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Applying cognitive principles to the delivery of engineering information by different mediums.

机译:将认知原理应用于通过不同媒介传递工程信息的过程。

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摘要

Construction project performance and worker productivity are often tied to the availability and effective presentation of information, tools, materials, and equipment. While advancements in technology have improved much of the processes on a construction project, the medium of information dissemination at the construction work face has consistently relied on the use of two dimensional drawings and specifications.;Industry initiatives are driving increased collaboration through three dimensional BIM (Building Information Modeling) models. However, the added dimension partially loses its effect when presented on a two dimensional computer monitor. Other computer forms of presentation intended for mobility (PDAs, laptops, and tablets) can be difficult to use in the field due to glare, durability in a harsh working environment, and the required skill level for effective use. Three dimensional (3D) physical printers now provide the capability to develop scaled and color models of a project directly from a BIM model. 3D physical printers represent a potential transformative change of providing engineering information to construction crews, but how to develop 3D models that leverage the cognitive benefits of viewing engineering information in a physical 3D form is unknown.;The primary contribution to the overall body of knowledge of this dissertation is to scientifically examine the effect that different engineering information mediums have on an individual's cognitive ability to effectively and accurately interpret spatial information. First, the author developed a robust scientific experiment for construction practitioners and students to complete. This experiment included outcomes measures on mental workload, cognitive demand, productivity, efficiency, demographics, and preferences. After collecting data, the author analyzed the outcomes through a series of statistical analyses to measure the differences between groups and quantify the affect and relationship among key variables.;From the results, there are statistically significant improvements in productivity and efficiency of practitioners and students when using a physical model compared to two dimensional drawings and a three dimensional computer model. In addition, the average cognitive demand for a physical model was lower than the average cognitive demand for two dimensional drawings and three dimensional computer model.;KEYWORDS: Information Delivery, Cognitive Task Demands, Construction Labor Strategies, Additive Manufacturing, Building Information Modeling (BIM) Applications in Construction.
机译:建设项目的绩效和工人的生产率通常与信息,工具,材料和设备的可用性和有效表示有关。尽管技术的进步改善了建筑项目的大部分流程,但建筑工作面上的信息传播媒介始终依赖于使用二维图纸和规范。;行业倡议通过三维BIM推动了更多的协作(建筑信息模型)模型。但是,添加的尺寸在二维计算机监视器上显示时会部分失去其效果。由于眩光,恶劣工作环境中的耐用性以及有效使用所需的技能水平,其他用于移动性的计算机演示文稿(PDA,笔记本电脑和平板电脑)可能难以在野外使用。现在,三维(3D)物理打印机可以直接从BIM模型中开发项目的比例模型和颜色模型。 3D物理打印机代表了向施工人员提供工程信息的潜在变革,但是如何开发可利用以物理3D形式查看工程信息的认知优势的3D模型仍然未知。本文旨在科学地研究不同工程信息介质对个人有效,准确地解释空间信息的认知能力的影响。首先,作者开发了一个健壮的科学实验,供建筑从业人员和学生完成。该实验包括心理工作量,认知需求,生产力,效率,人口统计学和偏好方面的结果指标。收集数据后,作者通过一系列统计分析来分析结果,以测量组之间的差异并量化关键变量之间的影响和关系。从结果来看,当从业人员和学生的生产率和效率有统计学显着提高与二维图纸和三维计算机模型相比,使用物理模型。此外,物理模型的平均认知需求低于二维图形和三维计算机模型的平均认知需求。关键词:信息传递,认知任务需求,建筑劳动策略,增材制造,建筑信息模型(BIM) )在建筑中的应用。

著录项

  • 作者

    Dadi, Gabriel Biratu.;

  • 作者单位

    University of Kentucky.;

  • 授予单位 University of Kentucky.;
  • 学科 Civil engineering.;Cognitive psychology.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 416 p.
  • 总页数 416
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:42:17

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