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首页> 外文期刊>AIChE Journal >Optimal Design of Batch-Storage Network with Multitasking Semi-continuous Processes
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Optimal Design of Batch-Storage Network with Multitasking Semi-continuous Processes

机译:具有多任务半连续过程的批处理存储网络的优化设计

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摘要

The periodic square wave (PSW) model was successfully applied to the optimal design of a batch-storage network.The network structure can cover any type of batch production,distribution,and inventory system,including recycle streams.Here we extend the coverage of the PSW model to multitasking semi-continuous processes as well as pure continuous and batch processes.In previous solutions obtained using the PSW model,the feedstock composition and product yield were treated as known constants.This constraint is relaxed in the present work,which treats the feedstock composition and product yield as free variables to be optimized.This modification makes it possible to deal with the pooling problem commonly encountered in oil refinery processes.Despite the greater complexity that arises when the feedstock composition and product yield are free variables,the PSW model still gives analytic lot sizing equations.The ability of the proposed method to determine the optimal plant design is demonstrated through the example of a high density polyethylene (HDPE) plant.Based on the analytical optimality results,we propose a practical process optimality measure that can be used for any kind of process.This measure facilitates direct comparison of the performance of multiple processes,and hence is a useful tool for diagnosing the status of process systems.The result that the cost of a process is proportional to the square root of average flow rate is similar to the well-known six-tenths factor rule in plant design.
机译:周期性方波(PSW)模型已成功应用于批处理存储网络的优化设计中,该网络结构可以覆盖任何类型的批生产,分销和库存系统,包括回收流。 PSW模型适用于多任务半连续过程以及纯连续过程和分批过程。在以前使用PSW模型获得的解决方案中,将原料组成和产品收率视为已知常数。原料组成和产品收率作为自由变量进行优化。此修改使处理炼油厂过程中常见的合并问题成为可能。尽管当原料组成和产品收率是自由变量时会出现更大的复杂性,PSW模型仍然给出了解析的批量确定方程。该方法确定最佳工厂设计的能力具有示范性以高密度聚乙烯(HDPE)工厂为例。基于分析的最优性结果,我们提出了一种适用于任何类型过程的实用过程最优性度量。该度量便于直接比较多个过程的性能,过程成本与平均流量的平方根成正比的结果与工厂设计中众所周知的十分之六因子规则相似,因此,它是诊断过程系统状态的有用工具。

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