ASPEN HYSYS Bradford Training

 Starting with HYSYS
 Creating A New Simulation
 Simulation Basis Manager
 Adding Components to the Simulation
 Selecting A Fluids Package
 Enter Simulation Environment
 Pump operation in HYSYS to model the pumping process
 Connect streams to unit operations
 Determine the pump efficiency and outlet temperature
 Compressor operation in HYSYS to model the compressing process
 Define a new component using hypothetical
 Determine the compressor efficiency and outlet temperature
 Expander operation in HYSYS to model the expansion process
 Determine the expansion efficiency and outlet temperature
 Heat exchanger operation in HYSYS to model the heat transfer process
 Flash separator operation in HYSYS to model the flash separation process
 Partial oxidation reaction of methane to produce hydrogen
 Develop a model that represents the water gas shift reaction
 Simulate equilibrium reactor and reactions in HYSYS
 Production of propylene glycol
 Simulate continuously-stirred-tank reactor and reactions in HYSYS
 Absorber operation in HYSYS to model the absorption process
 Recovery of (NGL) from natural gas

This course is no longer available.

ASPEN HYSYS Bradford Training
Price: USD 226
  • Duration: 20 Hours
  • Timings: Part Time, Flexible

    Course details

     Starting with HYSYS
     Creating A New Simulation
     Simulation Basis Manager
     Adding Components to the Simulation
     Selecting A Fluids Package
     Enter Simulation Environment
     Pump operation in HYSYS to model the pumping process
     Connect streams to unit operations
     Determine the pump efficiency and outlet temperature
     Compressor operation in HYSYS to model the compressing process
     Define a new component using hypothetical
     Determine the compressor efficiency and outlet temperature
     Expander operation in HYSYS to model the expansion process
     Determine the expansion efficiency and outlet temperature
     Heat exchanger operation in HYSYS to model the heat transfer process
     Flash separator operation in HYSYS to model the flash separation process
     Partial oxidation reaction of methane to produce hydrogen
     Develop a model that represents the water gas shift reaction
     Simulate equilibrium reactor and reactions in HYSYS
     Production of propylene glycol
     Simulate continuously-stirred-tank reactor and reactions in HYSYS
     Absorber operation in HYSYS to model the absorption process
     Recovery of (NGL) from natural gas Updated on 18 February, 2020

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