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Simulation of pecan processing for evaluation of process alternatives

机译:山核桃加工模拟,用于评估工艺方案

摘要

A number of alternatives were considered to keep pecan processing economically competitive and sustainable. The industry needed a low risk evaluation technique for testing new high capital plant configurations. A simulation model was developed using the AweSimTM simulation system to form the model structure and framework. The Visual SLAMTM and Visual BASIC programming languages were used to build a network model that provided a mathematical-logical representation of the system. The model mathematically expresses all sub-processes including moisture conditioning, pasteurizing, cracking, shelling, sizing, manual and electronic sorting, resizing, resorting, and packaging. The pecan process simulation model consists of 24 RESOURCES, 353 ACTIVITIES, 48 AWAIT/QUEUE and FREE nodes, 83 BATCH and UNBATCH nodes, 79 ASSIGN nodes, 20 COLCT nodes, 39 GOON nodes, 10 other miscellaneous nodes and a graphic user interface (GUI). The model provides information on equipment utilization, delays, queues and bottlenecks for each process in the system. It also predicts total pecan cracked and total pecan packed, including details of production for each size class i.e. halves; large; medium; small; midget; fine; granule; and oil stock. The model was validated quantitatively by comparing output with actual production figures and qualitatively by plant management. Five options of process alternatives were simulated using the pecan simulation model. The first alternative (including 3 options) was a management proposed configuration for dual electronic sorting of pecan halves to reduce the shell pieces and ensure a lighter color product. Two options were found not viable as they required major capital investments and plant reconfiguration. The third option for dual sorting was found to be a viable process alternative with minor labor additions.
机译:人们考虑了许多替代方案,以使山核桃加工在经济上具有竞争力和可持续性。该行业需要一种低风险评估技术来测试新的高资本工厂配置。使用AweSimTM仿真系统开发了仿真模型,以形成模型结构和框架。 Visual SLAMTM和Visual BASIC编程语言用于构建网络模型,该模型提供系统的数学逻辑表示。该模型在数学上表示了所有子过程,包括湿度调节,巴氏灭菌,开裂,脱壳,上浆,手动和电子分类,调整大小,还原和包装。 pecan过程仿真模型包括24个资源,353个活动,48个等待/队列和免费节点,83个BATCH和UNBATCH节点,79个ASSIGN节点,20个COLCT节点,39个GOON节点,10个其他杂项节点和图形用户界面(GUI) )。该模型提供有关系统中每个过程的设备利用率,延迟,队列和瓶颈的信息。它还可以预测山核桃碎的总数量和山核桃的总包装量,包括每种大小等级(即一半)的生产细节;大;介质;小;侏儒;精细;颗粒;和石油库存。通过将输出与实际生产数据进行比较,并由工厂管理层定性地对该模型进行了定量验证。使用山核桃模拟模型模拟了五个工艺选择方案。第一种选择(包括3个选项)是管理建议的配置,可对山核桃两半进行双电子分选,以减少壳件并确保产品色泽更浅。发现有两个选择不可行,因为它们需要大量的资本投资和工厂重组。发现双重分类的第三种选择是可行的过程替代方法,只需增加少量的人工即可。

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