The training course of Aspen HYSYS: Process Modeling MBA, is prepared for those whom have A background in chemical/process engineering, the oil/gas industry, or petroleum refining, and Basics of and handling the Aspen HYSYS Steady-state simulation.
Learn to build, navigate and optimize process simulations using Aspen HYSYS.
Learn efficient use of different HYSYS functions to build advanced steady-state process simulations.
Leverage the intuitive solving capabilities and other key features of Aspen HYSYS that allow for rapid Flowsheet construction.
Use the Workbook and Flowsheet interfaces for quick and effective modeling.
Discover how multi-flow sheet integration can streamline and organize simulation efforts.
Improve the convergence characteristics of columns and flow sheets; troubleshoot common problems.
Leverage the intuitive bi-directional solver and other key features of Aspen HYSYS that allow for rapid flowsheet construction
Use the Workbook and Process Flow Diagram (PFD) interfaces for quick and effective modeling
Discover how multi-flowsheet integration can streamline and organize simulation efforts
Explore different means of reporting results, including the use of Microsoft Excel VB macros
Evaluate the performance of existing equipment by leveraging the rating capabilities of Aspen HYSYS
Improve the convergence characteristics of columns and flowsheets; troubleshoot common problems
Perform Case studies to determine the optimum operating point for a process
Understand the pipeline hydraulics calculations used to assess the sizing requirements for a gas gathering system
Process Engineers with Process simulation experience.
New engineering graduates/technologists who will be using Aspen HYSYS in their daily work.
Process engineers doing process design and optimization projects and studies.
Plant engineers checking plant performance under different operating conditions.
R&D engineers and researchers using Aspen HYSYS for process synthesis.
Introduction to Oil & Gas industries, Chemical industries, Process simulations, EOS,
Thermodynamic property packages.
Getting started with Aspen HYSYS
Selecting the necessary components, select a property package to define a Fluid Package,
enter into the simulation environment, specify required parameters in order to execute flash
calculations and fully define material streams, modify and set desired units of measure,
review stream analysis options.
Aspen HYSYS Simulations *
Operating and flow sheeting of various unit operations in the HYSYS simulation environment. Such as Pumps, Compressors, Expander, Heat exchangers, Flash Separators, Reactors, Absorbers, Distillation Columns, etc. Modelling Adjust, Set, Balance operation within the
simulation environment.
Oil Characterization
Introduce the Aspen HYSYS Oil Manager and Assay Management features and how they are used for assay characterization. Performing Oil characterization for a crude unit.
NGL Fractionation
Introduce Aspen HYSYS column models and templates, Use the Input Expert to add and define a distillation column, Add and manipulate column specifications to meet process objectives.
Optimization
Introduction to Optimizer & Spreadsheet and how they are used for optimization. Use the optimizer tool in HYSYS to optimize flow sheets. Use the spreadsheet to perform calculations.
CSTR
Introduction to reactors. Simulation of CSTR and create reactions in HYSYS for the production of propylene glycol.
Propane Refrigeration Loop
Build and analyze a propane refrigeration loop. Understand how to simulate the vapor compression loop. Understand forward-backward information propagation in HYSYS. Using the spreadsheet to calculate the COP (Coefficient Of Performance) for the loop.
Refrigerated Gas Plant
Model a Simplified version of Refrigerated Gas Plant. Adding a hypothetical component in HYSYS. Understand logical operations (Balances and Adjusts). Use the Case Study tool to perform case studies on your simulation.
Gas Gathering System
Model a gas gathering system located on varied terrain is simulated using the steady-state capabilities of HYSYS. Use the Pipe Segment operation to model single and multi-phase fluid flow.
Turbo Expander Plant
Model, an LNG Exchanger to simulate multi-pass exchangers In Hysys. Add Columns using the Input Experts. Add extra specifications to columns
Safety Analysis Environment **
Introduce the HYSYS Safety Analysis Environment as a comprehensive, process-wide pressure relief modeling tool. Size and rate pressure safety valves (PSVs) for single or multiple relief scenarios. Demonstrate how to set up and report results from PSV calculations in the Safety Analysis Environment
Gas Dehydration Unit Or a Specific project
Model a typical gas dehydration unit and study gas saturation, hydrate formation conditions,
and unit operation performance throughout the model. Apply the Recycle operation as a
flowsheet-building tool appropriate for a variety of simulations.