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首页> 外文期刊>Journal of professional issues in engineering education and practice >Improving Student Understanding of Complex Spatial Arrangements with Virtual Reality
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Improving Student Understanding of Complex Spatial Arrangements with Virtual Reality

机译:利用虚拟现实增进学生对复杂空间布置的理解

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摘要

This study investigates the use of virtual reality tools to aid student comprehension of complex spatial arrangements in structural engineering. The research focuses specifically on structural buckling response because of the breadth of buckling modes that can occur and the traditional difficulty of conveying information about the spatial nature of buckling behavior to students. This mixed-methods study analyzes pretest and posttests covering topics that require spatial visualization skills as well as surveys and interviews of the students using the virtual reality tools. Quantitative results indicate that students are able to identify and visualize buckling modes more accurately after the virtual reality experience. Qualitatively, students express an improved understanding, increased enthusiasm for the topic, and greater desire for other topics to be presented using virtual reality tools. Both instructors and students note the advantages of using virtual reality to explain and understand the complex deformation modes of buckling structural members. Students feel they have a stronger understanding of concepts after the experience and, on average, show a statistically significant improvement on the posttest evaluating their understanding. (C) 2017 American Society of Civil Engineers.
机译:这项研究调查了虚拟现实工具的使用,以帮助学生理解结构工程中的复杂空间布置。由于可能发生的屈曲模式的广度以及向学生传递有关屈曲行为的空间性质的信息的传统困难,因此本研究专门针对结构屈曲响应。这项混合方法的研究分析了前测和后测,涵盖了需要空间可视化技能的主题,以及使用虚拟现实工具对学生进行的调查和访谈。定量结果表明,在虚拟现实体验之后,学生能够更准确地识别和可视化屈曲模式。在质量上,学生表现出更好的理解力,对该主题的热情以及对使用虚拟现实工具呈现其他主题的更高渴望。老师和学生都注意到使用虚拟现实来解释和理解屈曲结构构件的复杂变形模式的优势。在经历之后,学生们会觉得他们对概念有了更深刻的理解,并且平均而言,在评估他们的理解力的后测中显示出统计学上的显着提高。 (C)2017年美国土木工程师学会。

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