Arid
DOI10.5194/tc-8-1069-2014
Albedo over rough snow and ice surfaces
Lhermitte, S.1,2,3; Abermann, J.1,4; Kinnard, C.1,5
通讯作者Lhermitte, S.
来源期刊CRYOSPHERE
ISSN1994-0416
EISSN1994-0424
出版年2014
卷号8期号:3页码:1069-1086
英文摘要

Both satellite and ground-based broadband albedo measurements over rough and complex terrain show several limitations concerning feasibility and representativeness. To assess these limitations and understand the effect of surface roughness on albedo, firstly, an intrasurface radiative transfer (ISRT) model is combined with albedo measurements over different penitente surfaces on Glaciar Tapado in the semi-arid Andes of northern Chile. Results of the ISRT model show effective albedo reductions over the penitentes up to 0.4 when comparing the rough surface albedo relative to the albedo of the flat surface. The magnitude of these reductions primarily depends on the opening angles of the penitentes, but the shape of the penitentes and spatial variability of the material albedo also play a major role.


Secondly, the ISRT model is used to reveal the effect of using albedo measurements at a specific location (i.e., apparent albedo) to infer the true albedo of a penitente field (i.e., effective albedo). This effect is especially strong for narrow penitentes, resulting in sampling biases of up to +/- 0.05. The sampling biases are more pronounced when the sensor is low above the surface, but remain relatively constant throughout the day. Consequently, it is important to use a large number of samples at various places and/or to locate the sensor sufficiently high in order to avoid this sampling bias of surface albedo over rough surfaces.


Thirdly, the temporal evolution of broadband albedo over a penitente-covered surface is analyzed to place the experiments and their uncertainty into a longer temporal context. Time series of albedo measurements at an automated weather station over two ablation seasons reveal that albedo decreases early in the ablation season. These decreases stabilize from February onwards with variations being caused by fresh snowfall events. The 2009/2010 and 2011/2012 seasons differ notably, where the latter shows lower albedo values caused by larger penitentes. Finally, a comparison of the ground-based albedo observations with Landsat and MODIS (Moderate Resolution Imaging Spectroradiometer)-derived albedo showed that both satellite albedo products capture the albedo evolution with root mean square errors of 0.08 and 0.15, respectively, but also illustrate their shortcomings related to temporal resolution and spatial heterogeneity over small mountain glaciers.


类型Article
语种英语
国家Chile ; Netherlands ; Belgium ; Greenland ; Canada
收录类别SCI-E
WOS记录号WOS:000338655600020
WOS关键词HAUT-GLACIER-DAROLLA ; SEMIARID ANDES ; MASS-BALANCE ; BIDIRECTIONAL REFLECTANCE ; TERRESTRIAL PHOTOGRAPHY ; RADIATIVE-TRANSFER ; ANTARCTIC SNOW ; CHILEAN ANDES ; DRY ANDES ; SWITZERLAND
WOS类目Geography, Physical ; Geosciences, Multidisciplinary
WOS研究方向Physical Geography ; Geology
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/181513
作者单位1.CEAZA, La Serena, Chile;
2.Royal Netherlands Meteorol Inst KNMI, De Bilt, Netherlands;
3.Katholieke Univ Leuven, Dept Earth & Environm Sci, Leuven, Belgium;
4.Greenland Survey, Asiaq, Nuuk, Greenland;
5.Univ Quebec Trois Rivieres, Dept Environm Sci, Trois Rivieres, PQ GA9 5H7, Canada
推荐引用方式
GB/T 7714
Lhermitte, S.,Abermann, J.,Kinnard, C.. Albedo over rough snow and ice surfaces[J],2014,8(3):1069-1086.
APA Lhermitte, S.,Abermann, J.,&Kinnard, C..(2014).Albedo over rough snow and ice surfaces.CRYOSPHERE,8(3),1069-1086.
MLA Lhermitte, S.,et al."Albedo over rough snow and ice surfaces".CRYOSPHERE 8.3(2014):1069-1086.
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