mathematically equivalent re-formulation
allows to disable contribution from grain size by setting it to a large value
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@ -18,10 +18,9 @@ a_nonSchmid: [0.938, 0.71, 4.43]
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h_sl-sl: [0.009, 0.72, 0.009, 0.05, 0.05, 0.06, 0.09]
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w: [2.992e-09] # 11b
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i_sl: [1] # c, eq. (25)
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D: 1.0e+10 # d_g, eq. (25)
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D: 1.0e+20 # d_g, eq. (25)
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D_a: 1.0 # d_edge = D_a*b
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# climb (disabled)
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D_0: 0.0 # disable climb
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f_at: 1
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Q_cl: 1.0
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@ -196,7 +196,7 @@ module function plastic_dislotungsten_init() result(myPlasticity)
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prm%d_caron = pl%get_asFloat('D_a') * prm%b_sl
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! sanity checks
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if ( prm%D_0 <= 0.0_pReal) extmsg = trim(extmsg)//' D_0'
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if ( prm%D_0 < 0.0_pReal) extmsg = trim(extmsg)//' D_0'
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if ( prm%Q_cl <= 0.0_pReal) extmsg = trim(extmsg)//' Q_cl'
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if (any(rho_mob_0 < 0.0_pReal)) extmsg = trim(extmsg)//' rho_mob_0'
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if (any(rho_dip_0 < 0.0_pReal)) extmsg = trim(extmsg)//' rho_dip_0'
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@ -375,16 +375,17 @@ module subroutine dislotungsten_dependentState(ph,en)
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en
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real(pReal), dimension(param(ph)%sum_N_sl) :: &
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dislocationSpacing
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Lambda_sl_inv
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associate(prm => param(ph), stt => state(ph), dst => dependentState(ph))
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dislocationSpacing = sqrt(matmul(prm%forestProjection,stt%rho_mob(:,en)+stt%rho_dip(:,en)))
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dst%tau_pass(:,en) = prm%mu*prm%b_sl &
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* sqrt(matmul(prm%h_sl_sl,stt%rho_mob(:,en)+stt%rho_dip(:,en)))
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dst%Lambda_sl(:,en) = prm%D/(1.0_pReal+prm%D*dislocationSpacing/prm%i_sl)
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Lambda_sl_inv = 1.0_pReal/prm%D &
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+ sqrt(matmul(prm%forestProjection,stt%rho_mob(:,en)+stt%rho_dip(:,en)))/prm%i_sl
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dst%Lambda_sl(:,en) = Lambda_sl_inv**(-1.0_pReal)
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end associate
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