID,van As Dirk2ORCID,Box Jason E.2ORCID,Fausto Robert S.2ORCID

Affiliation:

1. Institute for Marine and Atmospheric Research Utrecht (IMAU) Utrecht University Utrecht The Netherlands

2. Geological Survey of Denmark and Greenland (GEUS) Copenhagen Denmark

Abstract

AbstractTurbulent heat fluxes, that is, the sensible heat flux and latent heat flux, are important sources/sinks of energy for surface melt over glaciers and ice sheets. Therefore, credible simulations of for example, future Greenland Ice Sheet mass loss need an accurate description of these fluxes. However, the parameterization of surface turbulent heat fluxes in climate models requires knowledge about the surface roughness lengths for momentum, heat and moisture, which are currently either unknown or tuned to indirect observations. In this study we take advantage of a large data set of eddy covariance observations acquired during multiple years and at multiple sites over the Greenland Ice Sheet. These in‐situ observations are used to develop an improved parameterization for the roughness length for momentum, and update the parameterization for the roughness lengths for heat and moisture over rough ice surfaces. The newly derived parameterizations are implemented in a surface energy balance model that is used to compute surface melt. Sensitivity experiments confirm the high sensitivity of surface melt to the chosen roughness length models. The new parameterization models the sensible heat flux to within 10 W m−2, and the cumulative ice ablation within 10% at three out of four sites. Two case studies demonstrate the important contribution of the turbulent heat fluxes to surface ablation. The presented roughness parameterizations can be implemented in climate models to improve the physical representation of surface roughness over rough snow and ice surfaces, which is expected to improve the modeled turbulent heat fluxes and thus surface melt.

Funder

Nederlandse Organisatie voor Wetenschappelijk Onderzoek

Publisher

American Geophysical Union (AGU)

Subject

Space and Planetary Science,Earth and Planetary Sciences (miscellaneous),Atmospheric Science,Geophysics

Cited by 3 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. First results of the polar regional climate model RACMO2.4;The Cryosphere;2024-09-09

2. Basic Equations of Atmospheric Turbulence;Springer Atmospheric Sciences;2024

3. Grundgleichungen der atmosphärischen Turbulenz;Angewandte Meteorologie;2024

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