CARDAMOM

CARDAMOM Overview:

  • CARDAMOM overview
  • Forward model
  • Model-data fusion

DALEC Model:

  • DALEC versions
    • DALEC 1100
      • Overview of DALEC 1100
      • Modules used by DALEC 1100
        • Photosynthesis
        • GPP Stress (Beta Functions)
        • Evapotranspiration
        • Phenology
        • Allocation and autotrophic respiration
        • Mortality
        • Bibliography
        • Heterotrophic Respiration
        • Soil physics and hydrology modules
      • Variables in DALEC 1100
    • DALEC 1101

Model-data fusion framework:

  • Cost function
  • Observation operators
  • MCMC

Using CARDAMOM:

  • File formats
  • Compilation
  • Analyst checklist
  • Contributing to this technical documentation
  • CARDAMOM.c governance structure

Old Markdown Manual:

  • Adding new netcdf variables and attributes
  • Diagnose and resolve memory leaks
  • CARDAMOM C developer guide
  • CARDAMOM Netcdf input file
  • CARDAMOM cost function
  • Debugging tips and FAQs
  • Getting Started with CARDAMOM
  • Using CARDAMOM’s github repository
  • MATLAB demo
  • MCMC overview
  • DALEC model IDs
  • Output Data and Analysis
  • Parallelization
  • Perturbation experiments using CARDAMOM outputs
  • Python demo

Miscellaneous

  • Copyright
CARDAMOM
  • DALEC versions
  • DALEC 1100
  • Modules used by DALEC 1100
  • View page source

Modules used by DALEC 1100

  • Photosynthesis
  • GPP Stress (Beta Functions)
    • Plant Water Potential GPP limitations
    • Cold weather GPP limitations
  • Evapotranspiration
    • Transpiration
    • Evaporation
  • Phenology
    • Overview
    • Background
    • Growth and Senescence
    • Water Limitation
    • Maximum Potential Leaf Area Index
    • Phenology-Determining Temperature
    • Coupling to the Carbon Balance
  • Allocation and autotrophic respiration
  • Mortality
  • Bibliography
  • Heterotrophic Respiration
  • Soil physics and hydrology modules
    • Soil hydrology
      • Overview
      • Prognostic and diagnostic water states
      • Infiltration into surface
      • Inter-layer water transfers
      • Subsurface runoff
    • Snow hydrology
    • LST-driven soil energy balance
      • 1. Closure of the soil energy inputs and outputs
      • 2. Water-mediated energy fluxes
      • 2. intra-soil energy exchanges mediated by thermal gradients and water fluxes
      • 3. LST-forced surface-to-suburface energy heat flux submodule
      • 4. diagnostic derivations of soil temperature and liquid H2O fraction, in coordination with the soil H2O balance module.
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