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DOI10.5194/tc-11-2231-2017
Geothermal flux and basal melt rate in the Dome C region inferred from radar reflectivity and heat modelling
Passalacqua O.; Ritz C.; Parrenin F.; Urbini S.; Frezzotti M.
发表日期2017
ISSN19940416
卷号11期号:5
英文摘要Basal melt rate is the most important physical quantity to be evaluated when looking for an old-ice drilling site, and it depends to a great extent on the geothermal flux (GF), which is poorly known under the East Antarctic ice sheet. Given that wet bedrock has higher reflectivity than dry bedrock, the wetness of the ice-bed interface can be assessed using radar echoes from the bedrock. But, since basal conditions depend on heat transfer forced by climate but lagged by the thick ice, the basal ice may currently be frozen whereas in the past it was generally melting. For that reason, the risk of bias between present and past conditions has to be evaluated. The objective of this study is to assess which locations in the Dome C area could have been protected from basal melting at any time in the past, which requires evaluating GF. We used an inverse approach to retrieve GF from radar-inferred distribution of wet and dry beds. A 1-D heat model is run over the last 800ĝ€ka to constrain the value of GF by assessing a critical ice thickness, i.e. the minimum ice thickness that would allow the present local distribution of basal melting. A regional map of the GF was then inferred over a 80g 130km area, with a N-S gradient and with values ranging from 48 to 60g2. The forward model was then emulated by a polynomial function to compute a time-averaged value of the spatially variable basal melt rate over the region. Three main subregions appear to be free of basal melting, two because of a thin overlying ice and one, north of Dome C, because of a low GF. © Author(s) 2017.
学科领域basal ice; basal melting; geothermal gradient; heat transfer; ice sheet; ice thickness; infrared imagery; melting; quantitative analysis; reflectivity; spatial variation; Antarctica; Dome Concordia; East Antarctica
语种英语
scopus关键词basal ice; basal melting; geothermal gradient; heat transfer; ice sheet; ice thickness; infrared imagery; melting; quantitative analysis; reflectivity; spatial variation; Antarctica; Dome Concordia; East Antarctica
来源期刊Cryosphere
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/119330
作者单位Univ. Grenoble Alpes, CNRS, IGE, Grenoble, 38000, France; Istituto Nazionale di Geofisica e Vulcanologia, Rome, 00143, Italy; ENEA, Centro Ricerche Casaccia, P.O. Box 2400, Rome, 00100, Italy
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Passalacqua O.,Ritz C.,Parrenin F.,et al. Geothermal flux and basal melt rate in the Dome C region inferred from radar reflectivity and heat modelling[J],2017,11(5).
APA Passalacqua O.,Ritz C.,Parrenin F.,Urbini S.,&Frezzotti M..(2017).Geothermal flux and basal melt rate in the Dome C region inferred from radar reflectivity and heat modelling.Cryosphere,11(5).
MLA Passalacqua O.,et al."Geothermal flux and basal melt rate in the Dome C region inferred from radar reflectivity and heat modelling".Cryosphere 11.5(2017).
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