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Rebar Fabrication Plan to Enhance Production Efficiency for Simultaneous Multiple Projects

Title
Rebar Fabrication Plan to Enhance Production Efficiency for Simultaneous Multiple Projects
Authors
Hong, EunbinYi, June-SeongSon, JeongWookHong, MinYoungJang, YeEun
Ewha Authors
이준성손정욱
SCOPUS Author ID
이준성scopus; 손정욱scopus
Issue Date
2022
Journal Title
APPLIED SCIENCES-BASEL
ISSN
2076-3417JCR Link
Citation
APPLIED SCIENCES-BASEL vol. 12, no. 18
Keywords
rebar fabricationdiscrete-event simulationsimultaneous deliveryrebar lossproduction process optimization
Publisher
MDPI
Indexed
SCIE; SCOPUS WOS scopus
Document Type
Article
Abstract
A discrete-event simulation (DES) model was developed to enhance the reinforcing bar (rebar) fabrication efficiency for multiple simultaneous projects at different sites. The production volume and procedure of the actual rebar fabrication plant were compared to the simulation model to ensure its accuracy. By determining the loss rate and necessary processing time, the fabrication plan was then optimized. The rebar type and machine features, which influence the loss rate and time required for rebar fabrication, were configured as the parameters in a discrete-event simulation model. The model considers a situation in which a rebar fabrication plant simultaneously delivers rebars to multiple sites. In this manner, the model can quantify the loss rate and time required in the fabrication process. The determination of the loss rate according to the import ratio of raw steel, site combination, and length can help optimize the rebar fabrication plan and increase work efficiency. In the considered scenario, a two-site combination and import ratio of raw steel of 2:1 (8 m:10 m) was noted to corresponded to the maximum decrease in the loss rate and required time. By extending the proposed approach to the complete rebar process (processing-transportation-construction), the plant member production process can be optimized.
DOI
10.3390/app12189183
Appears in Collections:
공과대학 > 건축도시시스템공학과 > Journal papers
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