Update v4.0.0 release notes#2986
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Regression Testing Results
Detailed regression test results.Regression test aromatics:Reference: Execution time (DD:HH:MM:SS): 00:00:00:56 aromatics Passed Core Comparison ✅Original model has 15 species. aromatics Failed Edge Comparison ❌Original model has 106 species. Non-identical thermo! ❌
thermo: Thermo group additivity estimation: group(Cs-(Cds-Cds)CsCsH) + group(Cs-(Cds-Cds)CsCsH) + group(Cs-(Cds-Cds)(Cds-Cds)CsH) + group(Cs-(Cds-Cds)CsHH) + group(Cds-CdsCsCs) + group(Cds-CdsCsH) + group(Cds-CdsCsH) + group(Cds-CdsCsH) + polycyclic(s2_4_5_diene_1_5) + polycyclic(s3_4_5_ene_3) + polycyclic(s2_5_5_diene_1_5) - ring(Cyclobutene) - ring(Cyclopentene) - ring(Cyclopentene) + radical(cyclopentene-allyl) Non-identical thermo! ❌
thermo: Thermo group additivity estimation: group(Cs-(Cds-Cds)(Cds-Cds)CsCs) + group(Cs-(Cds-Cds)CsCsH) + group(Cs-(Cds-Cds)CsCsH) + group(Cs-CsCsHH) + group(Cds-CdsCsH) + group(Cds-CdsCsH) + group(Cds-CdsCsH) + group(Cds-CdsCsH) + polycyclic(s2_4_4_ene_1) + polycyclic(s2_4_5_diene_1_5) + polycyclic(s3_4_5_ene_1) - ring(Cyclobutene) - ring(Cyclobutane) - ring(Cyclopentene) + radical(bicyclo[2.1.1]hex-2-ene-C5) Non-identical thermo! ❌
thermo: Thermo group additivity estimation: group(Cs-CsCsCsH) + group(Cs-(Cds-Cds)CsCsH) + group(Cs-(Cds-Cds)CsCsH) + group(Cs-(Cds-Cds)CsHH) + group(Cds- Cds(Cds-Cds)Cs) + group(Cds-CdsCsH) + group(Cds-CdsCsH) + group(Cds-Cds(Cds-Cds)H) + polycyclic(s2_3_5_ene_1) + polycyclic(s2_3_6_ene_1) + Estimated bicyclic component: polycyclic(s3_5_6_ane) - ring(Cyclohexane) - ring(Cyclopentane) + ring(Cyclohexene) + ring(Cyclopentene) - ring(Cyclopropane) - ring(Cyclopentene) - ring(Cyclohexene) + radical(cyclopentene-allyl) Non-identical thermo! ❌
Identical thermo comments: Non-identical thermo! ❌
thermo: Thermo group additivity estimation: group(Cs-(Cds-Cds)(Cds-Cds)(Cds-Cds)H) + group(Cds-Cds(Cds-Cds)(Cds-Cds)) + group(Cds-CdsCsH) + group(Cds-CdsCsH) + group(Cds-Cds(Cds-Cds)H) + group(Cds-Cds(Cds-Cds)H) + group(Cds-CdsCsH) + group(Cdd-CdsCds) + Estimated bicyclic component: polycyclic(s4_6_6_ane) - ring(Cyclohexane) - ring(Cyclohexane) + ring(1,4-Cyclohexadiene) + ring(124cyclohexatriene) Non-identical thermo! ❌
thermo: Thermo group additivity estimation: group(Cs-(Cds-Cds)CsCsH) + group(Cs-(Cds-Cds)CsCsH) + group(Cs-(Cds-Cds)CsCsH) + group(Cs-CsCsHH) + group(Cds- Cds(Cds-Cds)Cs) + group(Cds-CdsCsH) + group(Cds-CdsCsH) + group(Cds-Cds(Cds-Cds)H) + polycyclic(s2_4_4_ene_1) + polycyclic(s3_4_6_diene_1_5) + polycyclic(s3_4_6_ene_1) - ring(Cyclobutene) - ring(Cyclobutane) - ring(Cyclohexene) + radical(cyclobutane) Non-identical kinetics! ❌
kinetics: Non-identical kinetics! ❌
kinetics: Non-identical kinetics! ❌
kinetics: Non-identical kinetics! ❌
kinetics: Non-identical kinetics! ❌
kinetics: Non-identical kinetics! ❌
kinetics: Non-identical kinetics! ❌
kinetics: Non-identical kinetics! ❌
kinetics: Non-identical kinetics! ❌
kinetics: Non-identical kinetics! ❌
kinetics: Non-identical kinetics! ❌
kinetics: Non-identical kinetics! ❌
kinetics: Non-identical kinetics! ❌
kinetics: Non-identical kinetics! ❌
kinetics: Non-identical kinetics! ❌
kinetics: Non-identical kinetics! ❌
kinetics: Non-identical kinetics! ❌
kinetics: Non-identical kinetics! ❌
kinetics: Errors occurred during edge comparison
ERROR conda.cli.main_run:execute(148): `conda run python scripts/checkModels.py aromatics-edge stable_regression_results/aromatics/chemkin/chem_edge_annotated.inp stable_regression_results/aromatics/chemkin/species_edge_dictionary.txt test/regression/aromatics/chemkin/chem_edge_annotated.inp test/regression/aromatics/chemkin/species_edge_dictionary.txt` failed. (See above for error)
|
| k(1bar) | 300K | 400K | 500K | 600K | 800K | 1000K | 1500K | 2000K |
|---|---|---|---|---|---|---|---|---|
| k(T): | 8.02 | 7.64 | 7.35 | 7.11 | 6.75 | 6.48 | 5.99 | 5.64 |
| k(T): | 3.54 | 4.28 | 4.73 | 5.02 | 5.39 | 5.62 | 5.91 | 6.06 |
kinetics: Arrhenius(A=(3.18266e+20,'cm^3/(mol*s)'), n=-2.694, Ea=(-0.265,'kcal/mol'), T0=(1,'K'), comment="""Estimated from node Root_Ext-5R-R_7R!H->C_N-7C-inRing in family Peroxyl_Disproportionation.""")
kinetics: Arrhenius(A=(3.2e+12,'cm^3/(mol*s)'), n=0, Ea=(4.064,'kcal/mol'), T0=(1,'K'), comment="""Estimated from node Root_Ext-5R-R_7R!H->C_N-7C-inRing_Ext-5R-R in family Peroxyl_Disproportionation.""")
kinetics: Estimated from node Root_Ext-5R-R_7R!H->C_N-7C-inRing in family Peroxyl_Disproportionation.
kinetics: Estimated from node Root_Ext-5R-R_7R!H->C_N-7C-inRing_Ext-5R-R in family Peroxyl_Disproportionation.
Errors occurred during edge comparison ⚠️
ERROR conda.cli.main_run:execute(148): `conda run python scripts/checkModels.py liquid_oxidation-edge stable_regression_results/liquid_oxidation/chemkin/chem_edge_annotated.inp stable_regression_results/liquid_oxidation/chemkin/species_edge_dictionary.txt test/regression/liquid_oxidation/chemkin/chem_edge_annotated.inp test/regression/liquid_oxidation/chemkin/species_edge_dictionary.txt` failed. (See above for error)
liquid_oxidation Passed Observable Testing ✅
Regression test nitrogen:
Reference: Execution time (DD:HH:MM:SS): 00:00:00:56
Current: Execution time (DD:HH:MM:SS): 00:00:00:59
Reference: Memory used: 914.34 MB
Current: Memory used: 913.81 MB
nitrogen Failed Core Comparison ❌
Original model has 41 species.
Test model has 41 species. ✅
Original model has 360 reactions.
Test model has 359 reactions. ❌
The original model has 1 reactions that the tested model does not have. ❌
rxn: HNO(48) + HCO(13) <=> NO(38) + CH2O(18) origin: H_Abstraction
Errors occurred during core comparison ⚠️
ERROR conda.cli.main_run:execute(148): `conda run python scripts/checkModels.py nitrogen-core stable_regression_results/nitrogen/chemkin/chem_annotated.inp stable_regression_results/nitrogen/chemkin/species_dictionary.txt test/regression/nitrogen/chemkin/chem_annotated.inp test/regression/nitrogen/chemkin/species_dictionary.txt` failed. (See above for error)
nitrogen Failed Edge Comparison ❌
Original model has 133 species.
Test model has 133 species. ✅
Original model has 983 reactions.
Test model has 981 reactions. ❌
The original model has 2 reactions that the tested model does not have. ❌
rxn: HNO(48) + HCO(13) <=> NO(38) + CH2O(18) origin: H_Abstraction
rxn: HON(T)(83) + HCO(13) <=> NO(38) + CH2O(18) origin: Disproportionation
Errors occurred during edge comparison ⚠️
ERROR conda.cli.main_run:execute(148): `conda run python scripts/checkModels.py nitrogen-edge stable_regression_results/nitrogen/chemkin/chem_edge_annotated.inp stable_regression_results/nitrogen/chemkin/species_edge_dictionary.txt test/regression/nitrogen/chemkin/chem_edge_annotated.inp test/regression/nitrogen/chemkin/species_edge_dictionary.txt` failed. (See above for error)
nitrogen Passed Observable Testing ✅
Regression test oxidation:
Reference: Execution time (DD:HH:MM:SS): 00:00:01:31
Current: Execution time (DD:HH:MM:SS): 00:00:01:31
Reference: Memory used: 795.25 MB
Current: Memory used: 794.97 MB
oxidation Passed Core Comparison ✅
Original model has 59 species.
Test model has 59 species. ✅
Original model has 694 reactions.
Test model has 694 reactions. ✅
oxidation Passed Edge Comparison ✅
Original model has 230 species.
