Tree-ring-inferred glacier mass balance variation in southeastern Tibetan Plateau and its linkage with climate variability

A large number of glaciers in the Tibetan Plateau (TP) have experienced wastage in recent decades. And the wastage is different from region to region, even from glacier to glacier. A better understanding of long-term glacier variations and their linkage with climate variability requires extending th...

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Main Authors: J. Duan, L. Wang, L. Li, Y. Sun
Format: Article
Language:English
Published: Copernicus Publications 2013-11-01
Series:Climate of the Past
Online Access:http://www.clim-past.net/9/2451/2013/cp-9-2451-2013.pdf
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spelling doaj-1aacd2168c2044aea3114fde3734be272020-11-25T00:19:58ZengCopernicus PublicationsClimate of the Past1814-93241814-93322013-11-01962451245810.5194/cp-9-2451-2013Tree-ring-inferred glacier mass balance variation in southeastern Tibetan Plateau and its linkage with climate variabilityJ. Duan0L. Wang1L. Li2Y. Sun3State Key Laboratory of Vegetation and Environmental Change, Institute of Botany, Chinese Academy of Sciences, Beijing, ChinaInstitute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences, Beijing, ChinaChinese Academy of Meteorological Sciences, Beijing, ChinaAVIC Finance Co., Ltd., Beijing, ChinaA large number of glaciers in the Tibetan Plateau (TP) have experienced wastage in recent decades. And the wastage is different from region to region, even from glacier to glacier. A better understanding of long-term glacier variations and their linkage with climate variability requires extending the presently observed records. Here we present the first tree-ring-based glacier mass balance (MB) reconstruction in the TP, performed at the Hailuogou Glacier in southeastern TP during 1868–2007. The reconstructed MB is characterized mainly by ablation over the past 140 yr, and typical melting periods occurred in 1910s–1920s, 1930s–1960s, 1970s–1980s, and the last 20 yr. After the 1900s, only a few short periods (i.e., 1920s–1930s, the 1960s and the late 1980s) were characterized by accumulation. These variations can be validated by the terminus retreat velocity of Hailuogou Glacier and the ice-core accumulation rate in Guliya and respond well to regional and Northern Hemisphere temperature anomaly. In addition, the reconstructed MB is significantly and negatively correlated with August–September all-India monsoon rainfall (AIR) (<i>r</i><sub>1871-2008</sub> = &minus;0.342, <i>p</i> < 0.0001). These results suggest that temperature variability is the dominant factor for the long-term MB variation at the Hailuogou Glacier. Indian summer monsoon precipitation does not affect the MB variation, yet the significant negative correlation between the MB and the AIR implies the positive effect of summer heating of the TP on Indian summer monsoon precipitation.http://www.clim-past.net/9/2451/2013/cp-9-2451-2013.pdf
collection DOAJ
language English
format Article
sources DOAJ
author J. Duan
L. Wang
L. Li
Y. Sun
spellingShingle J. Duan
L. Wang
L. Li
Y. Sun
Tree-ring-inferred glacier mass balance variation in southeastern Tibetan Plateau and its linkage with climate variability
Climate of the Past
author_facet J. Duan
L. Wang
L. Li
Y. Sun
author_sort J. Duan
title Tree-ring-inferred glacier mass balance variation in southeastern Tibetan Plateau and its linkage with climate variability
title_short Tree-ring-inferred glacier mass balance variation in southeastern Tibetan Plateau and its linkage with climate variability
title_full Tree-ring-inferred glacier mass balance variation in southeastern Tibetan Plateau and its linkage with climate variability
title_fullStr Tree-ring-inferred glacier mass balance variation in southeastern Tibetan Plateau and its linkage with climate variability
title_full_unstemmed Tree-ring-inferred glacier mass balance variation in southeastern Tibetan Plateau and its linkage with climate variability
title_sort tree-ring-inferred glacier mass balance variation in southeastern tibetan plateau and its linkage with climate variability
publisher Copernicus Publications
series Climate of the Past
issn 1814-9324
1814-9332
publishDate 2013-11-01
description A large number of glaciers in the Tibetan Plateau (TP) have experienced wastage in recent decades. And the wastage is different from region to region, even from glacier to glacier. A better understanding of long-term glacier variations and their linkage with climate variability requires extending the presently observed records. Here we present the first tree-ring-based glacier mass balance (MB) reconstruction in the TP, performed at the Hailuogou Glacier in southeastern TP during 1868–2007. The reconstructed MB is characterized mainly by ablation over the past 140 yr, and typical melting periods occurred in 1910s–1920s, 1930s–1960s, 1970s–1980s, and the last 20 yr. After the 1900s, only a few short periods (i.e., 1920s–1930s, the 1960s and the late 1980s) were characterized by accumulation. These variations can be validated by the terminus retreat velocity of Hailuogou Glacier and the ice-core accumulation rate in Guliya and respond well to regional and Northern Hemisphere temperature anomaly. In addition, the reconstructed MB is significantly and negatively correlated with August–September all-India monsoon rainfall (AIR) (<i>r</i><sub>1871-2008</sub> = &minus;0.342, <i>p</i> < 0.0001). These results suggest that temperature variability is the dominant factor for the long-term MB variation at the Hailuogou Glacier. Indian summer monsoon precipitation does not affect the MB variation, yet the significant negative correlation between the MB and the AIR implies the positive effect of summer heating of the TP on Indian summer monsoon precipitation.
url http://www.clim-past.net/9/2451/2013/cp-9-2451-2013.pdf
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AT lwang treeringinferredglaciermassbalancevariationinsoutheasterntibetanplateauanditslinkagewithclimatevariability
AT lli treeringinferredglaciermassbalancevariationinsoutheasterntibetanplateauanditslinkagewithclimatevariability
AT ysun treeringinferredglaciermassbalancevariationinsoutheasterntibetanplateauanditslinkagewithclimatevariability
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