fork tutorial. exercise 1 using simulation to determine adiabatic time to maximum rate tmr(t)

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ForK Tutorial. Exercise 1 Using simulation to determine adiabatic Time to Maximum Rate TMR(T) Select Simulation mode Run Scoring

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Select Simulation mode. ForK Tutorial. Exercise 1 Using simulation to determine adiabatic Time to Maximum Rate TMR(T). Run Scoring. Open an existing project which contains kinetic model Kinetic model has been evaluated from the ARC data related to decomposition of an organic product. - PowerPoint PPT Presentation

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Page 1: ForK Tutorial. Exercise 1  Using simulation to determine adiabatic Time to Maximum Rate TMR(T)

ForK Tutorial. Exercise 1 Using simulation to determine adiabatic Time to Maximum Rate TMR(T)

Select Simulation mode

Run Scoring

Page 2: ForK Tutorial. Exercise 1  Using simulation to determine adiabatic Time to Maximum Rate TMR(T)

Open an existing project which contains kinetic model

Kinetic model has been evaluated from the ARC data related to decomposition of an organic product

Page 3: ForK Tutorial. Exercise 1  Using simulation to determine adiabatic Time to Maximum Rate TMR(T)

1. Find and se-lect DEMOS folder

2. Select the Adiabatic data volume

3. Select DCM 1 kinetic data set and open it

Page 4: ForK Tutorial. Exercise 1  Using simulation to determine adiabatic Time to Maximum Rate TMR(T)

1. View conditions of the experiment (reactor data)

Next steps are to view data of the project selected

Page 5: ForK Tutorial. Exercise 1  Using simulation to determine adiabatic Time to Maximum Rate TMR(T)
Page 6: ForK Tutorial. Exercise 1  Using simulation to determine adiabatic Time to Maximum Rate TMR(T)

2. View heat exchange parameters

Page 7: ForK Tutorial. Exercise 1  Using simulation to determine adiabatic Time to Maximum Rate TMR(T)
Page 8: ForK Tutorial. Exercise 1  Using simulation to determine adiabatic Time to Maximum Rate TMR(T)
Page 9: ForK Tutorial. Exercise 1  Using simulation to determine adiabatic Time to Maximum Rate TMR(T)

3. View experimental responses

Page 10: ForK Tutorial. Exercise 1  Using simulation to determine adiabatic Time to Maximum Rate TMR(T)

View derivatives

Page 11: ForK Tutorial. Exercise 1  Using simulation to determine adiabatic Time to Maximum Rate TMR(T)

View derivatives using Arrhenius axes

Page 12: ForK Tutorial. Exercise 1  Using simulation to determine adiabatic Time to Maximum Rate TMR(T)
Page 13: ForK Tutorial. Exercise 1  Using simulation to determine adiabatic Time to Maximum Rate TMR(T)

4. View kinetic model

Page 14: ForK Tutorial. Exercise 1  Using simulation to determine adiabatic Time to Maximum Rate TMR(T)

Simulating reaction course under experiment’s conditions to check how the model fits experimental data

Adjusting parame-ters of the nume-rical integration method and running simulation

Page 15: ForK Tutorial. Exercise 1  Using simulation to determine adiabatic Time to Maximum Rate TMR(T)

Zooming fragment of data

Page 16: ForK Tutorial. Exercise 1  Using simulation to determine adiabatic Time to Maximum Rate TMR(T)

Calculation of adiabatic TMR

Page 17: ForK Tutorial. Exercise 1  Using simulation to determine adiabatic Time to Maximum Rate TMR(T)

Adjusting parameters for TMR calculation and running simulation

Page 18: ForK Tutorial. Exercise 1  Using simulation to determine adiabatic Time to Maximum Rate TMR(T)

View results using Arrhenius axes

Page 19: ForK Tutorial. Exercise 1  Using simulation to determine adiabatic Time to Maximum Rate TMR(T)

The 1st Exercise is over.

Press [Esc] to close presentation.

If you have ForK installed we recommend to repeat this exercise by yourself using demo data