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  • Attendees: Philippe, Vlad, Marie, Chris, Souhail, Gianpaolo, Joey, Anna
  • Gianpaolo: Complexity of carbon pools: introduce pools under logical flags. Needs to pass all the CI tests, like for SPARKY (in CY50R1 open IFS?). 
  • Joey: SPARKY has already 4 pools relevant to the fire fuel which have grib codes. Dead leaves, live leaves, dead wood, live wood (question) 
  • Chris: Vertically discretised soil pools.
  • If the carbon pools are not in equilibrium, there will be a drift in NEE, and have artificial trends.
  • Gianpaolo: When implementing the water table also found the model wants to go to its own equilibrium. The slow carbon pools will be set to be in equilibrium and treat the other datasets (SWHD) can be treated as benchmark. 
  • Philippe, Gianpaolo: The equilibrium can be achieved using an analytical approach given the model is simple given the LAI and ABG biomass to close the budget. 
  • Philippe: How to deal with LAI increments from satellites. Anna: Closing the carbon budget is important. 
  • Joey: SPARKY start with LAI increment then convert to SLA (specific leaf area)
  • Chris: Mentioned disadvantages of LAI increments that could also be wrong. There is the option for NWP to also use dynamic LAI (Souhail's work). Observed LAI is not defined in the same way as the LAI in the model. 
  • LSCE will do the first implementation of the C pools at the LSCE computing system, but CY501 should be used.
    • 1st step will be to identify all the ORCHIDEE modules/routines required for the C pools
    • 2nd step: link to ecLand variables
    • 3rd step: do a first test at LSCE
    • 4th step: transfer to ECMWF hpc
  • Gianpaolo: PLUMBER sites used in CalMIP (~42 sites)
  • The CalMIP sites will be used to evaluate model at FLUXNET sites
  • The changes in the C pools should also consider the coupling with the CH4 wetland model. 
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