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A framework for simulation-based integrated design of multiscale products and design processes.

机译:一个基于仿真的多尺度产品和设计过程集成设计的框架。

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摘要

The complexity in multiscale systems design is significantly greater than in conventional systems because in addition to interactions between components, couplings between physical phenomena and scales are also important. This complexity amplifies two design challenges: (a) complexity of coupled simulation models prohibits design space exploration, and (b) unavailability of complete simulation models that capture all the interactions. Hence, the challenge in design of multiscale systems lies in managing this complexity and utilizing the available simulation models and information in an efficient manner to support effective decision-making.; In order to address this challenge, our primary hypothesis is that the information and computational resources can be utilized in an efficient manner by designing design-processes (metadesign) along with the products. The primary hypothesis is embodied in this dissertation as a framework for integrated design of products and design processes. The framework consists of three components---(1) a Robust Multiscale Design Exploration Method (RMS-DEM), (2) information-economics based metrics and methods for simplification of complex design processes and refinement of simulation models, and (3) an information modeling strategy for implementation of the theoretical framework into a computational environment.; The framework is validated using the validation-square approach that consists of theoretical and empirical validation. Empirical validation of the framework is carried out using various examples including: pressure vessel design, datacenter cooling system design, linear cellular alloy design, and multifunctional energetic structural materials design. The contributions from this dissertation are categorized in three research domains: (a) multiscale design methodology, (b) materials design, and (c) computer-based support for collaborative, simulation-based multiscale design. In the domain of design methodology, new methods and metrics are developed for integrating the design of products and design processes. The methods and metrics are applied in the field of materials design to develop design-processes and specifications for Multifunctional Energetic Structural Materials. In the domain of computer-based support for design, an information modeling strategy is developed to provide computational support for meta-design. Although the framework is developed in the context of multiscale systems it is equally applicable to design of any other complex system.
机译:多尺度系统设计的复杂度明显大于常规系统,因为除了组件之间的相互作用之外,物理现象与尺度之间的耦合也很重要。这种复杂性放大了两个设计挑战:(a)耦合的仿真模型的复杂性阻止了设计空间的探索,以及(b)无法获得捕获所有交互作用的完整仿真模型。因此,设计多尺度系统的挑战在于管理这种复杂性并以有效的方式利用可用的仿真模型和信息来支持有效的决策。为了应对这一挑战,我们的主要假设是,通过与产品一起设计设计过程(元设计),可以有效地利用信息和计算资源。本文主要假设是产品和设计过程集成设计的框架。该框架由三个部分组成-(1)稳健的多尺度设计探索方法(RMS-DEM),(2)基于信息经济学的度量标准和方法,用于简化复杂的设计过程和优化仿真模型,以及(3)一种用于将理论框架实施到计算环境中的信息建模策略;该框架使用包含理论和经验验证的验证平方方法进行验证。使用各种示例对框架进行经验验证,包括:压力容器设计,数据中心冷却系统设计,线性蜂窝合金设计和多功能高能结构材料设计。本文的研究成果归纳为三个研究领域:(a)多尺度设计方法,(b)材料设计,(c)基于计算机的协作,基于仿真的多尺度设计支持。在设计方法论领域,开发了用于集成产品设计和设计过程的新方法和度量。这些方法和指标被应用于材料设计领域,以开发多功能含能结构材料的设计过程和规格。在基于计算机的设计支持领域,开发了一种信息建模策略来为元设计提供计算支持。尽管该框架是在多尺度系统的背景下开发的,但它同样适用于任何其他复杂系统的设计。

著录项

  • 作者

    Panchal, Jitesh H.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 592 p.
  • 总页数 592
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

  • 入库时间 2022-08-17 11:42:41

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