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Chemstations Dynamic Seminar

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Presentation on theme: "Chemstations Dynamic Seminar"— Presentation transcript:

1 Chemstations Dynamic Seminar
Dynamic Behaviour of Regular Process Operations John E Edwards P&I Design Ltd 1

2 CRYOGENIC BATCH REACTOR OPTIMISATION
DYNAMIC SIMULATION POWER CRYOGENIC BATCH REACTOR OPTIMISATION Dynamic Simulation without Control Systems Develop dynamic simulation without control systems Equivalent to perfect control No special control system skills required Easier to set up in reduced time More effective use of the design team Correctly applied can avoid design errors Dynamic Simulation Basic Application Use dynamic simulation for basic design Time dependent parameters and hold ups Validates preliminary design concepts Equipment sizing Optimize the process design Test throughput change and shutdown Predict system performance and transient behaviour

3 CRYOGENIC BATCH REACTOR OPTIMISATION
REGULAR PROCESS OPERATIONS CRYOGENIC BATCH REACTOR OPTIMISATION Typical Process Operations Process route select Perform batch process sequences Material transfer from tanker to storage Material transfer within a storage facility Storage tank heating Emergency relief sizing and behaviour Dynamic vessel and agitated batch reactor Batch distillation optimization Batch reactor design and performance Distillation column design and performance Equipment failure and hazardous analysis

4 CRYOGENIC BATCH REACTOR OPTIMISATION
PROCESS ROUTING CRYOGENIC BATCH REACTOR OPTIMISATION

5 CRYOGENIC BATCH REACTOR OPTIMISATION
ROUTE SELECT TECHNIQUE CRYOGENIC BATCH REACTOR OPTIMISATION RAMP and FEEDFOWARD CONTROLLER Ramp controls the stream selection over time Feedforward controller sets divider stream selection Dummy stream set at zero to stop route flow

6 CRYOGENIC BATCH REACTOR OPTIMISATION
PROCESS ROUTING BENEFITS CRYOGENIC BATCH REACTOR OPTIMISATION Benefits Allows the study of material transfers Design of pump and piping systems in real situations Batch distillation cut control

7 CRYOGENIC BATCH REACTOR OPTIMISATION
MIXING VESSEL SEQUENCE CONTROL CRYOGENIC BATCH REACTOR OPTIMISATION Detailed Process Operations 1. Fill tank to a preset level 2. Remove water to level through screens to retain the solid product 3. Add hot wash water and mix 4. Drain to low level again 5. Repeat steps 3 and 4 6. Refill the tank with hot water to the original level 7. Inject live steam to heat at a certain rate to a soak temperature 8. Hold for a period of time 9. Recirculate through a heat exchanger to cool the tank 10. Transfer the contents to the next step in the process

8 CRYOGENIC BATCH REACTOR OPTIMISATION
MIXING VESSEL SEQUENCE CONTROL CRYOGENIC BATCH REACTOR OPTIMISATION

9 CRYOGENIC BATCH REACTOR OPTIMISATION
MIXING VESSEL SEQUENCE CONTROL CRYOGENIC BATCH REACTOR OPTIMISATION

10 CRYOGENIC BATCH REACTOR OPTIMISATION
ROAD/RAIL TANKER TO STORAGE CRYOGENIC BATCH REACTOR OPTIMISATION

11 CRYOGENIC BATCH REACTOR OPTIMISATION
ROAD/RAIL TANKER TO STORAGE CRYOGENIC BATCH REACTOR OPTIMISATION

12 CRYOGENIC BATCH REACTOR OPTIMISATION
BITUMEN STORAGE TANK HEATING CRYOGENIC BATCH REACTOR OPTIMISATION

13 CRYOGENIC BATCH REACTOR OPTIMISATION
BITUMEN STORAGE TANK HEATING CRYOGENIC BATCH REACTOR OPTIMISATION

14 CRYOGENIC BATCH REACTOR OPTIMISATION
STORAGE TANKER DIURNAL EMISSION CRYOGENIC BATCH REACTOR OPTIMISATION Current Run Time

15 CRYOGENIC BATCH REACTOR OPTIMISATION
ROAD/RAIL TANKER TO STORAGE CRYOGENIC BATCH REACTOR OPTIMISATION

16 CRYOGENIC BATCH REACTOR OPTIMISATION
STORAGE TANK EMISSION PREDICTION CRYOGENIC BATCH REACTOR OPTIMISATION Emission Prediction Site emission reporting is a legal requirement Government legislation required Simulation readily adapted to geographical conditions Adapting operational procedures to minimise emissions Heat inputs calculated in Excel to comply with accepted methods Easy to apply and flexible for wide range of components and procedures

17 CRYOGENIC BATCH REACTOR OPTIMISATION
CONCLUSIONS CRYOGENIC BATCH REACTOR OPTIMISATION Dynamic Simulation without Control Systems No special control system skills required Applies standard process engineering techniques Easier to set up in less time Applicable to a wide range of process activities Aids initial design development Control systems added after finalised design


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