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    Delineation of spring recharge zones using environmental isotopes to support climate-resilient interventions in two mountainous catchments in far-western Nepal

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    Authors
    Matheswaran, K.
    Khadka, A.
    Dhaubanjar, Sanita
    Bharati, Luna
    Kumar, S.
    Shrestha, S.
    Date Issued
    2019-09
    Date Online
    2019-05
    Language
    en
    Type
    Journal Article
    Accessibility
    Open Access
    Usage rights
    Copyrighted; Non-commercial use only
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    Citation
    Matheswaran, K.; Khadka, A.; Dhaubanjar, Sanita; Bharati, Luna; Kumar, S.; Shrestha, S. 2019. Delineation of spring recharge zones using environmental isotopes to support climate-resilient interventions in two mountainous catchments in far-western Nepal. Hydrogeology Journal, 17p. (Online first) doi: 10.1007/s10040-019-01973-6
    Permanent link to cite or share this item: https://hdl.handle.net/10568/101516
    External link to download this item: https://link.springer.com/content/pdf/10.1007%2Fs10040-019-01973-6.pdf
    DOI: https://doi.org/10.1007/s10040-019-01973-6
    Abstract/Description
    Though springs are the primary source of water for communities in the mid-hills of Nepal, an in-depth scientific understanding of spring systems is missing, preventing the design of effective climate-resilient interventions for long-term sustainability of springs. This study marks the first attempt to combine environmental isotopes analysis with hydrometric and hydrogeological measurements to identify dominant recharge zones for springs in two mountainous catchments—Banlek and Shikarpur—in Far-Western Nepal. In total, 422 water samples collected from rainfall, springs and streams between March 2016 and March 2017 were analyzed for their isotopic composition (d18O and dD). Isotopic composition of rainwater shows seasonality, suggesting that different sources of water vapor cause rains in monsoon and in dry season. Rainfall responses of individual springs were used to identify connections to unconfined and deeper groundwater strata. The isotopic composition of springs in the two catchments ranges from -9.55 to -8.06‰ for d18O and -67.58 to -53.51‰ for dD. The isotopic signature of the spring sources falls close to the local meteoric water line for the corresponding season, indicating strong rainfall contribution to springs. Altitudinal isotopic gradients suggest mean recharge elevation of 2,600–2,700 m asl for springs in Shikarpur, which lies beyond the surface-water catchment, and a recharge elevation of 1,000–1,100 m asl for Banlek, which partially extends beyond the surface-water catchment. The demarcated recharge zones will be used by government agencies to implement recharge interventions to increase the resiliency and reliability of springs in Far-Western Nepal.
    AGROVOC Keywords
    water springs; groundwater recharge; artificial recharge; climate change; isotope analysis; stable isotopes; deuterium; highlands; catchment areas; hydrogeology; hydrometeorology; rainfall patterns; precipitation; flow discharge; altitude; monsoon climate; dry season
    Countries
    Nepal
    Regions
    Southern Asia
    Organizations Affiliated to the Authors
    International Water Management Institute
    Collections
    • IWMI Journal Articles [2546]
    • Variability, Risks and Competing Uses [298]

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