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is working well. Then rb and T0, and W0 was predicted for each case for both plants C and D as described in section 3.3.4. The obtained WIP0 was used as the basis for the inventory of the models case A and case B. However, the WIP0 is a total inventory, which means that it does not specify what amount corresponds to each process. A total WIP for each VSM (base model) was calculated by summing up the WIPs of each process. A proportion was computed by dividing the WIP at each process by the total amount of WIP. The obtained proportions for each station were applied to the WIP0 to calculate the corresponding amount of WIP at each process. The obtained values were then project for the 13 weeks that the simulation was going to be run. Table 34. Critical WIP (WIP0) for each station for case A (vacuum with air drying) for plant c determined by Little’s Law Process Air Drying Drying Kiln Surface Planner Rip Saw Moulder Pre-finishing WIP (MBF) WIP0 140.22 53.25” 10.65 34.91 24.74 18.19 13 week 9114.59 3461.13 692.03 2269 1607.83 1182.49 Table 35. Critical WIP (WIP0) for each station for case B (vacuum with no air drying) for plant C determined by Little’s Law. Process Vacuum Kiln Surface Planner Rip Saw WIP (MBF) WIP0 13 week 112.75 7328.50 22.54 1465.29 73.91 4804.32 113PDF Image | Impact of Vacuum-Drying on Efficiency of Hardwood Products
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