Test model has 230 species. ✅
Original model has 1524 reactions.
Test model has 1524 reactions. ✅
oxidation Passed Observable Testing ✅
Errors occurred during observable testing ⚠️
WARNING: Initial mole fractions do not sum to one; normalizing.
Regression test sulfur:
Reference: Execution time (DD:HH:MM:SS): 00:00:00:36
Current: Execution time (DD:HH:MM:SS): 00:00:00:36
Reference: Memory used: 909.42 MB
Current: Memory used: 915.86 MB
sulfur Passed Core Comparison ✅
Original model has 27 species.
Test model has 27 species. ✅
Original model has 74 reactions.
Test model has 74 reactions. ✅
sulfur Failed Edge Comparison ❌
Original model has 89 species.
Test model has 89 species. ✅
Original model has 227 reactions.
Test model has 227 reactions. ✅
The original model has 1 reactions that the tested model does not have. ❌
rxn: O(4) + SO2(15) (+N2) <=> SO3(16) (+N2) origin: primarySulfurLibrary
The tested model has 1 reactions that the original model does not have. ❌
rxn: O(4) + SO2(15) (+N2) <=> SO3(16) (+N2) origin: primarySulfurLibrary
Errors occurred during edge comparison ⚠️
ERROR conda.cli.main_run:execute(148): `conda run python scripts/checkModels.py sulfur-edge stable_regression_results/sulfur/chemkin/chem_edge_annotated.inp stable_regression_results/sulfur/chemkin/species_edge_dictionary.txt test/regression/sulfur/chemkin/chem_edge_annotated.inp test/regression/sulfur/chemkin/species_edge_dictionary.txt` failed. (See above for error)
sulfur Passed Observable Testing ✅
Regression test superminimal:
Reference: Execution time (DD:HH:MM:SS): 00:00:00:23
Current: Execution time (DD:HH:MM:SS): 00:00:00:23
Reference: Memory used: 973.54 MB
Current: Memory used: 971.96 MB
superminimal Passed Core Comparison ✅
Original model has 13 species.
Test model has 13 species. ✅
Original model has 21 reactions.
Test model has 21 reactions. ✅
superminimal Passed Edge Comparison ✅
Original model has 18 species.
Test model has 18 species. ✅
Original model has 28 reactions.
Test model has 28 reactions. ✅
Regression test RMS_constantVIdealGasReactor_superminimal:
Reference: Execution time (DD:HH:MM:SS): 00:00:02:17
Current: Execution time (DD:HH:MM:SS): 00:00:02:53
Reference: Memory used: 2439.71 MB
Current: Memory used: 2464.74 MB
RMS_constantVIdealGasReactor_superminimal Passed Core Comparison ✅
Original model has 13 species.
Test model has 13 species. ✅
Original model has 19 reactions.
Test model has 19 reactions. ✅
RMS_constantVIdealGasReactor_superminimal Passed Edge Comparison ✅
Original model has 13 species.
Test model has 13 species. ✅
Original model has 19 reactions.
Test model has 19 reactions. ✅
RMS_constantVIdealGasReactor_superminimal Passed Observable Testing ✅
Regression test RMS_CSTR_liquid_oxidation:
Reference: Execution time (DD:HH:MM:SS): 00:00:18:49
Current: Execution time (DD:HH:MM:SS): 00:00:23:35
Reference: Memory used: 2837.95 MB
Current: Memory used: 3566.90 MB
RMS_CSTR_liquid_oxidation Failed Core Comparison ❌
Original model has 35 species.
Test model has 35 species. ✅
Original model has 189 reactions.
Test model has 144 reactions. ❌
The original model has 7 species that the tested model does not have. ❌
spc: CCC([O])CC(44)
spc: CC[CH]CCOO(64)
spc: C[CH]CCCOO(65)
spc: [CH2]CCCCOO(66)
spc: CCCCCO
spc: CC1CC(C)O1(87)
spc: CC=CC(C)OO(88)
The tested model has 7 species that the original model does not have. ❌
spc: CH3
spc: CC[CH]C(C)OO(32)
spc: C[CH]C(CC)OO(37)
spc: CCCOO
spc: CC(O)CCCOO
spc: CCC(CCO[O])OO(137)
spc: CC(CC(C)OO)OO(141)
The original model has 79 reactions that the tested model does not have. ❌
rxn: CCC(CC)O[O](21) + CCCCCOO(78) <=> CCCCCO[O](61) + CCC(CC)OO(26) origin: H_Abstraction
rxn: [OH](24) + OO(23) <=> [O]O(13) + H2O(42) origin: H_Abstraction
rxn: [OH](24) + [CH2]CCCC(12) <=> H2O(42) + C=CCCC(18) origin: Disproportionation
rxn: [OH](24) + C[CH]CCC(11) <=> H2O(42) + C=CCCC(18) origin: Disproportionation
rxn: CC[CH]CC(7) + CCCC(C)O[O](22) <=> CC=CCC(16) + CCCC(C)OO(27) origin: Disproportionation
rxn: CC[CH]CC(7) + CCC(CC)O[O](21) <=> CC=CCC(16) + CCC(CC)OO(26) origin: Disproportionation
rxn: CC[CH]CC(7) + [CH2]CCCC(12) <=> CC=CCC(16) + pentane(2) origin: Disproportionation
rxn: CC[CH]CC(7) + CCCCCO[O](61) <=> CC=CCC(16) + CCCCCOO(78) origin: Disproportionation
rxn: CC[CH]CC(7) + C[CH]CC(C)OO(34) <=> CC=CCC(16) + CCCC(C)OO(27) origin: Disproportionation
rxn: C[CH]CCC(11) + CCCC(C)O[O](22) <=> CC=CCC(16) + CCCC(C)OO(27) origin: Disproportionation
rxn: C[CH]CCC(11) + CCC(CC)O[O](21) <=> CC=CCC(16) + CCC(CC)OO(26) origin: Disproportionation
rxn: C[CH]CCC(11) + [CH2]CCCC(12) <=> CC=CCC(16) + pentane(2) origin: Disproportionation
rxn: C[CH]CCC(11) + CCCCCO[O](61) <=> CC=CCC(16) + CCCCCOO(78) origin: Disproportionation
rxn: C[CH]CCC(11) + C[CH]CC(C)OO(34) <=> CC=CCC(16) + CCCC(C)OO(27) origin: Disproportionation
rxn: oxygen(1) + C[CH]CC(C)OO(34) <=> [O]O(13) + CC=CC(C)OO(88) origin: Disproportionation
rxn: CC[CH]CC(7) + C[CH]CC(C)OO(34) <=> CC=CC(C)OO(88) + pentane(2) origin: Disproportionation
rxn: C[CH]CCC(11) + C[CH]CC(C)OO(34) <=> CC=CC(C)OO(88) + pentane(2) origin: Disproportionation
rxn: CCCC(C)O[O](22) + C[CH]CC(C)OO(34) <=> CC=CC(C)OO(88) + CCCC(C)OO(27) origin: Disproportionation
rxn: CCC(CC)O[O](21) + C[CH]CC(C)OO(34) <=> CC=CC(C)OO(88) + CCC(CC)OO(26) origin: Disproportionation
rxn: CCCCCO[O](61) + C[CH]CC(C)OO(34) <=> CC=CC(C)OO(88) + CCCCCOO(78) origin: Disproportionation
rxn: [CH2]CC(CC)OO(38) + CCCCCOO(78) <=> CCCCCO[O](61) + CCC(CC)OO(26) origin: H_Abstraction
rxn: [CH2]CC(CC)OO(38) + CCCC(C)OO(27) <=> C[CH]CC(C)OO(34) + CCC(CC)OO(26) origin: H_Abstraction
rxn: CCCCCO[O](61) <=> C[CH]CCCOO(65) origin: intra_H_migration
rxn: [O]O(13) + C[CH]CCCOO(65) <=> oxygen(1) + CCCCCOO(78) origin: H_Abstraction
rxn: OO(23) + C[CH]CCCOO(65) <=> [O]O(13) + CCCCCOO(78) origin: H_Abstraction
rxn: CC[CH]CC(7) + CCCCCOO(78) <=> C[CH]CCCOO(65) + pentane(2) origin: H_Abstraction
rxn: C[CH]CCCOO(65) + pentane(2) <=> C[CH]CCC(11) + CCCCCOO(78) origin: H_Abstraction
