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pmip3:cmip6:design:21k:index [2015/03/24 21:51]
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pmip3:cmip6:design:21k:index [2015/03/27 15:21]
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 <note tip>\\ Please submit your comments in the Discussion section at the end of this page</​note>​ <note tip>\\ Please submit your comments in the Discussion section at the end of this page</​note>​
  
-~~DISCUSSION~~+The last glacial maximum (lgm, ~21000 years ago) is the last global cold extreme in which greenhouse gas concentrations were at their minimum and continental ice-sheet at their maximum size, covering large areas of northern North America and northwestern Eurasia. Like the mid-Holocene,​ the lgm has been a key PMIP experiment since PMIP started, and as such has been the focus for paleo-data syntheses.
  
-====== PMIP-CMIP6 Experimental Design Discussion: Last Glacial Maximum ======+The reference experiment to which the lgm is compared to is the pre-industrial control, which is part of the DECK.
  
-<note tip>\\ Please submit your comments in the Discussion section at the end of this page</​note>​+For the **LGM**, our proposed experimental set-up for PMIP-CMIP6 is based on the [[pmip3:​design:​21k:​final|PMIP3-CMIP5 set-up]]:
  
-The last glacial maximum (lgm, ~21000 years ago) is the last global cold extreme in which greenhouse gas concentrations were at their minimum and continental ice-sheet at their maximum size, covering large areas of northern North America and northwestern Eurasia. Like the mid-Holocene,​ the lgm has been a key PMIP experiment since PMIP started, and as such has been the focus for paleo-data syntheses.+===== Orbital parameters =====
  
-The reference experiment to which the lgm is compared to is the pre-industrial control, which is part of the DECK.+**eccentricity** = 0.018994 ​
  
-The lgm experimental set-up foreseen for PMIP-CMIP5 is as follows (cfPMIP3 web site, with some modifications):​+**obliquity** = 22.949° 
  
-**Insolation** (quite similar to pre-industrial)+**perihelion-180°** = 114.42°
  
-eccentricity ​0.018994 ​+**Date of vernal equinox** ​March 21 at noon 
  
-obliquity ​22.949° ​+**solar constant** ​same as PI
  
-perihelion-180° = 114.42° 
  
-solar constant: same as PI+===== Concentration of atmospheric trace gases =====
  
-**Concentration of atmospheric trace gases:**+**CO<​sub>​2</​sub>​** = 185 ppm
  
-CO2 185 ppm+**CH<​sub>​4</​sub>​** ​350 ppb
  
-CH4 350 ppb+**N<​sub>​2</​sub>​O** ​200 ppb
  
-N2O 200 ppb+**CFC** ​0
  
-CFC 0+**O<​sub>​3</​sub>​** ​same as in CMIP5 PI 
  
-O3 = same as in CMIP5 PI  
  
 +===== Topography/​bathymetry/​coastlines/​ice sheets =====
  
-** Topography/bathymetry/​coastlines/​ice sheets **: +This is one of the major changes compared to pre-industrial. Prescribing the lgm ice sheets means implementing new coastlines, a new topography/​bathymetry ​and a new ice sheet extent.
  
-This is one of the major changes compared ​to pre-industrial. Imposing ​the lgm ice sheets ​means imposing new coastlines, ​new topography/​bathymatry ​and new ice sheet extent.+  * Modelling groups planning ​to run the lgm experiment but **not the deglaciation** are advised to use the [[pmip3:​design:​21k:​final#​ice-sheets_and_related_changes|PMIP3 ​ice sheets/coastlines]]so that PMIP3-CMIP5 ​and CMIP6 can be rigorously compared.
  
-For those modelling ​groups ​running the lgm experiment but not the deglaciation, we recommend to use the PMIP3 ice sheets/​coastlines,​ for simulations for PMIP3-CMIP5 ​and CMIP6 to be strictly comparable.+  * Modelling ​groups ​planning to **run lgm as the start of the the deglaciation ​experiment** (cf [[pmip3:​wg:​degla:​index|PMIP3 deglaciation working group]]) can use the new boundary conditions provided by Dick Peltier ​and Lev Tarasov.
  
-For those modelling groups who plan to run the deglaciation experiment (cf PMIP3 deglaciation working group), the new boundary conditions provided by Dick Peltier and Lev Tarasov can be used as well. 
  
-** Vegetation and land surface:**+===== Vegetation and land surface ​=====
  
-Computed using a dynamical vegetation module,+  * Computed using a dynamical vegetation module, 
 +  * or prescribed as in PI, with phenology computed for models with active carbon cycle 
 +  * or prescribed from data
  
-Or prescribed as in PI, with phenology computed for models with active carbon cycle or prescribed from data 
  
 +===== Carbon cycle =====
  
 +Interactive,​ with atmospheric concentration prescribed and ocean and land carbon fluxes diagnosed as recommended in CMIP5.
  
-** Carbon cycle **+For PCMIP: fully interactive with atmospheric concentration computed by the model.
  
-Interactive,​ with atmospheric concentration prescribed and ocean and land carbon fluxes diagnosed as recommended in CMIP5 
  
-** Dust cycle **+===== Dust cycle =====
  
 We invite the modelling groups planning to run simulations with an interactive dust cycle to comment on the most appropriate methodology for their model, in particular as to their ability to use a interactive vegetation description. We invite the modelling groups planning to run simulations with an interactive dust cycle to comment on the most appropriate methodology for their model, in particular as to their ability to use a interactive vegetation description.
  
-** A note 
  
 +===== Note on the fresh water budget =====
 +
 +Modelling groups are advised to carefully check the fresh water budget in their lgm experiments in order to avoid unnecessary drifts of the ocean salinity. It can be necessary to route the snow which has fallen in excess on the ice sheets to the ocean. Given the change in coastlines, it is also sometimes necessary relocate the large rivers'​ estuaries on the coast.
 +
 +
 +===== Global ocean salinity =====
  
-\\ \\ \\  +Add **1 PSU**.
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pmip3/cmip6/design/21k/index.txt · Last modified: 2016/06/20 15:34 by jypeter