增强现实技术在砌体与混凝土嵌入协调中的应用

D. Olsen, Jeffrey Kim, J. M. Taylor
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引用次数: 2

摘要

混凝土和砖石结构的缺失或错位的嵌入、套筒和渗透历来会导致商业建筑的中断和错误,从而导致延误、返工和成本超支。为了通过传统工艺定位嵌入、套筒和穿透,需要制作一套特殊的协调图,称为“提升图”。“提升图”本质上是关键墙壁和基础元素的立面视图,显示了嵌入或穿透的确切位置和路线。制作这些“电梯图纸”是一个耗时且繁琐的过程,通常由施工管理专业人员承担,以确保这些元素正确地位于建筑物内。在BIM时代,应该使用BIM和增强现实来协调和简化为嵌入,套筒和穿透制作“升降机图纸”的过程,以减少工作工作量并提供更高的效率。本文旨在探索BIM与增强现实和传统测量硬件相结合,如何改善嵌入、套筒和穿透协调的过程。©2019作者。由布达佩斯科技经济大学和钻石大会有限公司出版。由2019创意建设大会科学委员会负责同行评审。
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Using Augmented Reality for Masonry and Concrete Embed Coordination
Missing or misaligned embeds, sleeves and penetrations for concrete and masonry construction have historically caused disruptions and errors in commercial construction resulting in delays, rework and cost overruns. In order to locate embeds, sleeves and penetrations through the traditional process requires a special set of coordination drawings to be produced called “lift drawings.” The “lift drawings” are essentially elevation views of critical wall and foundations elements which show the exact location and alignment for the embeds or penetrations. Producing these “lift drawings” is a time consuming and tedious process that is typically undertaken by the construction management professionals in order to assure that these elements are located properly within the building. In the age of BIM this process of producing “lift drawings” for embeds, sleeves and penetrations should be coordinated and streamlined using BIM and augmented reality to reduce the work effort and provide greater efficiencies. This paper seeks to discover ways in which BIM combined with augmented reality and traditional surveying hardware can improve the process of embed, sleeve and penetration coordination. © 2019 The Authors. Published by Budapest University of Technology and Economics & Diamond Congress Ltd. Peer-review under responsibility of the scientific committee of the Creative Construction Conference 2019.
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