rxn: C[CH]CCCOO(65) + CCCC(C)OO(27) <=> CCCC(C)O[O](22) + CCCCCOO(78) origin: H_Abstraction
rxn: C[CH]CCCOO(65) + CCC(CC)OO(26) <=> CCC(CC)O[O](21) + CCCCCOO(78) origin: H_Abstraction
rxn: [CH2]CCCC(12) + CCCCCOO(78) <=> C[CH]CCCOO(65) + pentane(2) origin: H_Abstraction
rxn: C[CH]CCCOO(65) + CCCCCOO(78) <=> CCCCCO[O](61) + CCCCCOO(78) origin: H_Abstraction
rxn: [OH](24) + CCCCCOO(78) <=> H2O(42) + C[CH]CCCOO(65) origin: H_Abstraction
rxn: [CH2]CCCC(12) + C[CH]CCCOO(65) <=> C=CCCC(18) + CCCCCOO(78) origin: Disproportionation
rxn: C[CH]CCC(11) + C[CH]CCCOO(65) <=> C=CCCC(18) + CCCCCOO(78) origin: Disproportionation
rxn: C[CH]CCCOO(65) + CCCC(C)OO(27) <=> C[CH]CC(C)OO(34) + CCCCCOO(78) origin: H_Abstraction
rxn: [OH](24) + CCCCC[O](79) <=> CCCCCOO(78) origin: R_Recombination
rxn: [O]O(13) + CCCCCO[O](61) <=> oxygen(1) + [OH](24) + CCCCC[O](79) origin: Peroxyl_Disproportionation
rxn: CCCC(C)O[O](22) + CCCCCO[O](61) <=> oxygen(1) + CCCC(C)[O](41) + CCCCC[O](79) origin: Peroxyl_Disproportionation
rxn: CCCC(C)OO(27) + CCCCCOO(78) <=> H2O(42) + CCCCC[O](79) + CCCC(C)O[O](22) origin: Bimolec_Hydroperoxide_Decomposition
rxn: CCC(CC)OO(26) + CCCCCOO(78) <=> H2O(42) + CCCCC[O](79) + CCC(CC)O[O](21) origin: Bimolec_Hydroperoxide_Decomposition
rxn: CCCCCO[O](61) + CCCCCO[O](61) <=> oxygen(1) + CCCCC[O](79) + CCCCC[O](79) origin: Peroxyl_Disproportionation
rxn: CCCCCOO(78) + CCCCCOO(78) <=> H2O(42) + CCCCC[O](79) + CCCCCO[O](61) origin: Bimolec_Hydroperoxide_Decomposition
rxn: OO(23) + CCCCCOO(78) <=> [O]O(13) + H2O(42) + CCCCC[O](79) origin: Bimolec_Hydroperoxide_Decomposition
rxn: [O]O(13) + CCC(CC)O[O](21) <=> oxygen(1) + [OH](24) + CCC([O])CC(44) origin: Peroxyl_Disproportionation
rxn: CCC(CC)O[O](21) + CCCC(C)O[O](22) <=> oxygen(1) + CCC([O])CC(44) + CCCC(C)[O](41) origin: Peroxyl_Disproportionation
rxn: CCC(CC)O[O](21) + CCC(CC)O[O](21) <=> oxygen(1) + CCC([O])CC(44) + CCC([O])CC(44) origin: Peroxyl_Disproportionation
rxn: [OH](24) + CCC([O])CC(44) <=> CCC(CC)OO(26) origin: R_Recombination
rxn: CCC(CC)OO(26) + CCCC(C)OO(27) <=> H2O(42) + CCC([O])CC(44) + CCCC(C)O[O](22) origin: Bimolec_Hydroperoxide_Decomposition
rxn: CCC(CC)OO(26) + CCC(CC)OO(26) <=> H2O(42) + CCC([O])CC(44) + CCC(CC)O[O](21) origin: Bimolec_Hydroperoxide_Decomposition
rxn: CCC(CC)O[O](21) + CCCCCO[O](61) <=> oxygen(1) + CCC([O])CC(44) + CCCCC[O](79) origin: Peroxyl_Disproportionation
rxn: CCC(CC)OO(26) + CCCCCOO(78) <=> H2O(42) + CCC([O])CC(44) + CCCCCO[O](61) origin: Bimolec_Hydroperoxide_Decomposition
rxn: OO(23) + CCC(CC)OO(26) <=> [O]O(13) + H2O(42) + CCC([O])CC(44) origin: Bimolec_Hydroperoxide_Decomposition
rxn: C[CH]CC(C)OO(34) <=> [OH](24) + CC1CC(C)O1(87) origin: Cyclic_Ether_Formation
rxn: CCCCCO[O](61) <=> [CH2]CCCCOO(66) origin: intra_H_migration
rxn: [O]O(13) + [CH2]CCCCOO(66) <=> oxygen(1) + CCCCCOO(78) origin: H_Abstraction
rxn: OO(23) + [CH2]CCCCOO(66) <=> [O]O(13) + CCCCCOO(78) origin: H_Abstraction
rxn: [CH2]CCCCOO(66) + pentane(2) <=> CC[CH]CC(7) + CCCCCOO(78) origin: H_Abstraction
rxn: [CH2]CCCCOO(66) + pentane(2) <=> C[CH]CCC(11) + CCCCCOO(78) origin: H_Abstraction
rxn: [CH2]CCCCOO(66) + CCCC(C)OO(27) <=> CCCC(C)O[O](22) + CCCCCOO(78) origin: H_Abstraction
rxn: [CH2]CCCCOO(66) + CCC(CC)OO(26) <=> CCC(CC)O[O](21) + CCCCCOO(78) origin: H_Abstraction
rxn: [CH2]CCCCOO(66) + pentane(2) <=> [CH2]CCCC(12) + CCCCCOO(78) origin: H_Abstraction
rxn: [CH2]CCCCOO(66) + CCCCCOO(78) <=> CCCCCO[O](61) + CCCCCOO(78) origin: H_Abstraction
rxn: [OH](24) + CCCCCOO(78) <=> H2O(42) + [CH2]CCCCOO(66) origin: H_Abstraction
rxn: [CH2]CCCC(12) + [CH2]CCCCOO(66) <=> C=CCCC(18) + CCCCCOO(78) origin: Disproportionation
rxn: C[CH]CCC(11) + [CH2]CCCCOO(66) <=> C=CCCC(18) + CCCCCOO(78) origin: Disproportionation
rxn: [CH2]CCCCOO(66) + CCCC(C)OO(27) <=> C[CH]CC(C)OO(34) + CCCCCOO(78) origin: H_Abstraction
rxn: CC[CH]CCOO(64) <=> CCCCCO[O](61) origin: intra_H_migration
rxn: [O]O(13) + CC[CH]CCOO(64) <=> oxygen(1) + CCCCCOO(78) origin: H_Abstraction
rxn: OO(23) + CC[CH]CCOO(64) <=> [O]O(13) + CCCCCOO(78) origin: H_Abstraction
rxn: CC[CH]CCOO(64) + pentane(2) <=> CC[CH]CC(7) + CCCCCOO(78) origin: H_Abstraction
rxn: CC[CH]CCOO(64) + pentane(2) <=> C[CH]CCC(11) + CCCCCOO(78) origin: H_Abstraction
rxn: CC[CH]CCOO(64) + CCCC(C)OO(27) <=> CCCC(C)O[O](22) + CCCCCOO(78) origin: H_Abstraction
rxn: CC[CH]CCOO(64) + CCC(CC)OO(26) <=> CCC(CC)O[O](21) + CCCCCOO(78) origin: H_Abstraction
rxn: [CH2]CCCC(12) + CCCCCOO(78) <=> CC[CH]CCOO(64) + pentane(2) origin: H_Abstraction
rxn: CC[CH]CCOO(64) + CCCCCOO(78) <=> CCCCCO[O](61) + CCCCCOO(78) origin: H_Abstraction
rxn: [OH](24) + CCCCCOO(78) <=> H2O(42) + CC[CH]CCOO(64) origin: H_Abstraction
rxn: [CH2]CCCC(12) + CC[CH]CCOO(64) <=> C=CCCC(18) + CCCCCOO(78) origin: Disproportionation
rxn: C[CH]CCC(11) + CC[CH]CCOO(64) <=> C=CCCC(18) + CCCCCOO(78) origin: Disproportionation
rxn: CC[CH]CCOO(64) + CCCC(C)OO(27) <=> C[CH]CC(C)OO(34) + CCCCCOO(78) origin: H_Abstraction
The tested model has 34 reactions that the original model does not have. ❌
rxn: CC[CH]C(C)OO(32) <=> CCCC(C)O[O](21) origin: intra_H_migration
rxn: [O]O(13) + CC[CH]C(C)OO(32) <=> oxygen(1) + CCCC(C)OO(26) origin: H_Abstraction
rxn: OO(23) + CC[CH]C(C)OO(32) <=> [O]O(13) + CCCC(C)OO(26) origin: H_Abstraction
rxn: CC[CH]C(C)OO(32) + pentane(2) <=> C[CH]CCC(11) + CCCC(C)OO(26) origin: H_Abstraction
rxn: CC[CH]C(C)OO(32) + pentane(2) <=> CC[CH]CC(7) + CCCC(C)OO(26) origin: H_Abstraction
rxn: CC[CH]C(C)OO(32) + CCCC(C)OO(26) <=> CCCC(C)O[O](21) + CCCC(C)OO(26) origin: H_Abstraction
rxn: CC[CH]C(C)OO(32) + CCC(CC)OO(27) <=> CCC(CC)O[O](22) + CCCC(C)OO(26) origin: H_Abstraction
rxn: [CH2]CCCC(12) + CCCC(C)OO(26) <=> CC[CH]C(C)OO(32) + pentane(2) origin: H_Abstraction
rxn: CC[CH]C(C)OO(32) + CCCCCOO(78) <=> CCCCCO[O](61) + CCCC(C)OO(26) origin: H_Abstraction
rxn: [CH2]CCCC(12) + CC[CH]C(C)OO(32) <=> C=CCCC(17) + CCCC(C)OO(26) origin: Disproportionation
rxn: C[CH]CCC(11) + CC[CH]C(C)OO(32) <=> C=CCCC(17) + CCCC(C)OO(26) origin: Disproportionation
