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The simulation software for attaining excellent performance at your processing plant

NIAflow areas of application

  • Simulation of process-technical systems
  • Design of new mineral processing plants
  • Optimization of existing plants
  • Product calculations
  • Layout of blending processes
  • Tender/offer generation

NIAflow functions

  • Graphical display of processes
  • Mathematical simulation of process-technical systems
  • Wet and dry processes
  • Closed material flow circuits
  • Screening classification: mixed deck assignment
  • Parametric, dynamic info-fields
  • Limit value monitoring

Your advantages

  • More rapid analysis of existing/new processes
  • Simple recording of plant status
  • Efficient process optimization
  • Recognizing potential for optimization

Object groups

  • Storing
  • Conveying
  • Screening
  • Crushing
  • Washing
  • Packing
  • Controls
  • Various

NIAflow: The basis of engineering

The HAVER & BOECKER process simulation program is an important building block in executing process-technical projects. NIAflow supports the user in every engineering phase: From drawing up flow diagrams to product calculations, from generating tender documents for supplier inquiries and extending to the startup of a plant by simulating parameter changes.

 

Your access to NIAflow

At www.niaflow.com you can find out more about the NIAflow range. HAVER & BOECKER invites you to a free download of NIAflow Basic.

 

NIAflow: Process simulation software by HAVER & BOECKER

The logical linking of single machines and systems – as well as dry and wet processing technology – allows the user to lay out entire plants. Available up to 70 different process-technical units that can be connected in a flow diagram. NIAflow calculates the resulting mass and volumetric flows while taking into account the machine-specific operating parameters which HAVER & BOECKER has accumulated over its decades-long experience as a machine and plant supplier. Moreover special tools for project work were implemented in the development of NIAflow. Consequently the individual objects are systematically depicted in the project equipment list and an additional machine and systems specification is generated. Here up to 200 layout parameters per object can be displayed, whereby the depth of information can be prescribed beforehand by the user. With the help of these project tools, for example, inquiries to suppliers can be standardized or technical offers can be drawn up more efficiently

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