GSTDTAP  > 气候变化
DOI10.1029/2018GL079678
Surface Pond Energy Absorption Across Four Himalayan Glaciers Accounts for 1/8 of Total Catchment Ice Loss
Miles, Evan S.1,2,3; Willis, Ian2; Buri, Pascal4; Steiner, Jakob F.5; Arnold, Neil S.2; Pellicciotti, Francesca3,6
2018-10-16
发表期刊GEOPHYSICAL RESEARCH LETTERS
ISSN0094-8276
EISSN1944-8007
出版年2018
卷号45期号:19页码:10464-10473
文章类型Article
语种英语
国家England; Switzerland; USA; Netherlands
英文摘要

Glaciers in High Mountain Asia, many of which exhibit surface debris, contain the largest volume of ice outside of the polar regions. Many contain supraglacial pond networks that enhance melt rates locally, but no large-scale assessment of their impact on melt rates exists. Here we use surface energy balance modeling forced using locally measured meteorological data and monthly satellite-derived pond distributions to estimate the total melt enhancement for the four main glaciers within the 400-km(2) Langtang catchment, Nepal, for a 6-month period in 2014. Ponds account for 0.20 +/- 0.03 m/year of surface melt, representing a local melt enhancement of a factor of 14 +/- 3 compared with the debris-covered area, and equivalent to 12.5 +/- 2.0% of total catchment ice loss. Given the prevalence of supraglacial ponds across the region, our results suggest that effective incorporation of melt enhancement by ponds is essential for accurate predictions of future mass balance change in the region.


Plain Language Summary Glaciers in the high mountains of Asia provide an important water resource for millions of people. Many of these glaciers are partially covered by rocky debris, which protects the ice from solar radiation and warm air. However, studies have found that the surface of these debris-covered glaciers is actually lowering as fast as glaciers without debris. Water ponded on the surface of the glaciers may be partially responsible, as water can absorb atmospheric energy very efficiently. However, the overall effect of these ponds has not been thoroughly assessed yet. We study a valley in Nepal for which we have extensive weather measurements, and we use a numerical model to calculate the energy absorbed by ponds on the surface of the glaciers over 6 months. As we have not observed each individual pond thoroughly, we run the model 5,000 times with different setups. We find that ponds are extremely important for glacier melt and absorb energy 14 times as quickly as the debris-covered ice. Although the ponds account for 1% of the glacier area covered by rocks, and only 0.3% of the total glacier area, they absorb enough energy to account for one eighth of the whole valley's ice loss.


领域气候变化
收录类别SCI-E
WOS记录号WOS:000448656800050
WOS关键词DEBRIS-COVERED GLACIERS ; PAMIR-KARAKORAM-HIMALAYA ; SUPRAGLACIAL PONDS ; NEPAL-HIMALAYA ; AIR-TEMPERATURE ; EVEREST REGION ; CLIFF EVOLUTION ; LANGTANG VALLEY ; TASMAN GLACIER ; MASS BALANCES
WOS类目Geosciences, Multidisciplinary
WOS研究方向Geology
引用统计
文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/25465
专题气候变化
作者单位1.Univ Leeds, Sch Geog, Leeds, W Yorkshire, England;
2.Univ Cambridge, Scott Polar Res Inst, Cambridge, England;
3.Swiss Fed Inst Forest Snow & Landscape Res WSL, Mt Hydrol & Mass Movements, Birmensdorf, Switzerland;
4.Univ Alaska Fairbanks, Inst Geophys, Fairbanks, AK 99775 USA;
5.Univ Utrecht, Dept Geog, Utrecht, Netherlands;
6.Northumbria Univ, Dept Geog, Newcastle Upon Tyne, Tyne & Wear, England
推荐引用方式
GB/T 7714
Miles, Evan S.,Willis, Ian,Buri, Pascal,et al. Surface Pond Energy Absorption Across Four Himalayan Glaciers Accounts for 1/8 of Total Catchment Ice Loss[J]. GEOPHYSICAL RESEARCH LETTERS,2018,45(19):10464-10473.
APA Miles, Evan S.,Willis, Ian,Buri, Pascal,Steiner, Jakob F.,Arnold, Neil S.,&Pellicciotti, Francesca.(2018).Surface Pond Energy Absorption Across Four Himalayan Glaciers Accounts for 1/8 of Total Catchment Ice Loss.GEOPHYSICAL RESEARCH LETTERS,45(19),10464-10473.
MLA Miles, Evan S.,et al."Surface Pond Energy Absorption Across Four Himalayan Glaciers Accounts for 1/8 of Total Catchment Ice Loss".GEOPHYSICAL RESEARCH LETTERS 45.19(2018):10464-10473.
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