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Estimation of a mass transfer coefficient for nylon manufacture using multiple neural networks : Sarah S.Y. Lam, Alice E. Smith, Badie I. Morsi, v20, n5, 2001, pp349–356


Publisher
Society of Manufacturing Engineers
Year
2002
Tongue
English
Weight
300 KB
Volume
21
Category
Article
ISSN
0278-6125

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✦ Synopsis


and kevword index performance. Determining the location of the transfer points between zones is another important issue in the design of a tandem layout. In this paper, a heuristic partitioning algorithm for a tandem AGV system based on the concept of variable path routing within a zone is developed. Transfer points are simultaneously determined during the network partitioning process. The algorithm assumes the prior existence of a conventional and unidirectional layout. The problem of interest is one of converting the existing, conventional layout to a variable path based tandem AGV system layout. A comparison between the conventional and the tandem AGV system with respect to system performance under the same operating conditions is presented. The results show that the variable path based tandem layout requires a smaller number of vehicles in most situations than the equivalent conventional layout. In addition, the total vehicle use time of a tandem layout is smaller than that of the conventional layout.


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Estimation of a mass transfer coefficien
✍ Sarah S.Y. Lam; Alice E. Smith; Badie I. Morsi 📂 Article 📅 2001 🏛 Society of Manufacturing Engineers 🌐 English ⚖ 939 KB

The manufacture of nylon involves the use of cyclohexane, whose successful production is strongly dependent on the kinetics and gas-liquid mass transfer of its oxidation. To properly design the cyclohexane oxidation process, both equipment and process variables must be considered; however, previous