/[ascend]/trunk/models/atoms.a4l
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revision 820 by johnpye, Wed Jul 26 09:16:19 2006 UTC revision 821 by johnpye, Thu Aug 17 11:57:54 2006 UTC
# Line 643  END length_parameter; Line 643  END length_parameter;
643          nominal := 1.0{kW/m};          nominal := 1.0{kW/m};
644      END power_per_length;      END power_per_length;
645    
646        ATOM irradiance REFINES solver_var
647            DIMENSION M/T^3
648            DEFAULT 1000{W/m^2};
649            lower_bound := 0{W/m^2};
650            upper_bound := 1.5{MW/m^3}; (* a bit more that the max possible from sunlight *)
651            nominal := 300{W/m^2};
652        END irradiance;
653    
654      ATOM molar_heat_capacity REFINES solver_var      ATOM molar_heat_capacity REFINES solver_var
655          DIMENSION M*L^2/T^2/Q/TMP          DIMENSION M*L^2/T^2/Q/TMP
656          DEFAULT 1.00e5{J/mole/K};          DEFAULT 1.00e5{J/mole/K};
# Line 653  END length_parameter; Line 661  END length_parameter;
661    
662      ATOM molar_energy_rate REFINES solver_var      ATOM molar_energy_rate REFINES solver_var
663          DIMENSION M*L^2/T^3/Q          DIMENSION M*L^2/T^3/Q
664          DEFAULT 0 {BTU/lb_mole/hr};          DEFAULT 0 {BTU/lb_mole/h};
665          lower_bound := -1e50 {BTU/lb_mole/hr};          lower_bound := -1e50 {BTU/lb_mole/h};
666          upper_bound := 1e50 {BTU/lb_mole/hr};          upper_bound := 1e50 {BTU/lb_mole/h};
667          nominal := 10000.0 {BTU/lb_mole/hr};          nominal := 10000.0 {BTU/lb_mole/h};
668      END molar_energy_rate;      END molar_energy_rate;
669    
670  (*  E N T R O P Y  Q U A N T I T I E S  (*  E N T R O P Y  Q U A N T I T I E S
# Line 1006  END cost_per_energy; Line 1014  END cost_per_energy;
1014    
1015      ATOM delta_molar_energy_rate REFINES solver_var      ATOM delta_molar_energy_rate REFINES solver_var
1016          DIMENSION M*L^2/T^3/Q          DIMENSION M*L^2/T^3/Q
1017          DEFAULT 0 {BTU/lb_mole/hr};          DEFAULT 0 {BTU/lb_mole/h};
1018          lower_bound := -1e50 {BTU/lb_mole/hr};          lower_bound := -1e50 {BTU/lb_mole/h};
1019          upper_bound := 1e50 {BTU/lb_mole/hr};          upper_bound := 1e50 {BTU/lb_mole/h};
1020          nominal := 10000.0 {BTU/lb_mole/hr};          nominal := 10000.0 {BTU/lb_mole/h};
1021      END delta_molar_energy_rate;      END delta_molar_energy_rate;
1022    
1023      ATOM delta_entropy_rate REFINES solver_var      ATOM delta_entropy_rate REFINES solver_var

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john.pye@anu.edu.au
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