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A novel approach to process debottlenecking and intensification: Integrated techniques for targeting and design

机译:处理瓶颈和强化的新方法:目标和设计的集成技术

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摘要

Continuous process improvement is a critical element in maintaining competitiveness of the process industries. An important category of process improvement is process debottlenecking which is associated with plants that have sold-out products while making a profit. In such cases, market conditions and the prospects for enhancing revenues and profits drive the process to increase production.;To overcome the limitation of conventional sequential unit-by-unit debottlenecking approach, this work introduces a new approach. This new approach is simultaneous in nature and is based on posing the debottlenecking task as a process integration task which links all the design and operating degrees of freedom and exploits synergies among the units and streams to attain maximum debottlenecking. Additionally, this new approach considers heat integration of the process while simultaneously performing the debottlenecking. Because of the general nonconvexity of the process model, a rigorous interval-based bounding technique is used to determine the target for maximum extent of debottlenecking aside from the problem nonconvexity. Inclusion isotonicity using interval arithmetic is used to determine a global bound for the maximum extent of process debottlenecking. Focus is given to no/low cost debottlenecking such as modest changes in design and operating degrees of freedom. Two case studies are solved to illustrate the applicability of the new approach and its superior results compared to the conventional sequential approach.;Intensification, to debottleneck a process and to improve process safety is also addressed in this work. A new definition and classification of intensification is introduced. This classification distinguishes between two types of intensification: single unit and whole process. Process integration and optimization techniques are used to develop a systematic procedure for process intensification. Focus is given to the interaction among the process units while enhancing the intensification of the process. A case study is solved to illustrate the usefulness of the developed approach.
机译:持续的过程改进是保持过程工业竞争力的关键因素。过程改进的一个重要类别是过程去瓶颈,这与在销售产品的同时获利的工厂有关。在这种情况下,市场条件和增加收入和利润的前景驱动了增加产量的过程。为了克服传统的逐个顺序逐个瓶颈消除方法的局限性,这项工作引入了一种新方法。这种新方法本质上是同时进行的,其基础是将去瓶颈问题视为一个过程集成任务,该过程将所有设计和操作自由度联系在一起,并利用各个单元和流之间的协同作用来最大程度地消除瓶颈。此外,这种新方法考虑了过程的热集成,同时执行了去瓶颈处理。由于过程模型通常具有非凸性,因此除了问题非凸性之外,还使用了基于间隔的严格限定技术来确定最大的瓶颈瓶颈目标。使用间隔算法的包含等渗性用于确定过程去瓶颈的最大程度的全局界限。重点放在无/低成本的瓶颈上,例如设计和操作自由度的适度变化。解决了两个案例研究,以说明该新方法的适用性以及与常规顺序方法相比的优越结果。这项工作还涉及了强化,消除工艺瓶颈和提高工艺安全性的问题。介绍了强化的新定义和分类。此分类区分两种类型的强化:单个单元和整个过程。使用流程集成和优化技术来开发用于流程强化的系统程序。重点放在过程单元之间的交互上,同时增强过程的强度。解决了一个案例研究,以说明所开发方法的有用性。

著录项

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Chemical engineering.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 129 p.
  • 总页数 129
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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