offset fixed
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@ -81,7 +81,8 @@ type :: tPhenopowerlawState
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xi_tw, &
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gamma_sl, &
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gamma_tw, &
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f_twin !< Achal
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f_twin, &
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fmc_twin !< Achal
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end type tPhenopowerlawState
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!--------------------------------------------------------------------------------------------------
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@ -256,16 +257,13 @@ do ph = 1, phases%length
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! allocate state arrays
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Nmembers = count(material_phaseID == ph)
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sizeDotState = size(['xi_sl ','gamma_sl']) * prm%sum_N_sl &
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+ size(['xi_tw ','gamma_tw','f_twin ']) * prm%sum_N_tw !&
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!+ size(['xi_tw ','f_twin ']) * prm%sum_N_tw !Achal
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+ size(['xi_tw ','gamma_tw','f_twin ']) * prm%sum_N_tw !Achal
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sizeDeltaState = size(['xi_sl ','gamma_sl']) * prm%sum_N_sl & !Achal
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+ size(['xi_tw ','gamma_tw']) * prm%sum_N_tw &
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+ size(['f_twin ']) * prm%sum_N_tw !Achal
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sizeDeltaState = size(['f_twin ','fmc_twin']) * prm%sum_N_tw !Achal
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sizeState = size(['xi_sl ','gamma_sl']) * prm%sum_N_sl &
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+ size(['xi_tw ','gamma_tw']) * prm%sum_N_tw &
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+ size(['f_twin ']) * prm%sum_N_tw !Achal
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+ size(['f_twin ','fmc_twin']) * prm%sum_N_tw !Achal
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@ -324,8 +322,15 @@ do ph = 1, phases%length
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idx_dot%f_twin = [startIndex,endIndex] ! Achal
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stt%f_twin => plasticState(ph)%state(startIndex:endIndex,:) ! Achal
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!dot%f_twin => plasticState(ph)%dotState(startIndex:endIndex,:)
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deltastate(ph)%f_twin => plasticState(ph)%state(startIndex-o:endIndex-o,:) ! Achal
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deltastate(ph)%f_twin => plasticState(ph)%deltaState(startIndex-o:endIndex-o,:) ! Achal
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plasticState(ph)%atol(startIndex:endIndex) = pl%get_asFloat('atol_gamma',defaultVal=1.0e-6_pReal)
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startIndex = endIndex + 1
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endIndex = endIndex + prm%totalNtwin
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stt%fmc_twin_nucl => plasticState(p)%state (startIndex:endIndex,:)
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dlt%fmc_twin_nucl => plasticState(p)%deltaState(startIndex-plasticState(p)%offsetDeltaState: &
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endIndex-plasticState(p)%offsetDeltaState,:)
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plasticState(p)%aTolState(startIndex:endIndex) = prm%aTolShear
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write(6,*)"offset", o ! Achal Delete
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@ -507,10 +512,11 @@ neighbors: do n = 1,nIPneighbors
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enddo neighbors
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tau_tw = [(math_tensordot(Mp,prm%P_tw(1:3,1:3,i)),i=1,prm%sum_N_tw)]
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twin_var = maxloc((0.05_pReal*(abs(tau_tw)/stt%xi_tw(:,en))**prm%n_tw)/prm%gamma_char,dim=1) ! This prints values from 1 to 6, fdot0_twin is taken as 0.05
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!twin_var = maxloc((0.05_pReal*(abs(tau_tw)/stt%xi_tw(:,en))**prm%n_tw)/prm%gamma_char,dim=1) ! This prints values from 1 to 6, fdot0_twin is taken as 0.05
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twin_var = maxloc(stt%f_twin(:,en),dim=1)
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!fdot_twin = (0.05_pReal*(abs(tau_tw)/stt%xi_tw(:,en))**prm%n_tw)/prm%gamma_char ! This is sometimes >1
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!write(6,*) 'twin_var', twin_var !delete this
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write(6,*) 'twin_var', twin_var !delete this
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!if (en==1) write(6,*)'correspondanceMatrix1', param(ph)%CorrespondanceMatrix(:,:,1) !delete this !delete this
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@ -519,13 +525,13 @@ call RANDOM_NUMBER(random)
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!write(6,*)'random',random !delete this
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!if (en==1) write(6,*)'f_twin', stt%f_twin(:,en)
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Success_Growth: if (random*0.0000000000000000000000001_pReal <= maxval((0.05_pReal*(abs(tau_tw) &
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Success_Nucleation: if (random*0.0000000000000000000000001_pReal <= maxval((0.05_pReal*(abs(tau_tw) &
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/stt%xi_tw(:,en))**prm%n_tw)/prm%gamma_char)) then ! Instead of sum take max
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twinJump = .true.
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deltaFp = prm%CorrespondanceMatrix(:,:,twin_var)
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del%f_twin(:,en) = 0.0_pReal - stt%f_twin(:,en)
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end if Success_Growth
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end if Success_Nucleation
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end associate
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