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Marty D Frisbee

Biographic Data

ID6426039
NAMEMarty D Frisbee
GIVEN NAMESMarty D
FAMILY NAMEFrisbee
SIGNATUREFRISBEE M D
AFFILIATIONSPurdue University West Lafayette
ORCID0000-0002-9928-7149
VERIFIEDYes
TOTAL WORKS2
TOTAL CITATIONS0
AUTHOR COUNT2
EDITOR COUNT0
FIRST PUBLICATION YEAR2021
LATEST PUBLICATION YEAR2021
H-INDEX0
  • Old groundwater buffers the effects of a major drought in groundwater-dependent ecosystems of the eastern Sierra Nevada (CA)

    Open Access•Zachary P Meyers, Marty D Frisbee et al.•ARTICLE•Environmental Research Letters•2021

    Global groundwater resources are stressed and the effects of climate change are projected to further disrupt recharge processes. Therefore, we must identify the buffers to climate change in hydrogeologic systems in order to understand which groundwater resources will be disproportionally affected by these changes. Here, we utilize a novel combination of remote sensing (e.g. Landsat) and groundwater residence time data ( 3 H, 36 Cl) to identify th…

  • Recharge from glacial meltwater is critical for alpine springs and their microbiomes

    Open Access•Jordyn Beth Miller, Marty D Frisbee et al.•ARTICLE•Environmental Research Letters•2021

    The importance of glacier meltwater as a source of mountain-block recharge remains poorly quantified, yet it may be essential to the integrity of alpine aquatic ecosystems by maintaining baseflow in streams and perennial flow in springs. We test the hypothesis that meltwater from alpine glaciers is a critical source of recharge for mountain groundwater systems using traditional stable isotopic source-identification techniques combined with a nove…

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  • Old groundwater buffers the effects of a major drought in groundwater-dependent ecosystems of the eastern Sierra Nevada (CA)

    Open Access•Zachary P Meyers, Marty D Frisbee et al.•ARTICLE•Environmental Research Letters•2021

    Global groundwater resources are stressed and the effects of climate change are projected to further disrupt recharge processes. Therefore, we must identify the buffers to climate change in hydrogeologic systems in order to understand which groundwater resources will be disproportionally affected by these changes. Here, we utilize a novel combination of remote sensing (e.g. Landsat) and groundwater residence time data ( 3 H, 36 Cl) to identify th…

  • Recharge from glacial meltwater is critical for alpine springs and their microbiomes

    Open Access•Jordyn Beth Miller, Marty D Frisbee et al.•ARTICLE•Environmental Research Letters•2021

    The importance of glacier meltwater as a source of mountain-block recharge remains poorly quantified, yet it may be essential to the integrity of alpine aquatic ecosystems by maintaining baseflow in streams and perennial flow in springs. We test the hypothesis that meltwater from alpine glaciers is a critical source of recharge for mountain groundwater systems using traditional stable isotopic source-identification techniques combined with a nove…

Aquifer (2 works) · Geography (2 works) · Geology (2 works) · Groundwater (2 works) · Groundwater recharge (2 works) · Hydrology (agriculture (2 works) · Arid (1 works) · Baseflow (1 works) · Climate change (1 works) · Drainage basin (1 works)

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