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Development and evaluation of surface shortwave fluxparameterizations for use in sea-ice models

Published online by Cambridge University Press:  20 January 2017

Jeffrey R. Key
Affiliation:
Department of Geography, Boston University, 675 Commonwealth Ave., Boston, MA 02215, U.S.A.
Yong Liu
Affiliation:
Department of Geography, Boston University, 675 Commonwealth Ave., Boston, MA 02215, U.S.A.
Robert S. Stone
Affiliation:
Cooperative Institute for Research in Environmental Sciences, University of Colorado, Boulder, CO 80309, U.S.A
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Abstract

The surface radiation budget of the polar regions strongly influences icegrowth and melt. Thermodynamic sea-ice models therefore require accurate yetcomputationally efficient methods of computing radiative fluxes. In thispaper a new parameterization of the downwelling shortwave radiation flux atthe Arctic surface is developed and compared to a variety of existingschemes. Parameterized llnxes are compared to in situ measurements usingdata for one year at Barrow, Alaska. Our results show that the newparameterization can estimate the downwelling shortwave flux with mean androot mean square errors of 1 and 5%, respectively, for clear conditions and5 and 20% for cloudy conditions. The new parameterization offers a unifiedapproach to estimating downwelling shortwave fluxes under clear and cloudyconditions, and is more accurate than existing schemes.

Information

Type
Research Article
Copyright
Copyright © International Glaciological Society 1997
Figure 0

Table 1. Clear-day transmissivity (T) at Barrow

Figure 1

Table 2. Cloudy-day transmissivity (T) and equivalent atmospheric height (H) at Barrow

Figure 2

Fig. 1. The shortwave clear-sky flux error for four parameterizations (estimated flux minus the flux measured at Barrow and Resolute).

Figure 3

Table 3. Paramelerized shortwave clear-sky flux errors

Figure 4

Fig. 2. The shortwave cloudy-sky flux error for four parameterizations (estimated flux minus the flux measured al Barrow and Resolute).

Figure 5

Table 4. Parameterized shortwave all-sky flux errors