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首页> 外文期刊>Waste Management >4D-BIM to enhance construction waste reuse and recycle planning: Case studies on concrete and drywall waste streams
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4D-BIM to enhance construction waste reuse and recycle planning: Case studies on concrete and drywall waste streams

机译:4D-BIM提高建筑废物再利用和回收计划:关于混凝土和干墙废物流的案例研究

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摘要

Despite pressing attention on construction waste management (CWM) issues, low rates of construction waste (CW) reuse and recycling (R&R) remain a limitation in construction projects. In recent years, Building Information Modeling (BIM) has gained momentum for CWM purposes; its data-richness, visualization, and simulation capabilities provide an opportunity to enhance CW R&R planning at the project level. In this context, this study proposes temporal-based algorithms integrated with 4D-BIM for the planning of concrete and drywall waste R&R throughout construction projects. Two case studies from Central Texas were used for the demonstration of the algorithms, and estimates were validated with ground truth data and literature values from different projects in North America. The overarching objective of the proposed algorithms is to streamline estimation and visual planning of CW for on-site reuse, and off-site recycling - therefore promoting a more proactive and schedule-based CWM plan. In addition, the approach improves team communication around CWM goals of the project. Moreover, through the use of 4D-BIM, on-site waste reuse opportunities are planned in advance, thus, improving resource recovery and minimizing waste disposal in landfills.
机译:尽管对建筑废物管理(CWM)问题进行了关注,但建筑垃圾(CW)重用和回收率(R&R)的低率仍然是建设项目的限制。近年来,建设信息建模(BIM)已经获得了CWM目的的势头;其数据丰富,可视化和模拟能力为在项目级别提升CW R&R规划的机会。在这种情况下,本研究提出了与4D-BIM集成的基于时间的算法,用于整个建筑项目的混凝土和干墙废物R&R。德克萨斯州中部的两种案例研究用于演示算法,估计被核实从北美的不同项目的地面真理数据和文学价值验证。所提出的算法的总体目标是简化CW的估计和视觉规划,以进行现场重用,以及非现场回收 - 因此促进基于更积极的安排的CWM计划。此外,该方法还提高了项目的CWM目标周围的团队沟通。此外,通过使用4D-BIM,预先计划现场废物再利用机会,从而提高资源恢复并最大限度地减少垃圾填埋场的废物处理。

著录项

  • 来源
    《Waste Management》 |2020年第10期|79-90|共12页
  • 作者单位

    Department of Civil Architectural and Environmental Engineering The University of Texas at Austin 301 E. Dean Keeton St. C1752 Austin TX 78712-1094 USA;

    Construction Engineering and Project Management Program Department of Civil Architectural and Environmental Engineering The University of Texas at Austin 301 E. Dean Keeton St. C17S2 Austin TX 78712-1094 USA;

    Construction Engineering and Project Management Program Department of Civil Architectural and Environmental Engineering The University of Texas at Austin 301 E. Dean Keeton St. C17S2 Austin TX 78712-1094 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    4D-BIM; Building information modeling (BIM); Construction waste; Reuse; Recycle;

    机译:4d-bim;建筑信息建模(BIM);建筑垃圾;重用;回收;

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