Quantifying mass balance of East-Karakoram glaciers using geodetic technique

The Karakoram Range comprises the heavily glaciated mountains outside the Polar regions. A comprehensive assessment of glaciers variation in this region is crucial to ascertain constant water supply under different scenarios of futuristic climate change. Lack of accessibility to the Karakoram region...

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Published in:Polar Science
Main Authors: Kumar, Anant, Negi, H.S., Kumar, Kamal, Shekhar, Chander, Kanda, Neha
Language:English
Published: 2019
Subjects:
Online Access:https://nipr.repo.nii.ac.jp/records/15598
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author Kumar, Anant
Negi, H.S.
Kumar, Kamal
Shekhar, Chander
Kanda, Neha
author_facet Kumar, Anant
Negi, H.S.
Kumar, Kamal
Shekhar, Chander
Kanda, Neha
author_sort Kumar, Anant
collection National Institute of Polar Research Repository, Japan
container_start_page 24
container_title Polar Science
container_volume 19
description The Karakoram Range comprises the heavily glaciated mountains outside the Polar regions. A comprehensive assessment of glaciers variation in this region is crucial to ascertain constant water supply under different scenarios of futuristic climate change. Lack of accessibility to the Karakoram region has limited the use of conventional methods in monitoring variations in thickness and mass of glaciers, alternatively promoting the use of remote sensing based methods. The present study quantifies changes in thickness and mass budget of 24 glaciers in East-Karakoram region using geodetic technique. The Digital Elevation Model (DEM) adjustments and comparisons were made between Shuttle Radar Topography Mission (SRTM) C-band DEM, year 2000 and recent DEMs of the years 2009 and 2014, which were generated using stereo pairs of Panchromatic Remote Sensing Instrument for Stereo Mapping (PRISM) onboard the Advanced Land Observing Satellite (ALOS) and Cartosat-1 respectively. The vertical accuracy of recent DEMs was assessed using ICESat-1 laser points. Other biases such as elevation dependent, radar penetration, terrain curvature and seasonality were also rectified before computing the glacier mass balance. Geodetic esimates indicate an overall marginal thinning (−0.09 ± 0.16 m/yr) and negative mass budget (−0.08 ± 0.13 m.w.e./yr) during the years 2000–2014. Interestingly, one glacier showed surge-type activity (advancing and thickening terminus) during 2000-2014, with highest (0.59) Accumulation Area Ratio (AAR) amongst studied glaciers. Time series analysis of climate data (temperature and precipitation) recorded at field observatories depict overall warming in the East-Karakoram region. The higher rate of mass loss during 2009–2014 (−0.07 ± 0.13 m.w.e./yr) compared to 2000–2009 (−0.05 ± 0.12 m.w.e./yr) was found in agreement with the rise in temperature and decline in precipitation over the region during different years. The results thus indicate an insignificant mass loss in East-Karakoram glaciers and thus exhibit a ...
genre Polar Science
Polar Science
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Polar Science
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op_doi https://doi.org/10.1016/j.polar.2018.11.005
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spelling ftnipr:oai:nipr.repo.nii.ac.jp:00015598 2025-04-13T14:25:55+00:00 Quantifying mass balance of East-Karakoram glaciers using geodetic technique Kumar, Anant Negi, H.S. Kumar, Kamal Shekhar, Chander Kanda, Neha 2019-03 https://nipr.repo.nii.ac.jp/records/15598 eng eng 10.1016/j.polar.2018.11.005 https://doi.org/10.1016/j.polar.2018.11.005 Polar Science 19 24 39 18739652 https://nipr.repo.nii.ac.jp/records/15598 metadata only access DEM Glacier Geodetic Mass balance Stereo satellite Karakoram 2019 ftnipr https://doi.org/10.1016/j.polar.2018.11.005 2025-03-19T10:19:56Z The Karakoram Range comprises the heavily glaciated mountains outside the Polar regions. A comprehensive assessment of glaciers variation in this region is crucial to ascertain constant water supply under different scenarios of futuristic climate change. Lack of accessibility to the Karakoram region has limited the use of conventional methods in monitoring variations in thickness and mass of glaciers, alternatively promoting the use of remote sensing based methods. The present study quantifies changes in thickness and mass budget of 24 glaciers in East-Karakoram region using geodetic technique. The Digital Elevation Model (DEM) adjustments and comparisons were made between Shuttle Radar Topography Mission (SRTM) C-band DEM, year 2000 and recent DEMs of the years 2009 and 2014, which were generated using stereo pairs of Panchromatic Remote Sensing Instrument for Stereo Mapping (PRISM) onboard the Advanced Land Observing Satellite (ALOS) and Cartosat-1 respectively. The vertical accuracy of recent DEMs was assessed using ICESat-1 laser points. Other biases such as elevation dependent, radar penetration, terrain curvature and seasonality were also rectified before computing the glacier mass balance. Geodetic esimates indicate an overall marginal thinning (−0.09 ± 0.16 m/yr) and negative mass budget (−0.08 ± 0.13 m.w.e./yr) during the years 2000–2014. Interestingly, one glacier showed surge-type activity (advancing and thickening terminus) during 2000-2014, with highest (0.59) Accumulation Area Ratio (AAR) amongst studied glaciers. Time series analysis of climate data (temperature and precipitation) recorded at field observatories depict overall warming in the East-Karakoram region. The higher rate of mass loss during 2009–2014 (−0.07 ± 0.13 m.w.e./yr) compared to 2000–2009 (−0.05 ± 0.12 m.w.e./yr) was found in agreement with the rise in temperature and decline in precipitation over the region during different years. The results thus indicate an insignificant mass loss in East-Karakoram glaciers and thus exhibit a ... Other/Unknown Material Polar Science Polar Science National Institute of Polar Research Repository, Japan Polar Science 19 24 39
spellingShingle DEM
Glacier
Geodetic Mass balance
Stereo satellite
Karakoram
Kumar, Anant
Negi, H.S.
Kumar, Kamal
Shekhar, Chander
Kanda, Neha
Quantifying mass balance of East-Karakoram glaciers using geodetic technique
title Quantifying mass balance of East-Karakoram glaciers using geodetic technique
title_full Quantifying mass balance of East-Karakoram glaciers using geodetic technique
title_fullStr Quantifying mass balance of East-Karakoram glaciers using geodetic technique
title_full_unstemmed Quantifying mass balance of East-Karakoram glaciers using geodetic technique
title_short Quantifying mass balance of East-Karakoram glaciers using geodetic technique
title_sort quantifying mass balance of east-karakoram glaciers using geodetic technique
topic DEM
Glacier
Geodetic Mass balance
Stereo satellite
Karakoram
topic_facet DEM
Glacier
Geodetic Mass balance
Stereo satellite
Karakoram
url https://nipr.repo.nii.ac.jp/records/15598