1 | ! ================================================================================================================================= |
---|
2 | ! MODULE : stomate_woodharvest |
---|
3 | ! |
---|
4 | ! CONTACT : orchidee-help _at_ listes.ipsl.fr |
---|
5 | ! |
---|
6 | ! LICENCE : IPSL (2006) |
---|
7 | ! This software is governed by the CeCILL licence see ORCHIDEE/ORCHIDEE_CeCILL.LIC |
---|
8 | ! |
---|
9 | !>\BRIEF Impact of land cover change on carbon stocks |
---|
10 | !! |
---|
11 | !!\n DESCRIPTION: None |
---|
12 | !! |
---|
13 | !! RECENT CHANGE(S): None |
---|
14 | !! |
---|
15 | !! REFERENCE(S) : None |
---|
16 | !! |
---|
17 | !! SVN : |
---|
18 | !! $HeadURL: svn://forge.ipsl.jussieu.fr/orchidee/trunk/ORCHIDEE/src_stomate/stomate_woodharvest.f90 $ |
---|
19 | !! $Date: 2016-01-06 13:15:53 +0100 (mer. 06 janv. 2016) $ |
---|
20 | !! $Revision: 3094 $ |
---|
21 | !! \n |
---|
22 | !_ ================================================================================================================================ |
---|
23 | |
---|
24 | |
---|
25 | MODULE stomate_woodharvest |
---|
26 | |
---|
27 | USE ioipsl_para |
---|
28 | USE stomate_data |
---|
29 | USE pft_parameters |
---|
30 | USE constantes |
---|
31 | |
---|
32 | IMPLICIT NONE |
---|
33 | |
---|
34 | PRIVATE |
---|
35 | PUBLIC woodharvest_main |
---|
36 | |
---|
37 | CONTAINS |
---|
38 | |
---|
39 | |
---|
40 | !! ================================================================================================================================ |
---|
41 | !! SUBROUTINE : woodharvest_main |
---|
42 | !! |
---|
43 | !>\BRIEF Impact of wood harvest on carbon stocks |
---|
44 | !! |
---|
45 | !! DESCRIPTION : This subroutine is always activate if DO_WOOD_HARVEST=y in the configuration file. |
---|
46 | !! woodharvest_main is called from stomateLpj every year (at the beginning) |
---|
47 | !! The impact of wood harvest on carbon stocks is computed in this subroutine. The land cover change is written |
---|
48 | !! by the difference of current and previous "maximal" coverage fraction of a PFT. |
---|
49 | !! On the basis of this difference, the amount of 'new establishment'/'biomass export', |
---|
50 | !! and increase/decrease of each component, are estimated.\n |
---|
51 | !! |
---|
52 | !! Main structure of woodharvest is: |
---|
53 | !! 1. Initialization |
---|
54 | !! 2. Calculation of changes in carbon stocks and biomass by wood harvest |
---|
55 | !! 3. Update 10 year- and 100 year-turnover pool contents |
---|
56 | !! 4. History |
---|
57 | !! |
---|
58 | !! RECENT CHANGE(S) : None |
---|
59 | !! |
---|
60 | !! MAIN OUTPUT VARIABLE(S) : ::prod10, ::prod100, ::flux10, ::flux100, |
---|
61 | !! :: cflux_prod10 and :: cflux_prod100 |
---|
62 | !! |
---|
63 | !! REFERENCES : None |
---|
64 | !! |
---|
65 | !! FLOWCHART : |
---|
66 | !! \n |
---|
67 | !_ ================================================================================================================================ |
---|
68 | |
---|
69 | |
---|
70 | SUBROUTINE woodharvest_main ( npts, dt_days, veget_max_old, & |
---|
71 | biomass, & |
---|
72 | flux10_harvest,flux100_harvest, prod10_harvest,prod100_harvest,& |
---|
73 | convflux_harvest,cflux_prod10_harvest,cflux_prod100_harvest,& |
---|
74 | harvestwood,harvestpft,fHarvestToProduct) |
---|
75 | |
---|
76 | IMPLICIT NONE |
---|
77 | |
---|
78 | !! 0. Variable and parameter declaration |
---|
79 | |
---|
80 | !! 0.1 Input variables |
---|
81 | |
---|
82 | INTEGER, INTENT(in) :: npts !! Domain size - number of pixels (unitless) |
---|
