Changes between Version 26 and Version 27 of DevelopmentActivities/ORCHIDEE-CN/NH3


Ignore:
Timestamp:
2017-07-07T15:18:19+02:00 (7 years ago)
Author:
taudoux
Comment:

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  • DevelopmentActivities/ORCHIDEE-CN/NH3

    v26 v27  
    320320 
    321321 
    322 In order to know if the loop is closed, we stacked in barplot all the nitrogen outputs (N2, N2O, NH3, NOX emissions ; NH4 and NO3 Leaching; NH4 and NO3 Plant Uptake ; difference between nitrogen pools shown previously) divided by all nitrogen inputs (NOX and NHX deposition; Mineralisation but also Fertilizer) [[BR]] 
     322In order to know if the loops are closed : [[BR]]  
     323Loop at inorganic nitrogen scale : we stacked in barplot all the nitrogen outputs (N2, N2O, NH3, NOX emissions ; NH4 and NO3 Leaching; NH4 and NO3 Plant Uptake ; difference between nitrogen pools shown previously) divided by all nitrogen inputs (NOX and NHX deposition; Mineralisation but also Fertilizer) [[BR]] 
    323324path : /home/users/taudoux/documents/Results/B/EFe/ [[BR]]  
    324325 
     
    358359||= 0.5 =||= 0.8 =|| 
    359360||= [[Image(US-Ne3_0.5e.png, 50%)]] =||= [[Image(US-Ne3_0.8e.png, 50%)]] =|| 
     361 
     362 
     363Loop at ORCHIDEE scale : we stacked in barplot all the nitrogen outputs (N2, N2O, NH3, NOX emissions ; NH4 and NO3 Leaching; ; difference between nitrogen pools shown previously + difference between SOIL_ACTIVE_N , SOIL_SURF_N , SOIL_SLOW_N , SOIL_PASSIVE_N , TOTAL_M_N LITTER_STR_AB_N , LITTER_MET_AB_N , LITTER_STR_BE_N , LITTER_MET_BE_N , LITTER_WOD_AB_N , LITTER_WOD_BE_N); divided by all nitrogen inputs (NOX and NHX deposition and Fertilizer) [[BR]] 
     364 
     365||||= DK-Ris =|| 
     366||= 0.5 =||= 0.8 =|| 
     367||= [[Image(DK-Ris_0.5ebis.png, 50%)]] =||= [[Image(DK-Ris_0.8ebis.png, 50%)]] =|| 
     368 
     369||||= FR-Gri =|| 
     370||= 0.5 =||= 0.8 =|| 
     371||= [[Image(FR-Gri_0.5ebis.png, 50%)]] =||= [[Image(FR-Gri_0.8ebis.png, 50%)]] =|| 
     372 
     373||||= NL-Lan =|| 
     374||= 0.5 =||= 0.8 =|| 
     375||= [[Image(NL-Lan_0.5ebis.png, 50%)]] =||= [[Image(NL-Lan_0.8ebis.png, 50%)]] =|| 
     376 
     377||||= NL-Lut =|| 
     378||= 0.5 =||= 0.8 =|| 
     379||= [[Image(NL-Lut_0.5ebis.png, 50%)]] =||= [[Image(NL-Lut_0.8ebis.png, 50%)]] =|| 
     380 
     381||||= US-Bo1 =|| 
     382||= 0.5 =||= 0.8 =|| 
     383||= [[Image(US-Bo1_0.5ebis.png, 50%)]] =||= [[Image(US-Bo1_0.8ebis.png, 50%)]] =|| 
     384 
     385||||= US-Ne1 =|| 
     386||= 0.5 =||= 0.8 =|| 
     387||= [[Image(US-Ne1_0.5ebis.png, 50%)]] =||= [[Image(US-Ne1_0.8ebis.png, 50%)]] =|| 
     388 
     389 
     390||||= US-Ne2 =|| 
     391||= 0.5 =||= 0.8 =|| 
     392||= [[Image(US-Ne2_0.5ebis.png, 50%)]] =||= [[Image(US-Ne2_0.8ebis.png, 50%)]] =|| 
     393 
     394 
     395||||= US-Ne3 =|| 
     396||= 0.5 =||= 0.8 =|| 
     397||= [[Image(US-Ne3_0.5ebis.png, 50%)]] =||= [[Image(US-Ne3_0.8ebis.png, 50%)]] =|| 
    360398 
    361399 
     
    363401Here are the results : [[BR]] 
    364402path : /home/users/taudoux/documents/Results/B/EFi/ 
     403 
    365404||= FR-Gri =|| 
    366405||= 0.8 =|| 
     
