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Orthogonal decomposition as a design tool: With application to a mixing impeller.

机译:正交分解作为设计工具:应用于混合叶轮。

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摘要

Digital manufacturing eliminates the expense and time required to develop custom products. By utilizing this technology, designers can quickly create a customized product specifically for their performance needs. But the timescale and expense from the engineering design workflows used to develop these customized products have not been adapted from the workflows used in mass production. In many cases these customized designs build upon already successful mass-produced products that were developed using conventional engineering design workflows. Many times as part of this conventional design process significant time is spent creating and validating high fidelity models that accurately predict the performance of the final design. These existing validated high fidelity models used for the mass-produced design can be reused for analysis and design of unknown products. This thesis explores the integration of reduced order modeling and detailed analysis into the engineering design workflow developing a customized design using digital manufacturing. Specifically, detailed analysis is coupled with proper orthogonal decomposition to enable the exploration of the design space while simultaneously shaping the model representing the design. This revised workflow is examined using the design of a laboratory scale overhead mixer impeller. The case study presented here is compared with the design of the Kar Dynamic Mixer impeller developed by The Dow Chemical Company. The result of which is a customized design for a refined set of operating conditions with improved performance.
机译:数字制造消除了开发定制产品所需的费用和时间。通过利用该技术,设计人员可以快速创建专门针对其性能需求的定制产品。但是,用于开发这些定制产品的工程设计工作流的时间规模和费用尚未从大规模生产中使用的工作流中进行调整。在许多情况下,这些定制设计都建立在已经成功使用常规工程设计工作流程开发的批量生产产品的基础上。作为此常规设计过程的一部分,很多时间都花在创建和验证可准确预测最终设计性能的高保真度模型上。用于批量生产设计的这些现有的经过验证的高保真模型可以重新用于未知产品的分析和设计。本文探索将降阶建模和详细分析集成到工程设计工作流程中,从而使用数字制造开发定制设计。具体而言,详细分析与适当的正交分解相结合,可以探索设计空间,同时塑造代表设计的模型。使用实验室规模的顶置式搅拌机叶轮的设计来检查修订后的工作流程。将此处介绍的案例研究与陶氏化学公司开发的Kar Dynamic Mixer叶轮的设计进行了比较。结果是针对改进的操作条件集进行了定制化设计,从而提高了性能。

著录项

  • 作者

    Sloan, Benjamin Michael.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Mechanical engineering.
  • 学位 M.S.
  • 年度 2013
  • 页码 73 p.
  • 总页数 73
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:41:19

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