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Kazem Bakian-Dogaheh

Biographic Data

ID7996690
NAMEKazem Bakian-Dogaheh
GIVEN NAMESKazem
FAMILY NAMEBakian-Dogaheh
SIGNATUREBAKIAN-DOGAHEH K
AFFILIATIONSUniversity of Southern California
ORCID0000-0001-8897-0105
VERIFIEDYes
TOTAL WORKS3
TOTAL CITATIONS0
AUTHOR COUNT3
EDITOR COUNT0
FIRST PUBLICATION YEAR2021
LATEST PUBLICATION YEAR2024
H-INDEX0
  • Integrating multi-source remote sensing data for mapping boreal forest canopy height and species in interior Alaska in support of radar modeling

    Open Access•Yuhuan Zhao, Yu-Huan Zhao et al.•ARTICLE•Environmental Research Letters•2024

    Vegetation information is essential for analyzing aboveground biomass and understanding subsurface characteristics, such as root biomass, soil organic matter, and soil moisture conditions. In this study, we mapped boreal forest canopy height (FCH) and forest species (FS) distributions in the Delta Junction region of interior Alaska, by integrating multi-source remote sensing observations within a machine learning framework based on the extreme gr…

  • A model to characterize soil moisture and organic matter profiles in the permafrost active layer in support of radar remote sensing in Alaskan Arctic tundra

    Open Access•Kazem Bakian-Dogaheh, Richard H Chen et al.•ARTICLE•Environmental Research Letters•2022

    Organic matter (OM) content and a shallow water table are two key variables that govern the physical properties of the subsurface within the active layer of arctic soils underlain by permafrost, where the majority of biogeochemical activities take place. A detailed understanding of the soil moisture and OM profile behavior over short vertical distances through the active layer is needed to adequately model the subsurface physical processes. To ob…

  • Active layer thickness as a function of soil water content

    Open Access•Leah K Clayton, Kevin Schaefer et al.•ARTICLE•Environmental Research Letters•2021

    Active layer thickness (ALT) is a critical metric for monitoring permafrost. How soil moisture influences ALT depends on two competing hypotheses: (a) increased soil moisture increases the latent heat of fusion for thaw, resulting in shallower active layers, and (b) increased soil moisture increases soil thermal conductivity, resulting in deeper active layers. To investigate their relative influence on thaw depth, we analyzed the Field Measuremen…

No prominent works on this page.

  • Active layer thickness as a function of soil water content

    Open Access•Leah K Clayton, Kevin Schaefer et al.•ARTICLE•Environmental Research Letters•2021

    Active layer thickness (ALT) is a critical metric for monitoring permafrost. How soil moisture influences ALT depends on two competing hypotheses: (a) increased soil moisture increases the latent heat of fusion for thaw, resulting in shallower active layers, and (b) increased soil moisture increases soil thermal conductivity, resulting in deeper active layers. To investigate their relative influence on thaw depth, we analyzed the Field Measuremen…

  • A model to characterize soil moisture and organic matter profiles in the permafrost active layer in support of radar remote sensing in Alaskan Arctic tundra

    Open Access•Kazem Bakian-Dogaheh, Richard H Chen et al.•ARTICLE•Environmental Research Letters•2022

    Organic matter (OM) content and a shallow water table are two key variables that govern the physical properties of the subsurface within the active layer of arctic soils underlain by permafrost, where the majority of biogeochemical activities take place. A detailed understanding of the soil moisture and OM profile behavior over short vertical distances through the active layer is needed to adequately model the subsurface physical processes. To ob…

  • Integrating multi-source remote sensing data for mapping boreal forest canopy height and species in interior Alaska in support of radar modeling

    Open Access•Yuhuan Zhao, Yu-Huan Zhao et al.•ARTICLE•Environmental Research Letters•2024

    Vegetation information is essential for analyzing aboveground biomass and understanding subsurface characteristics, such as root biomass, soil organic matter, and soil moisture conditions. In this study, we mapped boreal forest canopy height (FCH) and forest species (FS) distributions in the Delta Junction region of interior Alaska, by integrating multi-source remote sensing observations within a machine learning framework based on the extreme gr…

Climate change and permafrost (3 works) · Cryospheric studies and observations (3 works) · Environmental Science (3 works) · Geology (3 works) · Active layer (2 works) · Geotechnical engineering (2 works) · Hydraulic conductivity (2 works) · Layer (electronics (2 works) · Materials Science (2 works) · Permafrost (2 works)

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