83 | REAL(r_std), INTENT(in) :: dt_days !! Time step of vegetation dynamics for stomate (days) |
---|
84 | REAL(r_std), DIMENSION(npts,nvm), INTENT(in) :: veget_max_old !! Current "maximal" coverage fraction of a PFT (LAI |
---|
85 | !! -> infinity) on ground |
---|
86 | REAL(r_std), DIMENSION(npts), INTENT(in) :: harvestwood !! Harvested wood biomass (gC m-2 yr-1) |
---|
87 | |
---|
88 | !! 0.2 Output variables |
---|
89 | |
---|
90 | REAL(r_std), DIMENSION(npts), INTENT(out) :: convflux_harvest !! flux release during first year following wood harvest |
---|
91 | REAL(r_std), DIMENSION(npts), INTENT(out) :: cflux_prod10_harvest !! total annual release from the 10 year-turnover |
---|
92 | !! pool @tex ($gC m^{-2}$) @endtex |
---|
93 | REAL(r_std), DIMENSION(npts), INTENT(out) :: cflux_prod100_harvest !! total annual release from the 100 year- |
---|
94 | !! turnover pool @tex ($gC m^{-2}$) @endtex |
---|
95 | REAL(r_std), DIMENSION(npts,nvm), INTENT(out) :: harvestpft !! wood harvested for each PFT |
---|
96 | !! @tex ($gC m^{-2} day^{-1}$) @endtex |
---|
97 | REAL(r_std), DIMENSION(npts,nvm), INTENT(out) :: fHarvestToProduct !! Harvested biomass into product pool due to anthorpogenic |
---|
98 | !! land use (gC m-2 ) |
---|
99 | !! 0.3 Modified variables |
---|
100 | |
---|
101 | REAL(r_std), DIMENSION(npts,nvm,nparts,nelements), INTENT(inout) :: biomass !! biomass @tex ($gC m^{-2}$) @endtex |
---|
102 | REAL(r_std), DIMENSION(npts,0:10), INTENT(inout) :: prod10_harvest !! products remaining in the 10/100 year-turnover pool |
---|
103 | !! after the annual release for each compartment |
---|
104 | !! (10 or 100 + 1 : input from year of land cover change) |
---|
105 | REAL(r_std), DIMENSION(npts,0:100), INTENT(inout) :: prod100_harvest !! see prod10_havest |
---|
106 | REAL(r_std), DIMENSION(npts,10), INTENT(inout) :: flux10_harvest !! annual release from the 10 year-turnover pool compartments |
---|
107 | |
---|
108 | REAL(r_std), DIMENSION(npts,100), INTENT(inout) :: flux100_harvest !! annual release from the 100 year-turnover pool compartments |
---|
109 | |
---|
110 | !! 0.4 Local variables |
---|
111 | |
---|
112 | INTEGER(i_std) :: i, j, l, m !! indices (unitless) |
---|
113 | REAL(r_std) :: harvest !! wood harvest renomalized by forest fraction |
---|
114 | REAL(r_std) :: relharvest !! relative harvest fraction of each pft |
---|
115 | REAL(r_std) :: relbiomass !! relative biomass of each PFT |
---|
116 | REAL(r_std) :: vegettree !! vegfrac of trees |
---|
117 | REAL(r_std) :: abovemean !! mean aboveground biomass @tex ($gC m^{-2}$) @endtex |
---|
118 | !_ ================================================================================================================================ |
---|
119 | |
---|
120 | IF (printlev>=3) WRITE(numout,*) 'Entering woodharvest_main' |
---|
121 | |
---|
122 | !! 1. initialization |
---|
123 | |
---|
124 | !! 2. calculation of changes in carbon stocks and biomass by wood harvest \n |
---|
125 | !! 2.1 initialization of carbon stocks\n |
---|
126 | prod10_harvest(:,0) = zero |
---|
127 | prod100_harvest(:,0) = zero |
---|
128 | convflux_harvest(:) = zero |
---|
129 | cflux_prod10_harvest(:) = zero |
---|
130 | cflux_prod100_harvest(:) = zero |
---|
131 | harvestpft(:,:) = zero |
---|
132 | |
---|
133 | fHarvestToProduct(:,:) = zero |
---|
134 | |
---|
135 | DO i = 1, npts |
---|
136 | abovemean=0 |
---|
137 | vegettree=0 |
---|
138 | !! 2.3 calculation of total forest fraction and mean biomass |
---|
139 | DO j=1, nvm |
---|
140 | if (is_tree(j)) THEN |
---|
