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Using construction knowledge during preliminary design of reinforced concrete structures

机译:在钢筋混凝土结构的初步设计中使用施工知识

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摘要

Due to the fragmentation in the construction industry, structural engineers rarely use explicit constructibility knowledge when making decisions about the layout and dimensioning of structural elements. An on-line construction expert offers the opportunity to allow use of efficient construction methods on a project by interfacing with a CAD representation of the design and by providing decision support in the form of construction knowledge.;I developed such an expert system called COKE (COnstruction Knowledge Expert) by acquiring constructibility knowledge from field experts, formalizing and organizing this knowledge base in a way suitable for input to the design process, specifying a symbolic model of a reinforced concrete structure that supports constructibility reasoning, and implementing a software prototype that links a CAD system to an expert system.;When providing constructibility feedback, COKE first uses high level application heuristics to determine whether a construction method is applicable or not. It then compares the project data in the symbolic model with specific constraints about the layout and dimensioning of structural elements, and alerts the designer about mismatches between these constraints and the structure.;This research shows that software technology can be used to integrate downstream project constraints into the work environment of design engineers. Object-oriented programming offers a computing paradigm to support this cross-functional integration. Once implemented, such integrated intelligent tools offer the opportunity to solve problems in early project stages at a fraction of the cost of making changes in the construction or operation phases of a facility.
机译:由于建筑行业的分散性,结构工程师在决定结构元素的布局和尺寸时很少使用显式的可构造性知识。在线施工专家通过与设计的CAD表示接口并以施工知识的形式提供决策支持,提供了机会在项目上使用有效的施工方法。我开发了这样的专家系统,称为COKE(通过从现场专家那里获取可施工性知识,以适合于输入设计流程的方式来正式化和组织该知识库,指定支持可施工性推理的钢筋混凝土结构的符号模型以及实现链接从CAD系统到专家系统。当提供可施工性反馈时,COKE首先使用高层应用启发法来确定一种施工方法是否适用。然后将符号模型中的项目数据与关于结构元素的布局和尺寸的特定约束条件进行比较,并向设计人员警告这些约束条件与结构之间的不匹配情况。;研究表明,可以使用软件技术来集成下游项目约束条件进入设计工程师的工作环境。面向对象的编程提供了一种计算范例来支持这种跨功能的集成。一旦实施,这种集成的智能工具将为解决项目早期阶段的问题提供机会,而成本只是在设施的建设或运营阶段进行更改的一小部分。

著录项

  • 作者

    Fischer, Martin Arthur.;

  • 作者单位

    Stanford University.;

  • 授予单位 Stanford University.;
  • 学科 Civil engineering.;Artificial intelligence.
  • 学位 Ph.D.
  • 年度 1991
  • 页码 173 p.
  • 总页数 173
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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