Virtual reality (VR) supported lift planning for modular integrated construction (MiC) of high-rise buildings

Q2 Engineering
Zhiqian Zhang, W. Pan
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引用次数: 9

Abstract

Modular integrated construction of high-rise buildings has shown its potential in accelerating the speed of construction, improving safety, safeguarding quality and enhancing productivity. However, due to the disruptive change to the construction process, challenges are identified to effectively plan and handle multiple lifts for hoisting heavy modules. Research on lift planning includes the development of simulation tools. However, the previous tools provided either static simulations or pre-designed animations that did not address the interactions between planners and the tools. Virtual reality (VR) offers an opportunity to build an interactive and navigable 3D environment. This paper aims to develop a userfriendly VR-supported tool for achieving effective lift planning for constructing high-rise modular buildings. First, the module lifting process and tower crane operations were analysed. Second, a VR demonstration was developed using a real-life modular building project. Third, the demonstration was used during interviews with the project team to verify the effectiveness of the developed tool. Results suggest that the tool can help optimise the site layout and lift logistics through the provided functions of collision detection and construction simulation. The findings suggest that VR-supported lift planning will contribute to ensure site safety and enhance the productivity of modular high-rise building construction.
虚拟现实(VR)技术支持高层建筑模块化集成施工的电梯规划
高层建筑的模块化集成施工在加快施工速度、提高安全性、保障质量和提高生产力方面显示出了潜力。然而,由于施工过程的颠覆性变化,有效规划和处理用于吊装重型模块的多台升降机面临挑战。电梯规划的研究包括模拟工具的开发。然而,以前的工具提供了静态模拟或预先设计的动画,但没有解决规划者和工具之间的互动问题。虚拟现实(VR)提供了一个建立交互式和可导航的3D环境的机会。本文旨在开发一种用户友好的VR支持工具,用于实现高层模块化建筑的有效电梯规划。首先,对模块吊装过程和塔式起重机的操作进行了分析。其次,使用真实的模块化建筑项目开发了VR演示。第三,在与项目团队的访谈中使用了该演示,以验证所开发工具的有效性。结果表明,该工具可以通过提供的碰撞检测和施工模拟功能,帮助优化现场布局和电梯物流。研究结果表明,VR支持的电梯规划将有助于确保现场安全,并提高模块化高层建筑施工的生产力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Transactions Hong Kong Institution of Engineers
Transactions Hong Kong Institution of Engineers Engineering-Engineering (all)
CiteScore
2.70
自引率
0.00%
发文量
22
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