    380419||= 0.8 =|| 
    381420||= [[Image(US-Ne3_0.8i.png, 50%)]] =|| 
     421 
     422 
     423Code was whanged : run_off, the variable "harvest_above_n" were added and ''the denitrifiers activity was changed''. [[BR]]  
     424We looked again at the differents loops. [[BR]]  
     425 
     426Loop at inorganic nitrogen scale : we stacked in barplot all the nitrogen outputs (N2, N2O, NH3, NOX emissions ; NH4 and NO3 Leaching; NH4 and NO3 Plant Uptake ; difference between nitrogen pools shown previously) divided by all nitrogen inputs (NOX and NHX deposition; Mineralisation but also Fertilizer) [[BR]] 
     427 
     428Values in abscissa are all the nitrogen inputs but the fertilization is for each point : 0 , 54.8 , 82.2 , 109.6 , 140 , 164.4 , 191.8 , 219.2 , 365.25 kg/ha/y. 
     429 
     430||= DK-Ris =|| 
     431||= 0.5 =|| 
     432||= [[Image(DK-Ris_0.5f.png, 50%)]] =|| 
     433 
     434||= FR-Gri =|| 
     435||= 0.5 =|| 
     436||= [[Image(FR-Gri_0.5f.png, 50%)]] =|| 
     437 
     438||= NL-Lan =|| 
     439||= 0.5 =|| 
     440||= [[Image(NL-Lan_0.5f.png, 50%)]] =|| 
     441 
     442||= NL-Lut =|| 
     443||= 0.5 =|| 
     444||= [[Image(NL-Lut_0.5f.png, 50%)]] =|| 
     445 
     446||= US-Bo1 =|| 
     447||= 0.5 =|| 
     448||= [[Image(US-Bo1_0.5f.png, 50%)]] =|| 
     449 
     450||= US-Ne1 =|| 
     451||= 0.5 =|| 
     452||= [[Image(US-Ne1_0.5f.png, 50%)]] =|| 
     453 
     454 
     455||= US-Ne2 =|| 
     456||= 0.5 =|| 
     457||= [[Image(US-Ne2_0.5f.png, 50%)]] =|| 
     458 
     459 
     460||= US-Ne3 =|| 
     461||= 0.5 =|| 
     462||= [[Image(US-Ne3_0.5f.png, 50%)]] =|| 
     463 
     464Loop at ORCHIDEE scale : we stacked in barplot all the nitrogen outputs (N2, N2O, NH3, NOX emissions ; NH4 and NO3 Leaching; ; difference between nitrogen pools shown previously + difference between SOIL_ACTIVE_N , SOIL_SURF_N , SOIL_SLOW_N , SOIL_PASSIVE_N , TOTAL_M_N LITTER_STR_AB_N , LITTER_MET_AB_N , LITTER_STR_BE_N , LITTER_MET_BE_N , LITTER_WOD_AB_N , LITTER_WOD_BE_N) and the variable harvest_above_n; divided by all nitrogen inputs (NOX and NHX deposition and Fertilizer) [[BR]] 
     465 
     466||= DK-Ris =|| 
     467||= 0.5 =|| 
     468||= [[Image(DK-Ris_0.5g.png, 50%)]] =|| 
     469 
     470||= FR-Gri =|| 
     471||= 0.5 =|| 
     472||= [[Image(FR-Gri_0.5g.png, 50%)]] =|| 
     473 
     474||= NL-Lan =|| 
     475||= 0.5 =|| 
     476||= [[Image(NL-Lan_0.5g.png, 50%)]] =|| 
     477 
     478||= NL-Lut =|| 
     479||= 0.5 =|| 
     480||= [[Image(NL-Lut_0.5g.png, 50%)]] =|| 
     481 
     482||= US-Bo1 =|| 
     483||= 0.5 =|| 
     484||= [[Image(US-Bo1_0.5g.png, 50%)]] =|| 
     485 
     486||= US-Ne1 =|| 
     487||= 0.5 =|| 
     488||= [[Image(US-Ne1_0.5g.png, 50%)]] =|| 
     489 
     490 
     491||= US-Ne2 =|| 
     492||= 0.5 =|| 
     493||= [[Image(US-Ne2_0.5g.png, 50%)]] =|| 
     494 
     495 
     496||= US-Ne3 =|| 
     497||= 0.5 =|| 
     498||= [[Image(US-Ne3_0.5g.png, 50%)]] =|| 
     499 
     500 
     501