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Showing 1 to 6 of 6 for “"PnET-BGC"”.

  1. Dynamics of water, carbon, and nitrogen in forest and alpine tundra ecosystems in the Pacific Northwest and the Rocky Mountains of the U.S. under future climate change

    … watershed scale. Using a biogeochemical model, PnET-BGC, which has been extensively applied to the forest ecosystems in the northeastern United States, the interactive effects of multiple environmental factors on ecosystem function and element dynamics can be investigated. </p> <p>In this …

    syracuse-diss Repository record for Dynamics of water, carbon, and nitrogen in forest and alpine tundra ecosystems in the Pacific Northwest and the Rocky Mountains of the U.S. under future climate change (opens in a new tab)

  2. Modeling the interactions of forest cutting and climate change on the hydrology, biomass and biogeochemistry of a northeastern forest

    … over the long-term. The biogeochemical model, PnET-BGC has been used to simulate forest biomass, and soil and stream chemistry at the Hubbard Brook Experimental Forest (HBEF), New Hampshire, USA. Previous versions of PnET-BGC could accurately simulate the longer-term biogeochemical response to …

    syracuse-diss Repository record for Modeling the interactions of forest cutting and climate change on the hydrology, biomass and biogeochemistry of a northeastern forest (opens in a new tab)

  3. Modeling the Effects of Acid Deposition and Natural Organic Acids on Surface Waters

    … dissertation, I used a biogeochemical model, PnET-BGC, as a tool to investigate the influence of acid deposition and watershed characteristics on the extent and rate of surface water response to changes in atmospheric deposition. I applied PnET-BGC model to surface waters in two regions of the …

    syracuse-diss Repository record for Modeling the Effects of Acid Deposition and Natural Organic Acids on Surface Waters (opens in a new tab)

  4. Biogeochemical Modeling of the Response of Forest Watersheds in the Northeastern U.S. to Future Climate Change

    … coupled hydrological and biogeochemical model (PnET-BGC) to evaluate the effects of climate change and increasing concentrations of atmospheric CO2 at seven diverse, intensively studied, high-elevation watersheds and to evaluate aspects of these applications. I downscaled coarse scale results to …

    syracuse-diss Repository record for Biogeochemical Modeling of the Response of Forest Watersheds in the Northeastern U.S. to Future Climate Change (opens in a new tab)

  5. Effects of Acid Deposition and Changing Climate on the Hydrochemistry and Critical Loads of Watersheds in the Adirondack Region of New York

    … phase one, the integrated biogeochemical model PnET-BGC was applied to 25 forested watersheds that represent a range of acid sensitivity in the Adirondack region to simulate the response of streams to past and future changes in atmospheric S and N deposition, and to calculate the target loads of …

    syracuse-diss Repository record for Effects of Acid Deposition and Changing Climate on the Hydrochemistry and Critical Loads of Watersheds in the Adirondack Region of New York (opens in a new tab)

  6. Developing Critical Loads and Dynamic Critical Loads for Acidification for Watersheds in the Adirondack region of New York and Great Smoky Mountain National Park (GRSM)

    … In this study, a biogeochemical model (PnET-BGC) was applied to 20 watersheds in the Adirondack region and 12 watersheds in Great Smoky Mountain National Park (GRSM) to calculate CLs and DCLs. I evaluated ecosystem changes in response to historical and potential future changes in acidic …

    syracuse-diss Repository record for Developing Critical Loads and Dynamic Critical Loads for Acidification for Watersheds in the Adirondack region of New York and Great Smoky Mountain National Park (GRSM) (opens in a new tab)