Rigorous process modeling and equipment sizing for a multi-column stripping scheme, validating MELLAPAK structured packing parameters and precise condenser heat duties.
ChemKlub India collaborated with Knexir Consultants to develop a robust simulation model for a multi-stage stripping column scheme handling a complex multi-component feed (BLR, Toluene, Butyl Cellosolve).
The primary objective was to calculate highly precise column parameters—specifically the required diameters and packing heights—along with the heat duties for the associated network of six condensers and two preheaters.
Our simulation ensured all bottom product specifications were successfully achieved, while identifying optimal utility loads for cooling water (CW), chilled water (CHW), and medium pressure steam (MPS).
Aspen V14
Process Modeling
MELLAPAK Packing
Column Internals
Thermal Analysis
Heat Transfer Evaluation
A rigorous approach to simulation modeling, ensuring accurate mass transfer and fluid dynamic calculations.
Building the steady-state simulation model in Aspen based on client PFD, input compositions (BLR >97%), and strict 10 MLC pressure drop limits.
Calculating hydraulics and mass transfer requirements to determine specific diameters (0.42m, 0.29m, 0.2m) and 5m packing heights.
Extracting heat duties across the primary and secondary condenser networks (e.g., 0.19 Gcal/hr CW) to manage vapor phase transitions.
Compiling final Heat and Mass Balance (HMB), exchanger area calculations, and total utility usage rates for final design approval.
Our deliverables provided the EPC and fabrication teams with comprehensive, validated data across the entire stripping circuit.
Project Compliance
100% SPEC COMPLIANCE
Complete steady-state simulation model tailored to the custom stripping configuration.
Diameters and 10-stage packing height determinations for 3 distinct column vessels.
Calculated areas and thermal duties for pre-feed heaters and stripping steam exchangers.
Comprehensive Heat and Mass Balance data verifying exact top and bottom product specs.
Condenser cooling requirements segregated precisely by CW and CHW networks.
Detailed design document report summarizing the entire stripper scheme architecture.
Achieving stringent bottom product purity (driving Toluene to zero and keeping Butyl Cellosolve below 0.05%) while managing an 8,495 kg/hr feed rate.
Engineering Solution
Optimized the introduction of super-heated stripping steam (145°C) and configured precisely sized 10-stage MELLAPAK packed beds to guarantee mass transfer efficiency.
Allocating massive heat duties across a dual-condenser setup per column while staying within strict 10 MLC allowable pressure drop constraints on the utility side.
Engineering Solution
Rigorously simulated the phase envelopes to safely split duties, calculating exact utility loads for CW in the primary stage, and dedicated CHW in the secondary stage.
Let our engineering experts help you validate your process designs and simulation models for safety and performance.