Geothermal heat flow from borehole measurements at the margin of Princess Elizabeth Land (East Antarctic Ice Sheet)

Author:

Talalay Pavel G.ORCID,Gong Da,Fan Xiaopeng,Li Yazhou,Leitchenkov GermanORCID,Li Bing,Zhang Nan,Wang Rusheng,Yang Yang,Hong Jialin

Abstract

AbstractA 198.8 m deep borehole was drilled through ice to subglacial bedrock in the northwestern marginal part of Princess Elizabeth Land, ~12 km south of Zhongshan Station, in January–February 2019. Three years later, in February 2022, the borehole temperature profile was measured, and the geothermal heat flow (GHF) was estimated using a 1-D time-dependent energy-balance equation. For a depth corresponding to the base of the ice sheet, the GHF was calculated as 72.6 ± 2.3 mW m−2and temperature −4.53 ± 0.27°C. The regional averages estimated for this area based, generally, on tectonic setting vary from 55 to 66 mW m−2. A higher GHF is interpreted to originate mostly from the occurrence of metamorphic complexes intruded by heat-producing elements in the subglacial bedrock below the drill site.

Funder

National Natural Science Foundation of China

Publisher

Cambridge University Press (CUP)

Subject

Earth-Surface Processes

Reference27 articles.

1. Hindmarsh, RC and Ritz, CM (2012) How deep do you need to drill through ice to measure the geothermal heat flux? EGU General Assembly, Vienna, Austria, p. 8629, 2012EGUGA.14.8629H, 22–27 April 2012.

2. Greenland palaeotemperatures derived from GRIP bore hole temperature and ice core isotope profiles

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4. Heat Flux Distribution of Antarctica Unveiled

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