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PAPER PHYSICS. Bi-level optimization in papermaking process design

  • Mikko Linnala EMAIL logo und Jari Hämäläinen
Veröffentlicht/Copyright: 8. November 2018
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Abstract

Model-based optimization is a sophisticated design tool for papermaking processes. In this paper, the method is extended from the unit process design and single-level optimization to the simultaneaus design of the process structure and operations. This is enabled by using a bi-level optimization formulation which allows to avoid unnecessary iterations between the process and automation designs. The bi-level optimization approach is studied here from the perspective of multiobj ective optimization and decision making. The method is illustrated by a case study in which the broke and water system structures and the papermaking process operations are optimized simultaneously.

Received: 2011-12-01
Accepted: 2012-04-03
Published Online: 2018-11-08
Published in Print: 2012-11-01

© 2018 by Walter de Gruyter Berlin/Boston

Artikel in diesem Heft

  1. Contents
  2. BIOREFINERY. Pressurised hot water extraction of acetylated xylan from birch sawdust
  3. BIOREFINERY. Nanocellulose characterization with mechanical fractionation
  4. MECHANICAL PULPING.Analysis method of high-consistency chip refiner forces
  5. MECHANICAL PULPING.Effect of long fibre concentration on low consistency refining of mechanical pulp
  6. CHEMICAL PULPING. Oxidative degradation of AOX in softwood-based kraft mill effluents from E C F bleachin g
  7. COATING. lnfluence of the distribution of the shape and size distribution of pigment particles on cracking in coating layers during creasin
  8. PRINTING.Natural zeolite as filler in base ink jet paper sheet
  9. PRINTING.Paper and printer effects on xerographic print quality
  10. PRINTING. The ageing resistance of offset and electrophotographic prints
  11. PAPER INK INTERACTIONS. The effect of coating pore structure and geometry on the drying efficiency of heatset web-offset ink solvent
  12. PAPER INK INTERACTIONS. Impact of oil-binder interaction on pore structure in paper coating as studied by internal reflectance Part 1 : implications of pore volume loss for print drying
  13. PAPER INK INTERACTIONS .Impact of oil-binder interaction on pore structure in paper coatings as studied by internal reflectance. Part 2: Relation to structural expansion
  14. PAPER PHYSICS. Bi-level optimization in papermaking process design
  15. PAPER PHYSICS. PIV measurements of flow through forming fabrics
  16. PAPER PHYSICS .The effect of newsprint furnish composition and sheet structure on wet pressing efficiency
  17. PAPER PHYSICS. The web structure in relation to the furnish composition and shoe press pulse profiles during wet pressing
  18. PAPER PHYSICS. Analytical Prediction of Package Collapse Loads-Basic considerations
  19. PAPER PHYSICS. Paper-based device for pre-concentration of target analytes
Heruntergeladen am 20.9.2025 von https://www.degruyterbrill.com/document/doi/10.3183/npprj-2012-27-04-p774-782/html
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