rxn: CC[CH]C(C)OO(32) <=> C[CH]CC(C)OO(34) origin: intra_H_migration
rxn: [OH](24) + CCCC(C)OO(26) <=> H2O(42) + CC[CH]C(C)OO(32) origin: H_Abstraction
rxn: C[CH]C(CC)OO(37) <=> CCC(CC)O[O](22) origin: intra_H_migration
rxn: [O]O(13) + C[CH]C(CC)OO(37) <=> oxygen(1) + CCC(CC)OO(27) origin: H_Abstraction
rxn: OO(23) + C[CH]C(CC)OO(37) <=> [O]O(13) + CCC(CC)OO(27) origin: H_Abstraction
rxn: C[CH]C(CC)OO(37) + pentane(2) <=> C[CH]CCC(11) + CCC(CC)OO(27) origin: H_Abstraction
rxn: C[CH]C(CC)OO(37) + pentane(2) <=> CC[CH]CC(7) + CCC(CC)OO(27) origin: H_Abstraction
rxn: C[CH]C(CC)OO(37) + CCCC(C)OO(26) <=> CCCC(C)O[O](21) + CCC(CC)OO(27) origin: H_Abstraction
rxn: C[CH]C(CC)OO(37) + CCC(CC)OO(27) <=> CCC(CC)O[O](22) + CCC(CC)OO(27) origin: H_Abstraction
rxn: [CH2]CCCC(12) + CCC(CC)OO(27) <=> C[CH]C(CC)OO(37) + pentane(2) origin: H_Abstraction
rxn: [CH2]CCCC(12) + C[CH]C(CC)OO(37) <=> C=CCCC(17) + CCC(CC)OO(27) origin: Disproportionation
rxn: C[CH]CCC(11) + C[CH]C(CC)OO(37) <=> C=CCCC(17) + CCC(CC)OO(27) origin: Disproportionation
rxn: [OH](24) + CCC(CC)OO(27) <=> H2O(42) + C[CH]C(CC)OO(37) origin: H_Abstraction
rxn: [CH2]CC(CC)OO(38) <=> C[CH]C(CC)OO(37) origin: intra_H_migration
rxn: C[CH]C(CC)OO(37) <=> [CH2]CC(CC)OO(38) origin: intra_H_migration
rxn: CCCO[O](133) <=> oxygen(1) + [CH2]CC(5) origin: R_Recombination
rxn: CC[CH]CC(7) + CC(CC(C)OO)OO(141) <=> CC(CC(C)OO)O[O](100) + pentane(2) origin: H_Abstraction
rxn: C[CH]CCC(11) + CC(CC(C)OO)OO(141) <=> CC(CC(C)OO)O[O](100) + pentane(2) origin: H_Abstraction
rxn: [CH2]CCCC(12) + CC(CC(C)OO)OO(141) <=> CC(CC(C)OO)O[O](100) + pentane(2) origin: H_Abstraction
rxn: [O]O(13) + CC=CCC(16) <=> CC[CH]C(C)OO(32) origin: R_Addition_MultipleBond
rxn: [O]O(13) + CC=CCC(16) <=> C[CH]C(CC)OO(37) origin: R_Addition_MultipleBond
rxn: oxygen(1) + [CH2]CCC(C)O(99) <=> CC(O)CCCO[O](134) origin: R_Recombination
rxn: oxygen(1) + [CH2]CC(CC)OO(38) <=> CCC(CCO[O])OO(137) origin: R_Recombination
Errors occurred during core comparison ⚠️
ERROR conda.cli.main_run:execute(148): `conda run python scripts/checkModels.py RMS_CSTR_liquid_oxidation-core stable_regression_results/RMS_CSTR_liquid_oxidation/chemkin/chem_annotated.inp stable_regression_results/RMS_CSTR_liquid_oxidation/chemkin/species_dictionary.txt test/regression/RMS_CSTR_liquid_oxidation/chemkin/chem_annotated.inp test/regression/RMS_CSTR_liquid_oxidation/chemkin/species_dictionary.txt` failed. (See above for error)
RMS_CSTR_liquid_oxidation Failed Edge Comparison ❌
Original model has 107 species.
Test model has 145 species. ❌
Original model has 545 reactions.
Test model has 481 reactions. ❌
The original model has 8 species that the tested model does not have. ❌
spc: CCCCCOOOO(101)
spc: CCCC(C)OOO(102)
spc: CCCCCO(103)
spc: CCC[CH]CO(104)
spc: CCCCCOOO
spc: OOO(106)
spc: CCC(CC)OOO(107)
spc: CCCCCOOO(108)
The tested model has 46 species that the original model does not have. ❌
spc: [O]OOO(20)
spc: [O]OO(28)
spc: CCCC(C)OOOO
spc: CCC(CC)OOOO
spc: CCCCCOOOO
spc: C[CH]C(101)
spc: CO(102)
spc: CH4(103)
spc: C=CO(104)
spc: [CH]=O(105)
spc: C=CO
spc: C[C]=O(107)
spc: CC(CCOO)OO
spc: CC(CCO[O])OO(109)
spc: CC1CC(C)OOO1(110)
spc: CC(=O)CC(C)OO(111)
spc: CC([CH]C(C)OO)OO(112)
spc: [CH2]C(CC(C)OO)OO(113)
spc: [CH2]CCCO(114)
spc: [CH2]CC=CC(115)
spc: [CH2]CO(116)
spc: C=CCC(C)O(117)
spc: [CH2]C(C)O(118)
spc: CC[CH]COO(119)
spc: C[CH]C(C)OO(120)
spc: CCC(C)C=O(121)
spc: CCC1OC1C(122)
spc: CCC=C(C)OO(123)
spc: CCC=COO(124)
spc: C=CC(C)OO(125)
spc: CCC(O)C(C)O
spc: CC=C(CC)OO(127)
spc: C=CC(CC)OO(128)
spc: CC=COO(129)
spc: CCC([O])C(C)O(130)
spc: CCC1CCO1(131)
spc: CCC([O])CCO(132)
spc: CCCOO
spc: CC(O)CCCOO
spc: CCC(O[O])C(C)OO(135)
spc: CCC(OO)C(C)OO
spc: CCC(CCO[O])OO(137)
spc: CCC(138)
spc: C[CH]O(139)
spc: CCO
spc: CC(CC(C)OO)OO(141)
The original model has 163 reactions that the tested model does not have. ❌
rxn: CCC(CC)O[O](21) + CCCCCOO(78) <=> CCCCCO[O](61) + CCC(CC)OO(26) origin: H_Abstraction
rxn: [OH](24) + OO(23) <=> [O]O(13) + H2O(42) origin: H_Abstraction
rxn: [OH](24) + [CH2]CCCC(12) <=> H2O(42) + C=CCCC(18) origin: Disproportionation
rxn: [OH](24) + C[CH]CCC(11) <=> H2O(42) + C=CCCC(18) origin: Disproportionation
rxn: CC[CH]CC(7) + CCCC(C)O[O](22) <=> CC=CCC(16) + CCCC(C)OO(27) origin: Disproportionation
rxn: CC[CH]CC(7) + CCC(CC)O[O](21) <=> CC=CCC(16) + CCC(CC)OO(26) origin: Disproportionation
rxn: CC[CH]CC(7) + [CH2]CCCC(12) <=> CC=CCC(16) + pentane(2) origin: Disproportionation
rxn: CC[CH]CC(7) + CCCCCO[O](61) <=> CC=CCC(16) + CCCCCOO(78) origin: Disproportionation
rxn: CC[CH]CC(7) + C[CH]CC(C)OO(34) <=> CC=CCC(16) + CCCC(C)OO(27) origin: Disproportionation
rxn: C[CH]CCC(11) + CCCC(C)O[O](22) <=> CC=CCC(16) + CCCC(C)OO(27) origin: Disproportionation
rxn: C[CH]CCC(11) + CCC(CC)O[O](21) <=> CC=CCC(16) + CCC(CC)OO(26) origin: Disproportionation
rxn: C[CH]CCC(11) + [CH2]CCCC(12) <=> CC=CCC(16) + pentane(2) origin: Disproportionation
rxn: C[CH]CCC(11) + CCCCCO[O](61) <=> CC=CCC(16) + CCCCCOO(78) origin: Disproportionation
rxn: C[CH]CCC(11) + C[CH]CC(C)OO(34) <=> CC=CCC(16) + CCCC(C)OO(27) origin: Disproportionation
rxn: CC[CH]CC(7) + C[CH]CC(C)OO(34) <=> CC=CC(C)OO(88) + pentane(2) origin: Disproportionation
rxn: C[CH]CCC(11) + C[CH]CC(C)OO(34) <=> CC=CC(C)OO(88) + pentane(2) origin: Disproportionation
rxn: CCCC(C)O[O](22) + C[CH]CC(C)OO(34) <=> CC=CC(C)OO(88) + CCCC(C)OO(27) origin: Disproportionation
rxn: CCC(CC)O[O](21) + C[CH]CC(C)OO(34) <=> CC=CC(C)OO(88) + CCC(CC)OO(26) origin: Disproportionation
rxn: CCCCCO[O](61) + C[CH]CC(C)OO(34) <=> CC=CC(C)OO(88) + CCCCCOO(78) origin: Disproportionation
rxn: [CH2]CC(CC)OO(38) + CCCCCOO(78) <=> CCCCCO[O](61) + CCC(CC)OO(26) origin: H_Abstraction
rxn: [CH2]CC(CC)OO(38) + CCCC(C)OO(27) <=> C[CH]CC(C)OO(34) + CCC(CC)OO(26) origin: H_Abstraction
rxn: CC[CH]CC(7) + CCCCCOO(78) <=> C[CH]CCCOO(65) + pentane(2) origin: H_Abstraction
rxn: C[CH]CCCOO(65) + pentane(2) <=> C[CH]CCC(11) + CCCCCOO(78) origin: H_Abstraction