141 | abovemean=abovemean+((biomass(i,j,iheartabove,icarbon)+biomass(i,j,isapabove,icarbon)))*veget_max_old(i,j) |
---|
142 | vegettree=vegettree+veget_max_old(i,j) |
---|
143 | ENDIF |
---|
144 | ENDDO |
---|
145 | IF (vegettree > min_stomate) THEN |
---|
146 | |
---|
147 | harvest=harvestwood(i) |
---|
148 | abovemean=abovemean/vegettree |
---|
149 | |
---|
150 | !! 2.4 wood harvest for each PFT is estimated proportionally to the relative biomass. |
---|
151 | DO j=1,nvm |
---|
152 | relharvest=0 |
---|
153 | IF ((is_tree(j)) .AND. (abovemean > min_stomate) .AND. & |
---|
154 | (biomass(i,j,iheartabove,icarbon)+biomass(i,j,isapabove,icarbon)>min_stomate)) THEN |
---|
155 | relbiomass=((biomass(i,j,iheartabove,icarbon)+biomass(i,j,isapabove,icarbon))/abovemean) |
---|
156 | relharvest=harvest*relbiomass |
---|
157 | |
---|
158 | !! 2.5 the harvest could not be higher than 20% of the biomasse to avoid rapid killing of vegetation |
---|
159 | IF ((biomass(i,j,iheartabove,icarbon)+biomass(i,j,isapabove,icarbon))*0.2<relharvest) & |
---|
160 | relharvest=(biomass(i,j,iheartabove,icarbon)+biomass(i,j,isapabove,icarbon))*0.2; |
---|
161 | biomass(i,j,iheartabove,:)= biomass(i,j,iheartabove,:) - & |
---|
162 | relharvest*(biomass(i,j,iheartabove,:)/(biomass(i,j,iheartabove,:)+biomass(i,j,isapabove,:))) |
---|
163 | biomass(i,j,isapabove,:)= biomass(i,j,isapabove,:) - & |
---|
164 | relharvest*(biomass(i,j,isapabove,:)/(biomass(i,j,iheartabove,:)+biomass(i,j,isapabove,:))) |
---|
165 | |
---|
166 | fHarvestToProduct(i,j)=relharvest*veget_max_old(i,j) |
---|
167 | ! 2.6 calculation of different flux like for LU |
---|
168 | convflux_harvest(i) = convflux_harvest(i) +coeff_lcchange_1(j)*relharvest*veget_max_old(i,j) |
---|
169 | harvestpft(i,j)=relharvest*dt_days/one_year |
---|
170 | prod10_harvest(i,0) = prod10_harvest(i,0) +coeff_lcchange_10(j)*relharvest*veget_max_old(i,j) |
---|
171 | prod100_harvest(i,0) = prod100_harvest(i,0) +coeff_lcchange_100(j)*relharvest*veget_max_old(i,j) |
---|
172 | ENDIF |
---|
173 | ENDDO |
---|
174 | ENDIF |
---|
175 | |
---|
176 | cflux_prod10_harvest(i) = cflux_prod10_harvest(i) + flux10_harvest(i,1) |
---|
177 | flux10_harvest(i,1) = 0.1 * prod10_harvest(i,0) |
---|
178 | prod10_harvest(i,1) = prod10_harvest(i,0) |
---|
179 | |
---|
180 | !! 3.5 update 100 year-turnover pool content following flux emission\n |
---|
181 | DO l = 0, 98 |
---|
182 | m = 100 - l |
---|
183 | cflux_prod100_harvest(i) = cflux_prod100_harvest(i) + flux100_harvest(i,m) |
---|
184 | prod100_harvest(i,m) = prod100_harvest(i,m-1) - flux100_harvest(i,m-1) |
---|
185 | flux100_harvest(i,m) = flux100_harvest(i,m-1) |
---|
186 | IF (prod100_harvest(i,m).LT.1.0) prod100_harvest(i,m) = zero |
---|
187 | ENDDO |
---|
188 | |
---|
189 | cflux_prod100_harvest(i) = cflux_prod100_harvest(i) + flux100_harvest(i,1) |
---|
190 | flux100_harvest(i,1) = 0.01 * prod100_harvest(i,0) |
---|
191 | prod100_harvest(i,1) = prod100_harvest(i,0) |
---|
192 | prod10_harvest(i,0) = 0.0 |
---|
193 | prod100_harvest(i,0) = 0.0 |
---|
194 | |
---|
195 | ENDDO ! Loop over # pixels - domain size |
---|
196 | |
---|
197 | !! 4. history |
---|
198 | convflux_harvest = convflux_harvest/one_year*dt_days |
---|
199 | cflux_prod10_harvest = cflux_prod10_harvest/one_year*dt_days |
---|
200 | cflux_prod100_harvest = cflux_prod100_harvest/one_year*dt_days |
---|
201 | fHarvestToProduct = fHarvestToProduct/one_year*dt_days |
---|
202 | IF (printlev>=4) WRITE(numout,*) 'Leaving woodharvest_main' |
---|
203 | |
---|
204 | END SUBROUTINE woodharvest_main |
---|
205 | |
---|
206 | END MODULE stomate_woodharvest |
---|