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Comment:Updated for new formats
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SHA3-256: cc854cc932f558386f681dd72ce0a24add7ea54c511d374ec5833e88a2d42124
User & Date: gawthrop@users.sourceforge.net on 2000-12-28 18:52:25
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Context
2001-02-02
21:26:30
*** empty log message *** check-in: 2c77a50aab user: gawthrop@users.sourceforge.net tags: origin/master, trunk
2000-12-28
18:52:25
Updated for new formats check-in: cc854cc932 user: gawthrop@users.sourceforge.net tags: origin/master, trunk
18:42:18
New input definition.
NB Needs to handle mutiports properly and state.txt modified accordingly
check-in: f46da74fa9 user: gawthrop@users.sourceforge.net tags: origin/master, trunk
Changes

Modified mttroot/mtt/lib/examples/Chemical/Reactor/Reactor_input.txt from [94324e4c27] to [033dc74e44].

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# -*-octave-*- Put Emacs into octave-mode
# Input specification (Reactor_input.txt)
# Generated by MTT at Fri Mar  3 11:52:23 GMT 2000
###############################################################
## Version control history
###############################################################
## $Id$
## $Log$



###############################################################

## Reduce steady-state parameter file (Reactor_sspar.r)
## as siso_sspar ecxept that inputs/states have different meaning
## Steady state for constant c_a, c_b and t=t_s and f=f_s

## Unit volume Reactor:








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# -*-octave-*- Put Emacs into octave-mode
# Input specification (Reactor_input.txt)
# Generated by MTT at Fri Mar  3 11:52:23 GMT 2000
###############################################################
## Version control history
###############################################################
## $Id$
## $Log$
## Revision 1.1  2000/12/28 17:09:55  peterg
## To RCS
##
###############################################################

## Reduce steady-state parameter file (Reactor_sspar.r)
## as siso_sspar ecxept that inputs/states have different meaning
## Steady state for constant c_a, c_b and t=t_s and f=f_s

## Unit volume Reactor:
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## The two inputs at steady-state
u1 = f_s;
u2 = q_s;


# Set the inputs
mttu(1) = u1 + 0.1*u1*(t>0.01); # f (Reactor)
mttu(2) = u2 + 0.1*u2*(t>0.05) ; # t (Reactor)












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## The two inputs at steady-state
u1 = f_s;
u2 = q_s;


# Set the inputs
## Removed by MTT on Thu Dec 28 18:44:39 GMT 2000: mttu(1) = u1 + 0.1*u1*(t>0.01); # f (Reactor)
## Removed by MTT on Thu Dec 28 18:44:39 GMT 2000: mttu(2) = u2 + 0.1*u2*(t>0.05) ; # t (Reactor)



reactor_f	= u1 + 0.1*u1*(t>0.01); # Added by MTT on Thu Dec 28 18:44:47 GMT 2000
reactor_t	= u2 + 0.1*u2*(t>0.05); # Added by MTT on Thu Dec 28 18:44:47 GMT 2000

Modified mttroot/mtt/lib/examples/Chemical/Reactor/Reactor_state.txt from [47f84318d6] to [cbf1efc5c4].

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# -*-octave-*- Put Emacs into octave-mode
# State specification (Reactor_state.txt)
# Generated by MTT at Fri Mar  3 11:52:23 GMT 2000
###############################################################
## Version control history
###############################################################
## $Id$
## $Log$



###############################################################

## Reduce steady-state parameter file (Reactor_sspar.r)
## as siso_sspar ecxept that states/states have different meaning
## Steady state for constant c_a, c_b and t=t_s and f=f_s

## Unit volume Reactor:








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# -*-octave-*- Put Emacs into octave-mode
# State specification (Reactor_state.txt)
# Generated by MTT at Fri Mar  3 11:52:23 GMT 2000
###############################################################
## Version control history
###############################################################
## $Id$
## $Log$
## Revision 1.1  2000/12/28 17:09:55  peterg
## To RCS
##
###############################################################

## Reduce steady-state parameter file (Reactor_sspar.r)
## as siso_sspar ecxept that states/states have different meaning
## Steady state for constant c_a, c_b and t=t_s and f=f_s

## Unit volume Reactor:
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q_s = -((t_0-t_s)*c_p*f_s + e_1*h_1*k_1*x1 + e_2*h_2*k_2*x2 + e_3*h_3*k_3*x1^2);

## The two inputs at steady-state
u1 = f_s;
u2 = q_s;

## Load up the states
mttx(1) = x1;
mttx(2) = x2;
mttx(3) = x3;














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q_s = -((t_0-t_s)*c_p*f_s + e_1*h_1*k_1*x1 + e_2*h_2*k_2*x2 + e_3*h_3*k_3*x1^2);

## The two inputs at steady-state
u1 = f_s;
u2 = q_s;

## Load up the states
## Removed by MTT on Thu Dec 28 18:46:20 GMT 2000: mttx(1) = x1;
## Removed by MTT on Thu Dec 28 18:46:20 GMT 2000: mttx(2) = x2;
## Removed by MTT on Thu Dec 28 18:46:20 GMT 2000: mttx(3) = x3;




reactor_h_r	= x3; # Added by MTT on Thu Dec 28 18:46:25 GMT 2000
reactor_m_a	= x1; # Added by MTT on Thu Dec 28 18:46:25 GMT 2000
reactor_m_b	= x2; # Added by MTT on Thu Dec 28 18:46:25 GMT 2000


MTT: Model Transformation Tools
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