首页> 外文会议>Architectural engineering conference: Birth and Life of the Integrated Building >Advancing Student Engagement of Buildings through Virtual Facility Dissection
【24h】

Advancing Student Engagement of Buildings through Virtual Facility Dissection

机译:通过虚拟设施解剖促进学生参与建筑物

获取原文
获取原文并翻译 | 示例

摘要

Critical to the education of engineers is the conceptual understanding of how discipline specific requirements integrate into the design of an engineered building. This conceptualization of systems and interdisciplinary interactions can be particularly challenging with buildings and infrastructure environments due to then-size, complexity, and unique instances of systems. To enhance student engagement and comprehension of conceptual knowledge, a pilot study is currently underway looking at deploying Virtual Facility Dissection. The pilot study is currently implemented into an introductory (sophomore) building systems and materials course within the Architectural Engineering Department for a single topic, structural systems. Students enrolled here have not selected a discipline specific focus and are just starting to be exposed to building projects. The focus of this course is to introduce the students to different building materials and their function in typical systems in the built environment. In the delivery of the pilot, first the traditional method is taught, then three weeks later the same topic is re-visited but leveraging virtual dissection and interaction components. The results presented here are a summary of findings through two offerings of the pilot utilizing a steel superstructure case study of an ongoing construction project. Pre and post-test assessment were conducted. Here a comparison between the traditional method and the virtual facility dissection method can be examined. Student interest and efficacy in structural systems and construction of the structure were evaluated. Their efficacy increased regarding their ability to identify factors influencing structural design, to describe the schematic design process, and recognition of systems. Student interest in how systems were selected was also increased. Similarly, there was positive feedback about the scenario and strong interest from the students. The developed scenario had positive results in career interests, scenario engagement and their understanding of the design process.
机译:对工程师的教育至关重要的是对特定学科要求如何融入工程建筑设计的概念性理解。由于当时的规模,复杂性和独特的系统实例,这种对系统和跨学科交互的概念化对建筑物和基础设施环境尤其具有挑战性。为了增强学生的参与度和对概念知识的理解,目前正在进行一项试点研究,旨在部署虚拟设施解剖。目前,该试点研究已在建筑工程系内的一个入门级(大二)建筑系统和材料课程中实施,用于一个主题即结构系统。此处注册的学生尚未选择特定学科的重点,而只是开始接触建筑项目。本课程的重点是向学生介绍建筑环境中典型建筑中的不同建筑材料及其功能。在试点工作中,首先会教授传统方法,然后在三周后重新讨论同一主题,但要利用虚​​拟解剖和交互组件。此处给出的结果是对飞行员进行的两次试验得出的结论的总结,该试验利用了正在进行的建设项目的钢制上部结构案例研究。进行测试前和测试后评估。在这里,可以检查传统方法与虚拟设施解剖方法之间的比较。评估了学生对结构系统和结构构造的兴趣和功效。关于确定影响结构设计的因素,描述原理图设计过程和识别系统的能力,它们的功效有所提高。学生对如何选择系统的兴趣也增加了。同样,也对该方案有积极的反馈,学生对此也产生了浓厚的兴趣。所开发的方案在职业兴趣,方案参与以及他们对设计过程的理解方面都取得了积极成果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号