rxn: C[CH]CCCOO(65) + CCC(CC)OO(26) <=> CCC(CC)O[O](21) + CCCCCOO(78) origin: H_Abstraction
rxn: [CH2]CCCC(12) + CCCCCOO(78) <=> C[CH]CCCOO(65) + pentane(2) origin: H_Abstraction
rxn: C[CH]CCCOO(65) + CCCCCOO(78) <=> CCCCCO[O](61) + CCCCCOO(78) origin: H_Abstraction
rxn: C[CH]CCCOO(65) + CCCC(C)OO(27) <=> C[CH]CC(C)OO(34) + CCCCCOO(78) origin: H_Abstraction
rxn: [O]O(13) + CCCCCO[O](61) <=> oxygen(1) + [OH](24) + CCCCC[O](79) origin: Peroxyl_Disproportionation
rxn: CCCC(C)O[O](22) + CCCCCO[O](61) <=> oxygen(1) + CCCC(C)[O](41) + CCCCC[O](79) origin: Peroxyl_Disproportionation
rxn: CCCCCO[O](61) + CCCCCO[O](61) <=> oxygen(1) + CCCCC[O](79) + CCCCC[O](79) origin: Peroxyl_Disproportionation
rxn: CCC(CC)O[O](21) + CCCCCO[O](61) <=> oxygen(1) + CCC([O])CC(44) + CCCCC[O](79) origin: Peroxyl_Disproportionation
rxn: [CH2]CCCCOO(66) + pentane(2) <=> CC[CH]CC(7) + CCCCCOO(78) origin: H_Abstraction
rxn: [CH2]CCCCOO(66) + pentane(2) <=> C[CH]CCC(11) + CCCCCOO(78) origin: H_Abstraction
rxn: [CH2]CCCCOO(66) + CCC(CC)OO(26) <=> CCC(CC)O[O](21) + CCCCCOO(78) origin: H_Abstraction
rxn: [CH2]CCCCOO(66) + pentane(2) <=> [CH2]CCCC(12) + CCCCCOO(78) origin: H_Abstraction
rxn: [CH2]CCCCOO(66) + CCCCCOO(78) <=> CCCCCO[O](61) + CCCCCOO(78) origin: H_Abstraction
rxn: [CH2]CCCCOO(66) + CCCC(C)OO(27) <=> C[CH]CC(C)OO(34) + CCCCCOO(78) origin: H_Abstraction
rxn: CC[CH]CCOO(64) + pentane(2) <=> CC[CH]CC(7) + CCCCCOO(78) origin: H_Abstraction
rxn: CC[CH]CCOO(64) + pentane(2) <=> C[CH]CCC(11) + CCCCCOO(78) origin: H_Abstraction
rxn: CC[CH]CCOO(64) + CCC(CC)OO(26) <=> CCC(CC)O[O](21) + CCCCCOO(78) origin: H_Abstraction
rxn: [CH2]CCCC(12) + CCCCCOO(78) <=> CC[CH]CCOO(64) + pentane(2) origin: H_Abstraction
rxn: CC[CH]CCOO(64) + CCCCCOO(78) <=> CCCCCO[O](61) + CCCCCOO(78) origin: H_Abstraction
rxn: CC[CH]CCOO(64) + CCCC(C)OO(27) <=> C[CH]CC(C)OO(34) + CCCCCOO(78) origin: H_Abstraction
rxn: CC[C](CC)OO(58) + CCCCCOO(78) <=> CCCCCO[O](61) + CCC(CC)OO(26) origin: H_Abstraction
rxn: C[CH]C(CC)OO(37) + CCCCCOO(78) <=> CCCCCO[O](61) + CCC(CC)OO(26) origin: H_Abstraction
rxn: [O]O(13) + CCCCCO[O](61) <=> oxygen(1) + H2O(42) + CCCCC=O(62) origin: Peroxyl_Termination
rxn: [O]O(13) + CCCCCO[O](61) <=> CCCCCOOOO(101) origin: R_Recombination
rxn: [O]O(13) + CCCC(C)[O](41) <=> OO(23) + CCCC(C)=O(31) origin: Disproportionation
rxn: [O]O(13) + CCCC(C)[O](41) <=> oxygen(1) + CCCC(C)O(46) origin: H_Abstraction
rxn: [O]O(13) + CCCC(C)[O](41) <=> CCCC(C)OOO(102) origin: R_Recombination
rxn: C=CCCC(18) + CC[CH]CC(7) <=> C=CC[CH]C(69) + pentane(2) origin: H_Abstraction
rxn: C=CCCC(18) + CC[CH]CC(7) <=> [CH2]C=CCC(71) + pentane(2) origin: H_Abstraction
rxn: [CH2]CCC=C(72) + pentane(2) <=> C=CCCC(18) + CC[CH]CC(7) origin: H_Abstraction
rxn: C=[C]CCC(73) + pentane(2) <=> C=CCCC(18) + CC[CH]CC(7) origin: H_Abstraction
rxn: [CH]=CCCC(74) + pentane(2) <=> C=CCCC(18) + CC[CH]CC(7) origin: H_Abstraction
rxn: CCC[CH]COO(63) + pentane(2) <=> CC[CH]CC(7) + CCCCCOO(78) origin: H_Abstraction
rxn: CC[CH]CC(7) + CCCCCOO(78) <=> CCCC[CH]OO(84) + pentane(2) origin: H_Abstraction
rxn: CC[CH]CC(7) + C[CH]CC(C)OO(34) <=> C=CCC(C)OO(89) + pentane(2) origin: Disproportionation
rxn: CC[CH]CC(7) + CCCC(C)[O](41) <=> CCCC(C)=O(31) + pentane(2) origin: Disproportionation
rxn: CC[CH]CC(7) + CCCC(C)[O](41) <=> CC=CCC(16) + CCCC(C)O(46) origin: Disproportionation
rxn: C=CC[CH]C(69) + pentane(2) <=> C=CCCC(18) + C[CH]CCC(11) origin: H_Abstraction
rxn: C=CCCC(18) + C[CH]CCC(11) <=> [CH2]C=CCC(71) + pentane(2) origin: H_Abstraction
rxn: [CH2]CCC=C(72) + pentane(2) <=> C=CCCC(18) + C[CH]CCC(11) origin: H_Abstraction
rxn: C=[C]CCC(73) + pentane(2) <=> C=CCCC(18) + C[CH]CCC(11) origin: H_Abstraction
rxn: [CH]=CCCC(74) + pentane(2) <=> C=CCCC(18) + C[CH]CCC(11) origin: H_Abstraction
rxn: CCC[CH]COO(63) + pentane(2) <=> C[CH]CCC(11) + CCCCCOO(78) origin: H_Abstraction
rxn: CCCC[CH]OO(84) + pentane(2) <=> C[CH]CCC(11) + CCCCCOO(78) origin: H_Abstraction
rxn: C[CH]CCC(11) + C[CH]CC(C)OO(34) <=> C=CCC(C)OO(89) + pentane(2) origin: Disproportionation
rxn: C[CH]CCC(11) + CCCC(C)[O](41) <=> CCCC(C)=O(31) + pentane(2) origin: Disproportionation
rxn: C[CH]CCC(11) + CCCC(C)[O](41) <=> CC=CCC(16) + CCCC(C)O(46) origin: Disproportionation
rxn: C[CH]CCC(11) + CCCC(C)[O](41) <=> C=CCCC(18) + CCCC(C)O(46) origin: Disproportionation
rxn: CCCC(C)O[O](22) + CCCCCO[O](61) <=> oxygen(1) + CCCC(C)=O(31) + CCCCCO(103) origin: Peroxyl_Termination
rxn: CCCC(C)O[O](22) + CCCCCO[O](61) <=> oxygen(1) + CCCCC=O(62) + CCCC(C)O(46) origin: Peroxyl_Termination
rxn: C=CC[CH]C(69) + CCCC(C)OO(27) <=> C=CCCC(18) + CCCC(C)O[O](22) origin: H_Abstraction
rxn: C=CCCC(18) + CCCC(C)O[O](22) <=> [CH2]C=CCC(71) + CCCC(C)OO(27) origin: H_Abstraction
rxn: [CH2]CCC=C(72) + CCCC(C)OO(27) <=> C=CCCC(18) + CCCC(C)O[O](22) origin: H_Abstraction
rxn: C=[C]CCC(73) + CCCC(C)OO(27) <=> C=CCCC(18) + CCCC(C)O[O](22) origin: H_Abstraction
rxn: [CH]=CCCC(74) + CCCC(C)OO(27) <=> C=CCCC(18) + CCCC(C)O[O](22) origin: H_Abstraction
rxn: CCCC(C)O[O](22) + C[CH]CC(C)OO(34) <=> C=CCC(C)OO(89) + CCCC(C)OO(27) origin: Disproportionation
rxn: CCCC(C)[O](41) + CCCC(C)O[O](22) <=> CCCC(C)=O(31) + CCCC(C)OO(27) origin: Disproportionation
rxn: CCC(CC)O[O](21) + CCCCCO[O](61) <=> oxygen(1) + CCC(=O)CC(36) + CCCCCO(103) origin: Peroxyl_Termination
rxn: CCC(CC)O[O](21) + CCCCCO[O](61) <=> oxygen(1) + CCCCC=O(62) + CCC(O)CC(47) origin: Peroxyl_Termination
rxn: C=CC[CH]C(69) + CCC(CC)OO(26) <=> C=CCCC(18) + CCC(CC)O[O](21) origin: H_Abstraction
rxn: C=CCCC(18) + CCC(CC)O[O](21) <=> [CH2]C=CCC(71) + CCC(CC)OO(26) origin: H_Abstraction
rxn: [CH2]CCC=C(72) + CCC(CC)OO(26) <=> C=CCCC(18) + CCC(CC)O[O](21) origin: H_Abstraction
rxn: C=[C]CCC(73) + CCC(CC)OO(26) <=> C=CCCC(18) + CCC(CC)O[O](21) origin: H_Abstraction
rxn: [CH]=CCCC(74) + CCC(CC)OO(26) <=> C=CCCC(18) + CCC(CC)O[O](21) origin: H_Abstraction
rxn: CCC[CH]COO(63) + CCC(CC)OO(26) <=> CCC(CC)O[O](21) + CCCCCOO(78) origin: H_Abstraction
rxn: CCCC[CH]OO(84) + CCC(CC)OO(26) <=> CCC(CC)O[O](21) + CCCCCOO(78) origin: H_Abstraction
