DESIGN OF MULTIPURPOSE BATCH PLANTS WITH MULTIPLE PRODUCTION PLANS BASED ON CYCLIC PRODUCTION

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著者

    • FUCHINO Tetsuo
    • Department of Industrial Engineering and Managiment, Tokyo Institute of Technology Department of Industrial Engineering and Management, Tokyo Institute of Technology
    • MURAKI Masaaki
    • Department of Industrial Engineering and Managiment, Tokyo Institute of Technology Department of Industrial Engineering and Management, Tokyo Institute of Technology
    • HAYAKAWA Toyohiko
    • Department of Industrial Engineering, Chiba Institute of Technology Department of Industrial Engineering, Chiba Institute of Technology

抄録

The design challange in multipurpose batch plants is optimizing plant configuration and equipment size under the constraints of multiple production plans, and these decision variables are interactive with each other through scheduling. To optimize these decision variables, the evolutionary design method on the basis of scheduling according to cyclic production (cyclic scheduling) is appropriate, and batch composition of a cycle (number of batches and their relative batch sizes per one-cycle) for respective production plans should be specified beforehand. In this study, a method to specify the batch composition that enables optimal design is developed. From the viewpoint of optimizing plant configuration, the common batch sizes for a multiple number of production plans (core batch sizes) are introduced for each product, and specifying the batch composition on the basis of these core batch sizes is converted into assignment problems, from the viewpoint of optimizing equipment sizes. These assignment problems are formulated into IP (Integer Programming) models, and the optimal design satisfying multiple production plans becomes possible. The effectiveness of this method is demonstrated through an example problem.

収録刊行物

  • Journal of chemical engineering of Japan  

    Journal of chemical engineering of Japan 28(5), 541-550, 1995-10 

    The Society of Chemical Engineers, Japan

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各種コード

  • NII論文ID(NAID)
    10002134380
  • NII書誌ID(NCID)
    AA00709658
  • 本文言語コード
    ENG
  • 資料種別
    ART
  • ISSN
    00219592
  • データ提供元
    CJP書誌  CJP引用  J-STAGE 
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