Aspen HYSYS – Process simulation and optimization


Highly motivated and technically proficient chemical engineer with a strong academic and practical background in process engineering, R&D, and thermodynamic system analysis. Experienced in both laboratory and simulation environments, with a proven track record of working on advanced topics such as nanoparticle design for targeted cancer therapy. Led engineering teams in research projects and contributed to the development and optimization of chemical processes from concept to application.
Proficient in industry-standard tools including Aspen HYSYS, MATLAB, MapleSoft, AutoCAD, and Finite Element Analysis (FEA), with working knowledge of process simulation, reactor and heat exchanger design, and computational modeling. Adept at coding and automation tasks, with additional experience in developing engineering tools and solving complex engineering problems using numerical methods.
Strong communicator and team player with hands-on experience in data analysis, technical writing, and presenting research findings. Deeply interested in the intersection of chemical engineering, innovation, and real-world impact — especially in energy systems, sustainability, and medical applications.
Root-cause analysis
Process flow analysis
Continuous improvement
Team collaboration
Process flows
Documents and reports
Mechanical engineering knowledge
Project management
Design of experiments
Operations research
Machine troubleshooting
Production efficiency
Aspen HYSYS – Process simulation and optimization
MATLAB – Numerical analysis, modeling, scripting, Simulink
Python – Data analysis, automation, scientific computing
MapleSoft – Symbolic mathematics, system modeling
AutoCAD – 2D/3D drafting and plant layout design
SolidWorks – Mechanical design, part modeling
ANSYS – FEA, CFD, thermal analysis
Microsoft Excel – Advanced formulas, pivot tables, VBA
ChemCAD – Process modeling