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A Set Covering Approach for Optimal ...
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Institute of Management Science.
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A Set Covering Approach for Optimal Ingot Size Selection
紀錄類型:
書目-投影資料、錄影資料、電影片 : Monograph/item
正題名/作者:
A Set Covering Approach for Optimal Ingot Size Selection/ Produced by The Institute of Management Sciences
出版者:
Providence, RI :The Institute of Management Sciences :
面頁冊數:
1 computer laser optical disc :sd., col. ;4 3/4 in.
附註:
At the head of title on container: TIMS/CPMS
叢書名:
Edelman award for management science achievement;
標題:
Management Science -
A Set Covering Approach for Optimal Ingot Size Selection
A Set Covering Approach for Optimal Ingot Size Selection
[videorecording] /Produced by The Institute of Management Sciences - Providence, RI :The Institute of Management Sciences - 1 computer laser optical disc :sd., col. ;4 3/4 in. - Edelman award for management science achievement;[v.41].
At the head of title on container: TIMS/CPMS
Presentors, Francis J. Vasko, Kenneth L. Stott, Floyd E. Wolf, James W. Scheirer
A new ingot mold stripping facility at its Bethlehem plant is capable of handling taller ingots. A two-phase computer based model selects optimal and internal ingot mold dimensions. Phase I of this model generates ingot and internal ingot mold dimensions consistent with the new stripperOs capability and with mill, foundry and steel making constraints. Phase II then uses a set covering approach to select optimal ingot and internal ingot mold sizes from among feasible sizes generated. Every plant department has been impacted, resulting in annual savings in excess of
VCD format.
US120.00Subjects--Topical Terms:
730897
Management Science
A Set Covering Approach for Optimal Ingot Size Selection
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A new ingot mold stripping facility at its Bethlehem plant is capable of handling taller ingots. A two-phase computer based model selects optimal and internal ingot mold dimensions. Phase I of this model generates ingot and internal ingot mold dimensions consistent with the new stripperOs capability and with mill, foundry and steel making constraints. Phase II then uses a set covering approach to select optimal ingot and internal ingot mold sizes from among feasible sizes generated. Every plant department has been impacted, resulting in annual savings in excess of
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