rxn: CCC(CC)O[O](21) + C[CH]CC(C)OO(34) <=> C=CCC(C)OO(89) + CCC(CC)OO(26) origin: Disproportionation
rxn: CCCC(C)[O](41) + CCC(CC)O[O](21) <=> CCCC(C)=O(31) + CCC(CC)OO(26) origin: Disproportionation
rxn: C[CH]CC(C)OO(34) + CCCC(C)OO(27) <=> CCC[C](C)OO(54) + CCCC(C)OO(27) origin: H_Abstraction
rxn: CC[CH]C(C)OO(32) + CCCC(C)OO(27) <=> C[CH]CC(C)OO(34) + CCCC(C)OO(27) origin: H_Abstraction
rxn: [CH2]C(CCC)OO(33) + CCCC(C)OO(27) <=> C[CH]CC(C)OO(34) + CCCC(C)OO(27) origin: H_Abstraction
rxn: [CH2]CCC(C)OO(35) + CCCC(C)OO(27) <=> C[CH]CC(C)OO(34) + CCCC(C)OO(27) origin: H_Abstraction
rxn: C[CH]CC(C)OO(34) + CCC(CC)OO(26) <=> CC[C](CC)OO(58) + CCCC(C)OO(27) origin: H_Abstraction
rxn: C[CH]C(CC)OO(37) + CCCC(C)OO(27) <=> C[CH]CC(C)OO(34) + CCC(CC)OO(26) origin: H_Abstraction
rxn: C=CCCC(18) + [CH2]CCCC(12) <=> C=CC[CH]C(69) + pentane(2) origin: H_Abstraction
rxn: C=CCCC(18) + [CH2]CCCC(12) <=> [CH2]C=CCC(71) + pentane(2) origin: H_Abstraction
rxn: [CH2]CCC=C(72) + pentane(2) <=> C=CCCC(18) + [CH2]CCCC(12) origin: H_Abstraction
rxn: C=[C]CCC(73) + pentane(2) <=> C=CCCC(18) + [CH2]CCCC(12) origin: H_Abstraction
rxn: [CH]=CCCC(74) + pentane(2) <=> C=CCCC(18) + [CH2]CCCC(12) origin: H_Abstraction
rxn: [CH2]CCCC(12) + CCCCCOO(78) <=> CCC[CH]COO(63) + pentane(2) origin: H_Abstraction
rxn: [CH2]CCCC(12) + CCCCCOO(78) <=> CCCC[CH]OO(84) + pentane(2) origin: H_Abstraction
rxn: [CH2]CCCC(12) + CCCC(C)[O](41) <=> CCCC(C)=O(31) + pentane(2) origin: Disproportionation
rxn: [CH2]CCCC(12) + CCCC(C)[O](41) <=> C=CCCC(18) + CCCC(C)O(46) origin: Disproportionation
rxn: CCCCCO[O](61) + CCCCCO[O](61) <=> oxygen(1) + CCCCC=O(62) + CCCCCO(103) origin: Peroxyl_Termination
rxn: C=CC[CH]C(69) + CCCCCOO(78) <=> C=CCCC(18) + CCCCCO[O](61) origin: H_Abstraction
rxn: C=CCCC(18) + CCCCCO[O](61) <=> [CH2]C=CCC(71) + CCCCCOO(78) origin: H_Abstraction
rxn: [CH2]CCC=C(72) + CCCCCOO(78) <=> C=CCCC(18) + CCCCCO[O](61) origin: H_Abstraction
rxn: C=[C]CCC(73) + CCCCCOO(78) <=> C=CCCC(18) + CCCCCO[O](61) origin: H_Abstraction
rxn: [CH]=CCCC(74) + CCCCCOO(78) <=> C=CCCC(18) + CCCCCO[O](61) origin: H_Abstraction
rxn: CCC[CH]COO(63) + CCCCCOO(78) <=> CCCCCO[O](61) + CCCCCOO(78) origin: H_Abstraction
rxn: CCCC[CH]OO(84) + CCCCCOO(78) <=> CCCCCO[O](61) + CCCCCOO(78) origin: H_Abstraction
rxn: CCCCCO[O](61) + C[CH]CC(C)OO(34) <=> C=CCC(C)OO(89) + CCCCCOO(78) origin: Disproportionation
rxn: CCCC(C)[O](41) + CCCCCO[O](61) <=> CCCC(C)=O(31) + CCCCCOO(78) origin: Disproportionation
rxn: [OH](24) + C=CCCC(18) <=> H2O(42) + C=CC[CH]C(69) origin: H_Abstraction
rxn: [OH](24) + C=CCCC(18) <=> H2O(42) + [CH2]C=CCC(71) origin: H_Abstraction
rxn: [OH](24) + C=CCCC(18) <=> H2O(42) + [CH2]CCC=C(72) origin: H_Abstraction
rxn: [OH](24) + C=CCCC(18) <=> H2O(42) + C=[C]CCC(73) origin: H_Abstraction
rxn: [OH](24) + C=CCCC(18) <=> H2O(42) + [CH]=CCCC(74) origin: H_Abstraction
rxn: [OH](24) + C=CCCC(18) <=> [CH2]C(O)CCC(97) origin: R_Addition_MultipleBond
rxn: [OH](24) + C=CCCC(18) <=> CCC[CH]CO(104) origin: R_Addition_MultipleBond
rxn: [OH](24) + CCCC(C)[O](41) <=> H2O(42) + CCCC(C)=O(31) origin: Disproportionation
rxn: H2O(42) + C=CCCC(18) <=> CCCCCO(103) origin: 1,3_Insertion_ROR
rxn: H2O(42) + C=CCCC(18) <=> CCCC(C)O(46) origin: 1,3_Insertion_ROR
rxn: C=CC[CH]C(69) + CCCC(C)OO(27) <=> C=CCCC(18) + C[CH]CC(C)OO(34) origin: H_Abstraction
rxn: C=CCCC(18) + C[CH]CC(C)OO(34) <=> [CH2]C=CCC(71) + CCCC(C)OO(27) origin: H_Abstraction
rxn: [CH2]CCC=C(72) + CCCC(C)OO(27) <=> C=CCCC(18) + C[CH]CC(C)OO(34) origin: H_Abstraction
rxn: C=[C]CCC(73) + CCCC(C)OO(27) <=> C=CCCC(18) + C[CH]CC(C)OO(34) origin: H_Abstraction
rxn: [CH]=CCCC(74) + CCCC(C)OO(27) <=> C=CCCC(18) + C[CH]CC(C)OO(34) origin: H_Abstraction
rxn: C=CCCC(18) + CCCC(C)[O](41) <=> C=CC[CH]C(69) + CCCC(C)O(46) origin: H_Abstraction
rxn: C=CCCC(18) + CCCC(C)[O](41) <=> [CH2]C=CCC(71) + CCCC(C)O(46) origin: H_Abstraction
rxn: C=CCCC(18) + CCCC(C)[O](41) <=> [CH2]CCC=C(72) + CCCC(C)O(46) origin: H_Abstraction
rxn: C=[C]CCC(73) + CCCC(C)O(46) <=> C=CCCC(18) + CCCC(C)[O](41) origin: H_Abstraction
rxn: [CH]=CCCC(74) + CCCC(C)O(46) <=> C=CCCC(18) + CCCC(C)[O](41) origin: H_Abstraction
rxn: [OH](24) + CCCC(C)O(46) <=> H2O(42) + CCCC(C)[O](41) origin: H_Abstraction
rxn: CCC[CH]COO(63) + CCCC(C)OO(27) <=> C[CH]CC(C)OO(34) + CCCCCOO(78) origin: H_Abstraction
rxn: CCCC[CH]OO(84) + CCCC(C)OO(27) <=> C[CH]CC(C)OO(34) + CCCCCOO(78) origin: H_Abstraction
rxn: CCCC(C)[O](41) + C[CH]CC(C)OO(34) <=> CCCC(C)=O(31) + CCCC(C)OO(27) origin: Disproportionation
rxn: CCCC(C)[O](41) + C[CH]CC(C)OO(34) <=> CC=CC(C)OO(88) + CCCC(C)O(46) origin: Disproportionation
rxn: CCCC(C)[O](41) + C[CH]CC(C)OO(34) <=> C=CCC(C)OO(89) + CCCC(C)O(46) origin: Disproportionation
rxn: [O]O(13) + CCCC(C)O(46) <=> OO(23) + CCCC(C)[O](41) origin: H_Abstraction
rxn: CCCC(C)[O](41) + CCCC(C)[O](41) <=> CCCC(C)=O(31) + CCCC(C)O(46) origin: Disproportionation
rxn: CCCC(C)O[O](22) + CCCC(C)OO[O](48) <=> oxygen(1) + CCCC(C)[O](41) + CCCC(C)O[O](22) origin: Peroxyl_Disproportionation
rxn: CCCC(C)O[O](22) + CCC(CC)OO[O](49) <=> oxygen(1) + CCCC(C)[O](41) + CCC(CC)O[O](21) origin: Peroxyl_Disproportionation
rxn: CCCC(C)O[O](22) + CCCCCOO[O](105) <=> oxygen(1) + CCCC(C)[O](41) + CCCCCO[O](61) origin: Peroxyl_Disproportionation
rxn: OO(23) + OOO(106) <=> [O]O(13) + [O]O(13) + H2O(42) origin: Bimolec_Hydroperoxide_Decomposition
rxn: OOO(106) + CCCC(C)OO(27) <=> [O]O(13) + H2O(42) + CCCC(C)O[O](22) origin: Bimolec_Hydroperoxide_Decomposition
rxn: OO(23) + CCCC(C)OOO(102) <=> [O]O(13) + H2O(42) + CCCC(C)O[O](22) origin: Bimolec_Hydroperoxide_Decomposition
rxn: OOO(106) + CCC(CC)OO(26) <=> [O]O(13) + H2O(42) + CCC(CC)O[O](21) origin: Bimolec_Hydroperoxide_Decomposition
rxn: OO(23) + CCC(CC)OOO(107) <=> [O]O(13) + H2O(42) + CCC(CC)O[O](21) origin: Bimolec_Hydroperoxide_Decomposition
rxn: OOO(106) + CCCCCOO(78) <=> [O]O(13) + H2O(42) + CCCCCO[O](61) origin: Bimolec_Hydroperoxide_Decomposition
