Development of a 3D Digital Model of End-of-Service-Life Buildings for Improved Demolition Waste Management through Automated Demolition Waste Audit

Muhammad Omer, Yong C. Wang, Mikel Quintana Roma, Stanislav Bedrich, Václav Nežerka, Juan Ferriz-Papi, Jesus J. Moros Montanes, Ines Diez Ortiz
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Abstract

This paper presents the development of a 3D digital model of end-of-service-life buildings to facilitate a step change in preparation of pre-demolition protocols that can eliminate problems of inadequate documentation and extensive time spent in preparing pre-demolition audits. The 3D digital model consists of the following four main components: (i) digitization of paper-based drawings and their conversion to CAD; (ii) automated generation of a 3D digital model from CAD; (iii) corrections to the 3D digital model to account for changes in the lifetime of a building; (iv) a sub-model for performing pre-demolition audit. This paper proposes the innovative approaches of incorporating a minimal amount of human intervention to overcome numerous difficulties in automated drawing analysis, application of augmented reality (AR) in corrections to the 3D digital model, and data compatibility for pre-demolition audit. These processes are demonstrated using one building as case study. Using the digital model, a pre-demolition audit can be prepared in minutes rather than the many days required in current practice without a digital model. The accurate quantification of the quantities and locations of different demolition waste materials and products in buildings to be demolished will enable a systematic and quantitative evaluation of potentials of material and product reuse and eliminate contamination of different demolition waste streams (which may contain hazardous waste), which is the main cause of environmental degradation and downcycling of demolition waste materials.
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开发报废建筑三维数字模型,通过拆除废物自动审计改进拆除废物管理
本文介绍了开发报废建筑三维数字模型的情况,以促进拆除前规程准备工作的逐步改变,从而消除文件记录不足和拆除前审计准备工作耗费大量时间的问题。三维数字模型由以下四个主要部分组成:(i) 将纸质图纸数字化并转换为 CAD;(ii) 根据 CAD 自动生成三维数字模型;(iii) 根据建筑物使用年限的变化对三维数字模型进行修正;(iv) 用于执行拆除前审计的子模型。本文提出了一种创新方法,即采用最少的人工干预来克服自动图纸分析、应用增强现实技术(AR)修正三维数字模型以及拆除前审计数据兼容性方面的诸多困难。我们以一栋建筑为案例对这些过程进行了演示。利用数字模型,拆除前审计工作可在数分钟内完成,而目前在没有数字模型的情况下,需要花费数天时间。准确量化待拆除建筑中不同拆除废料和产品的数量和位置,将有助于对材料和产品的再利用潜力进行系统和定量评估,并消除不同拆除废料流(可能含有危险废物)的污染,这是环境退化和拆除废料循环利用的主要原因。
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