Spatial-diurnal variability of snow/glacier melt runoff in glacier regime river valley: Central Himalaya, India. (30th May 2021)
- Record Type:
- Journal Article
- Title:
- Spatial-diurnal variability of snow/glacier melt runoff in glacier regime river valley: Central Himalaya, India. (30th May 2021)
- Main Title:
- Spatial-diurnal variability of snow/glacier melt runoff in glacier regime river valley: Central Himalaya, India
- Authors:
- Ahluwalia, Rajeev S.
Rai, S.P.
Meetei, Prikash N.
Kumar, Sushil
Sarangi, Shushanta
Chauhan, Pankaj
Karakoti, Indira - Abstract:
- Abstract: Spatial-diurnal variability in the snow/glacier melt isotope signature and their influence on hydrograph separation based on mixing model received less attention. We present isotope data from a high elevation catchment (glacierized area: 286 km 2 ) in the central Himalaya (India) and investigated the spatial-diurnal variability of snow/glacier meltwater along with inferences of groundwater dynamics. Isotope signature variation in streamflow was small during the study period. We applied a two-component mixing model using oxygen-18 and electrical conductivity. Hydrograph separation (snow/glacier meltwater and groundwater) was carried out for Bhagirathi River at three sites i.e., Gaumukh, Bhojbasa, and Gangotri, during the ablation period of 2014 (September). The Bhagirathi River is a major tributary of river Ganga, originate from Gangotri Glacier (~30 km), the largest glacier in central Himalaya. The electrical conductivity of the river is measured in-situ and varies from 10 μS/cm to 100 μS/cm. The river water isotope signature of oxygen was ranged from −15.53‰ to −14.32‰ from Gaumukh to Gangotri, snow samples were ranged from - 17.63‰ to - 15.86‰ collected at Gaumukh. Groundwater samples were varied from −8.53‰ to-7.57‰ from Gaumukh to Gangotri. River water signature is close to snow/glacier melt runoff signature, reveal that the snow/glacier melt runoff contribution is higher in river flow. Average fractions of snow/glacier melt runoff were estimated ~82% to~76%,Abstract: Spatial-diurnal variability in the snow/glacier melt isotope signature and their influence on hydrograph separation based on mixing model received less attention. We present isotope data from a high elevation catchment (glacierized area: 286 km 2 ) in the central Himalaya (India) and investigated the spatial-diurnal variability of snow/glacier meltwater along with inferences of groundwater dynamics. Isotope signature variation in streamflow was small during the study period. We applied a two-component mixing model using oxygen-18 and electrical conductivity. Hydrograph separation (snow/glacier meltwater and groundwater) was carried out for Bhagirathi River at three sites i.e., Gaumukh, Bhojbasa, and Gangotri, during the ablation period of 2014 (September). The Bhagirathi River is a major tributary of river Ganga, originate from Gangotri Glacier (~30 km), the largest glacier in central Himalaya. The electrical conductivity of the river is measured in-situ and varies from 10 μS/cm to 100 μS/cm. The river water isotope signature of oxygen was ranged from −15.53‰ to −14.32‰ from Gaumukh to Gangotri, snow samples were ranged from - 17.63‰ to - 15.86‰ collected at Gaumukh. Groundwater samples were varied from −8.53‰ to-7.57‰ from Gaumukh to Gangotri. River water signature is close to snow/glacier melt runoff signature, reveal that the snow/glacier melt runoff contribution is higher in river flow. Average fractions of snow/glacier melt runoff were estimated ~82% to~76%, whereas groundwater was estimated ~18% to ~24%. The results of this study reveal the necessity of a multiple sampling approaches to characterize the snow/glacier melt and the importance of groundwater dynamics in catchments with snow/glacial runoff regime. Highlights: Isotopic characterization of diurnalriver water, snow/glacier melt runoff, and groundwater with electrical conductivity in high altitude valley of river Ganga. Estimation to evaluate snow/glacier melt runoff and groundwater interaction in riverusing the isotopic approach. … (more)
- Is Part Of:
- Quaternary international. Volume 585(2021)
- Journal:
- Quaternary international
- Issue:
- Volume 585(2021)
- Issue Display:
- Volume 585, Issue 2021 (2021)
- Year:
- 2021
- Volume:
- 585
- Issue:
- 2021
- Issue Sort Value:
- 2021-0585-2021-0000
- Page Start:
- 183
- Page End:
- 194
- Publication Date:
- 2021-05-30
- Subjects:
- Spatial-diurnal variation -- Stable isotope -- Snow/glacier melt runoff -- Groundwater -- Bhagirathi river
Geology, Stratigraphic -- Quaternary -- Periodicals
Stratigraphie -- Quaternaire -- Périodiques
551.79 - Journal URLs:
- http://www.sciencedirect.com/science/journal/10406182 ↗
http://www.elsevier.com/journals ↗
http://www.journals.elsevier.com/quaternary-international/ ↗ - DOI:
- 10.1016/j.quaint.2021.01.003 ↗
- Languages:
- English
- ISSNs:
- 1040-6182
- Deposit Type:
- Legaldeposit
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- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - 7210.043000
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- 16535.xml