rxn: OO(23) + CCCCCOOO(108) <=> [O]O(13) + H2O(42) + CCCCCO[O](61) origin: Bimolec_Hydroperoxide_Decomposition
rxn: CCCC(C)OO(27) + CCCC(C)OOO(102) <=> H2O(42) + CCCC(C)O[O](22) + CCCC(C)O[O](22) origin: Bimolec_Hydroperoxide_Decomposition
rxn: CCC(CC)OO(26) + CCCC(C)OOO(102) <=> H2O(42) + CCC(CC)O[O](21) + CCCC(C)O[O](22) origin: Bimolec_Hydroperoxide_Decomposition
rxn: CCCC(C)OO(27) + CCC(CC)OOO(107) <=> H2O(42) + CCC(CC)O[O](21) + CCCC(C)O[O](22) origin: Bimolec_Hydroperoxide_Decomposition
rxn: CCCCCOO(78) + CCCC(C)OOO(102) <=> H2O(42) + CCCC(C)O[O](22) + CCCCCO[O](61) origin: Bimolec_Hydroperoxide_Decomposition
rxn: CCCC(C)OO(27) + CCCCCOOO(108) <=> H2O(42) + CCCC(C)O[O](22) + CCCCCO[O](61) origin: Bimolec_Hydroperoxide_Decomposition
rxn: CCC(CC)OO(26) + CCC(CC)OOO(107) <=> H2O(42) + CCC(CC)O[O](21) + CCC(CC)O[O](21) origin: Bimolec_Hydroperoxide_Decomposition
rxn: CCCCCOO(78) + CCC(CC)OOO(107) <=> H2O(42) + CCC(CC)O[O](21) + CCCCCO[O](61) origin: Bimolec_Hydroperoxide_Decomposition
rxn: CCC(CC)OO(26) + CCCCCOOO(108) <=> H2O(42) + CCC(CC)O[O](21) + CCCCCO[O](61) origin: Bimolec_Hydroperoxide_Decomposition
rxn: CCCCCOO(78) + CCCCCOOO(108) <=> H2O(42) + CCCCCO[O](61) + CCCCCO[O](61) origin: Bimolec_Hydroperoxide_Decomposition
The tested model has 99 reactions that the original model does not have. ❌
rxn: [CH2]CC(CC)OO(38) <=> C[CH]C(CC)OO(37) origin: intra_H_migration
rxn: C[CH]C(CC)OO(37) <=> [CH2]CC(CC)OO(38) origin: intra_H_migration
rxn: CCCO[O](133) <=> oxygen(1) + [CH2]CC(5) origin: R_Recombination
rxn: CC[CH]CC(7) + CC(CC(C)OO)OO(141) <=> CC(CC(C)OO)O[O](100) + pentane(2) origin: H_Abstraction
rxn: C[CH]CCC(11) + CC(CC(C)OO)OO(141) <=> CC(CC(C)OO)O[O](100) + pentane(2) origin: H_Abstraction
rxn: [CH2]CCCC(12) + CC(CC(C)OO)OO(141) <=> CC(CC(C)OO)O[O](100) + pentane(2) origin: H_Abstraction
rxn: [O]O(13) + CC=CCC(16) <=> CC[CH]C(C)OO(32) origin: R_Addition_MultipleBond
rxn: [O]O(13) + CC=CCC(16) <=> C[CH]C(CC)OO(37) origin: R_Addition_MultipleBond
rxn: oxygen(1) + [CH2]CCC(C)O(99) <=> CC(O)CCCO[O](134) origin: R_Recombination
rxn: oxygen(1) + [CH2]CC(CC)OO(38) <=> CCC(CCO[O])OO(137) origin: R_Recombination
rxn: oxygen(1) + [O]O(13) <=> [O]OOO(20) origin: R_Recombination
rxn: [O]OO(28) + [O]OO(28) <=> oxygen(1) + [O]O(13) + [O]O(13) origin: Peroxyl_Disproportionation
rxn: oxygen(1) + CCCC(C)O[O](21) <=> CCCC(C)OOO[O](39) origin: R_Recombination
rxn: oxygen(1) + CCC(CC)O[O](22) <=> CCC(CC)OOO[O](40) origin: R_Recombination
rxn: [O]OO(28) + CCCC(C)OO[O](48) <=> oxygen(1) + [O]O(13) + CCCC(C)O[O](21) origin: Peroxyl_Disproportionation
rxn: [O]OO(28) + CCC(CC)OO[O](49) <=> oxygen(1) + [O]O(13) + CCC(CC)O[O](22) origin: Peroxyl_Disproportionation
rxn: oxygen(1) + CCCCCO[O](61) <=> CCCCCOOO[O](77) origin: R_Recombination
rxn: oxygen(1) + [OH](24) <=> [O]OO(28) origin: R_Recombination
rxn: CH2(S)(3) + C[CH2](6) <=> [CH2]CC(5) origin: 1,2_Insertion_carbene
rxn: [CH2]CC(5) <=> H(8) + C=CC(18) origin: R_Addition_MultipleBond
rxn: [CH3](10) + C=C(57) <=> [CH2]CC(5) origin: R_Addition_MultipleBond
rxn: C[CH]C(101) <=> [CH2]CC(5) origin: intra_H_migration
rxn: CO(102) + CH4(103) <=> CC=O(93) origin: 1,2_Insertion_CO
rxn: C=CO(104) <=> CC=O(93) origin: Ketoenol
rxn: [CH]=O(105) + [CH3](10) <=> CC=O(93) origin: R_Recombination
rxn: H(8) + C=C[O](106) <=> CC=O(93) origin: R_Recombination
rxn: H(8) + C[C]=O(107) <=> CC=O(93) origin: R_Recombination
rxn: CH2(S)(3) + CC(CCOO)O[O](108) <=> CC(CC(C)OO)O[O](100) origin: 1,2_Insertion_carbene
rxn: CH2(S)(3) + CC(CCO[O])OO(109) <=> CC(CC(C)OO)O[O](100) origin: 1,2_Insertion_carbene
rxn: CC(CC(C)OO)O[O](100) <=> [OH](24) + CC1CC(C)OOO1(110) origin: Cyclic_Ether_Formation
rxn: CC(CC(C)OO)O[O](100) <=> [O]O(13) + CC=CC(C)OO(88) origin: HO2_Elimination_from_PeroxyRadical
rxn: CC(CC(C)OO)O[O](100) <=> [O]O(13) + C=CCC(C)OO(89) origin: HO2_Elimination_from_PeroxyRadical
rxn: CC(CC(C)OO)O[O](100) <=> [OH](24) + CC(=O)CC(C)OO(111) origin: intra_H_migration
rxn: CC([CH]C(C)OO)OO(112) <=> CC(CC(C)OO)O[O](100) origin: intra_H_migration
rxn: CC(CC(C)OO)O[O](100) <=> [CH2]C(CC(C)OO)OO(113) origin: intra_H_migration
rxn: CC(CC(C)OO)O[O](100) <=> [OH](24) + CC(=O)CC(C)OO(111) origin: intra_H_migration
rxn: [CH2]C(CC(C)OO)OO(113) <=> CC(CC(C)OO)O[O](100) origin: intra_H_migration
rxn: CH2(S)(3) + [CH2]CCCO(114) <=> [CH2]CCC(C)O(99) origin: 1,2_Insertion_carbene
rxn: H2O(42) + [CH2]CC=CC(115) <=> [CH2]CCC(C)O(99) origin: 1,3_Insertion_ROR
rxn: H2O(42) + [CH2]CCC=C(72) <=> [CH2]CCC(C)O(99) origin: 1,3_Insertion_ROR
rxn: [CH2]CO(116) + C=CC(18) <=> [CH2]CCC(C)O(99) origin: 1,3_Insertion_ROR
rxn: H(8) + C=CCC(C)O(117) <=> [CH2]CCC(C)O(99) origin: R_Addition_MultipleBond
rxn: C=C(57) + [CH2]C(C)O(118) <=> [CH2]CCC(C)O(99) origin: R_Addition_MultipleBond
rxn: [CH2]CCC(C)O(99) <=> C[CH]CC(C)O(98) origin: intra_H_migration
rxn: [CH2]CCC(C)O(99) <=> CC[CH]C(C)O(96) origin: intra_H_migration
rxn: [CH2]CCC(C)O(99) <=> CCC[C](C)O(95) origin: intra_H_migration
rxn: [CH2]C(O)CCC(97) <=> [CH2]CCC(C)O(99) origin: intra_H_migration
rxn: CH2(S)(3) + CC[CH]COO(119) <=> CC[CH]C(C)OO(32) origin: 1,2_Insertion_carbene
rxn: CH2(S)(3) + C[CH]C(C)OO(120) <=> CC[CH]C(C)OO(32) origin: 1,2_Insertion_carbene
rxn: CC[CH]C(C)OO(32) <=> [OH](24) + CCC(C)C=O(121) origin: 1,2_shiftC
rxn: [CH2]C(C)C(C)OO(86) <=> CC[CH]C(C)OO(32) origin: 1,2_shiftC
rxn: CC[CH]C(C)OO(32) <=> [OH](24) + CCC1OC1C(122) origin: Cyclic_Ether_Formation
rxn: H(8) + CCC=C(C)OO(123) <=> CC[CH]C(C)OO(32) origin: R_Addition_MultipleBond
rxn: H(8) + CC=CC(C)OO(88) <=> CC[CH]C(C)OO(32) origin: R_Addition_MultipleBond
rxn: [CH3](10) + CCC=COO(124) <=> CC[CH]C(C)OO(32) origin: R_Addition_MultipleBond
rxn: [CH3](10) + C=CC(C)OO(125) <=> CC[CH]C(C)OO(32) origin: R_Addition_MultipleBond
rxn: CC[CH]C(C)OO(32) <=> CCC[C](C)OO(54) origin: intra_H_migration
rxn: [CH2]C(CCC)OO(33) <=> CC[CH]C(C)OO(32) origin: intra_H_migration
rxn: [CH2]CCC(C)OO(35) <=> CC[CH]C(C)OO(32) origin: intra_H_migration
rxn: CC[CH]C(C)OO(32) <=> CCC(O)C(C)[O](126) origin: intra_OH_migration
rxn: CH2(S)(3) + C[CH]C(C)OO(120) <=> C[CH]C(CC)OO(37) origin: 1,2_Insertion_carbene
rxn: CH2(S)(3) + C[CH]C(C)OO(120) <=> C[CH]C(CC)OO(37) origin: 1,2_Insertion_carbene
rxn: C[CH]C(CC)OO(37) <=> [OH](24) + CCC(C)C=O(121) origin: 1,2_shiftC
rxn: C[CH]C(CC)OO(37) <=> [OH](24) + CCC1OC1C(122) origin: Cyclic_Ether_Formation
rxn: H(8) + CC=C(CC)OO(127) <=> C[CH]C(CC)OO(37) origin: R_Addition_MultipleBond
rxn: H(8) + C=CC(CC)OO(128) <=> C[CH]C(CC)OO(37) origin: R_Addition_MultipleBond
rxn: C[CH2](6) + CC=COO(129) <=> C[CH]C(CC)OO(37) origin: R_Addition_MultipleBond
rxn: C[CH]C(CC)OO(37) <=> CC[C](CC)OO(59) origin: intra_H_migration
rxn: C[CH]C(CC)OO(37) <=> CCC([O])C(C)O(130) origin: intra_OH_migration
rxn: CH2(S)(3) + [CH2]CC(C)OO(56) <=> [CH2]CC(CC)OO(38) origin: 1,2_Insertion_carbene
rxn: CH2(S)(3) + [CH2]CC(C)OO(56) <=> [CH2]CC(CC)OO(38) origin: 1,2_Insertion_carbene
rxn: [CH2]CC(CC)OO(38) <=> [OH](24) + CCC1CCO1(131) origin: Cyclic_Ether_Formation
rxn: H(8) + C=CC(CC)OO(128) <=> [CH2]CC(CC)OO(38) origin: R_Addition_MultipleBond
rxn: C=C(57) + CC[CH]OO(58) <=> [CH2]CC(CC)OO(38) origin: R_Addition_MultipleBond
rxn: [CH2]CC(CC)OO(38) <=> CC[C](CC)OO(59) origin: intra_H_migration
rxn: [CH2]CC(CC)OO(38) <=> CCC([O])CCO(132) origin: intra_OH_migration
rxn: oxygen(1) + [CH2]CC(5) <=> [O]O(13) + C=CC(18) origin: Disproportionation
rxn: [O]O(13) + C=C[O](106) <=> oxygen(1) + CC=O(93) origin: H_Abstraction
rxn: oxygen(1) + CC=O(93) <=> [O]O(13) + C[C]=O(107) origin: H_Abstraction
rxn: oxygen(1) + [CH2]CCC(C)O(99) <=> [O]O(13) + C=CCC(C)O(117) origin: Disproportionation
rxn: oxygen(1) + CC[CH]C(C)OO(32) <=> [O]O(13) + CCC=C(C)OO(123) origin: Disproportionation
rxn: oxygen(1) + CC[CH]C(C)OO(32) <=> [O]O(13) + CC=CC(C)OO(88) origin: Disproportionation
rxn: oxygen(1) + CC[CH]C(C)OO(32) <=> CCC(O[O])C(C)OO(135) origin: R_Recombination
rxn: oxygen(1) + C[CH]C(CC)OO(37) <=> [O]O(13) + CC=C(CC)OO(127) origin: Disproportionation
rxn: oxygen(1) + C[CH]C(CC)OO(37) <=> [O]O(13) + C=CC(CC)OO(128) origin: Disproportionation
rxn: oxygen(1) + C[CH]C(CC)OO(37) <=> CCC(OO)C(C)O[O](136) origin: R_Recombination
rxn: oxygen(1) + [CH2]CC(CC)OO(38) <=> [O]O(13) + C=CC(CC)OO(128) origin: Disproportionation
rxn: [CH2]CC(5) + pentane(2) <=> CCC(138) + CC[CH]CC(7) origin: H_Abstraction
rxn: [CH2]CC(5) + pentane(2) <=> CCC(138) + C[CH]CCC(11) origin: H_Abstraction
rxn: CCC(138) + [CH2]CCCC(12) <=> [CH2]CC(5) + pentane(2) origin: H_Abstraction
rxn: C[CH]O(139) + CC[CH]CC(7) <=> CC=O(93) + pentane(2) origin: Disproportionation
rxn: CC[O](140) + CC[CH]CC(7) <=> CC=O(93) + pentane(2) origin: Disproportionation
rxn: C[CH]O(139) + C[CH]CCC(11) <=> CC=O(93) + pentane(2) origin: Disproportionation
rxn: CC[O](140) + C[CH]CCC(11) <=> CC=O(93) + pentane(2) origin: Disproportionation
rxn: C[CH]O(139) + [CH2]CCCC(12) <=> CC=O(93) + pentane(2) origin: Disproportionation
rxn: CC[O](140) + [CH2]CCCC(12) <=> CC=O(93) + pentane(2) origin: Disproportionation
rxn: [CH2]CCC(C)O(99) + pentane(2) <=> CC[CH]CC(7) + CCCC(C)O(46) origin: H_Abstraction
rxn: [CH2]CCC(C)O(99) + pentane(2) <=> C[CH]CCC(11) + CCCC(C)O(46) origin: H_Abstraction
rxn: [CH2]CCC(C)O(99) + pentane(2) <=> [CH2]CCCC(12) + CCCC(C)O(46) origin: H_Abstraction
Errors occurred during edge comparison ⚠️
ERROR conda.cli.main_run:execute(148): `conda run python scripts/checkModels.py RMS_CSTR_liquid_oxidation-edge stable_regression_results/RMS_CSTR_liquid_oxidation/chemkin/chem_edge_annotated.inp stable_regression_results/RMS_CSTR_liquid_oxidation/chemkin/species_edge_dictionary.txt test/regression/RMS_CSTR_liquid_oxidation/chemkin/chem_edge_annotated.inp test/regression/RMS_CSTR_liquid_oxidation/chemkin/species_edge_dictionary.txt` failed. (See above for error)
RMS_CSTR_liquid_oxidation Passed Observable Testing ✅
Regression test fragment:
Reference: Execution time (DD:HH:MM:SS): 00:00:00:31
Current: Execution time (DD:HH:MM:SS): 00:00:00:32
Reference: Memory used: 758.55 MB
Current: Memory used: 758.18 MB
fragment Passed Core Comparison ✅
Original model has 10 species.
Test model has 10 species. ✅
Original model has 2 reactions.
Test model has 2 reactions. ✅
fragment Passed Edge Comparison ✅
Original model has 33 species.
Test model has 33 species. ✅
Original model has 47 reactions.
Test model has 47 reactions. ✅
fragment Passed Observable Testing ✅
Errors occurred during observable testing ⚠️
WARNING: Initial mole fractions do not sum to one; normalizing.
Regression test RMS_constantVIdealGasReactor_fragment:
Reference: Execution time (DD:HH:MM:SS): 00:00:02:44
Current: Execution time (DD:HH:MM:SS): 00:00:03:23
Reference: Memory used: 2478.64 MB
Current: Memory used: 2692.81 MB
RMS_constantVIdealGasReactor_fragment Passed Core Comparison ✅
Original model has 10 species.
Test model has 10 species. ✅
Original model has 2 reactions.
Test model has 2 reactions. ✅
RMS_constantVIdealGasReactor_fragment Passed Edge Comparison ✅
Original model has 27 species.
Test model has 27 species. ✅
Original model has 24 reactions.
Test model has 24 reactions. ✅
RMS_constantVIdealGasReactor_fragment Passed Observable Testing ✅
Errors occurred during observable testing ⚠️
WARNING: Initial mole fractions do not sum to one; normalizing.
Regression test minimal_surface:
Reference: Execution time (DD:HH:MM:SS): 00:00:00:29
Current: Execution time (DD:HH:MM:SS): 00:00:00:30
Reference: Memory used: 915.96 MB
Current: Memory used: 918.43 MB
minimal_surface Passed Core Comparison ✅
Original model has 11 species.
Test model has 11 species. ✅
Original model has 3 reactions.
Test model has 3 reactions. ✅
minimal_surface Passed Edge Comparison ✅
Original model has 38 species.
Test model has 38 species. ✅
Original model has 38 reactions.
Test model has 38 reactions. ✅
minimal_surface Passed Observable Testing ✅
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Notes
This PR addresses the first bullet in ReactionMechanismGenerator/RMG-website#306.
This PR should be merged after the official RMG-database v4.0.0 release.