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首页> 外文期刊>Journal Of Information Technology In Construction >Optimizing location of tower cranes on construction sites through GIS and BIM integration
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Optimizing location of tower cranes on construction sites through GIS and BIM integration

机译:通过GIS和BIM集成优化塔式起重机在建筑工地上的位置

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Tower cranes, on today?s typical building construction sites, are the centerpiece of production,hoisting and transporting of a variety of loads. Occasionally tower cranes operate with overlapping work zonesand often under time, cost and labor constraints. Identifying optimal number and location of tower cranes is animportant issue that can reduce conflicts between groups of tower cranes. Geographic information systems (GIS)facilitate the analysis of large amounts of spatial data used in the process of location optimization for tower cranes.In addition, integrating analysis results from GIS with 3D visual models enables managers to visualize the potentialconflicts with tower cranes in great detail. Building Information Modeling (BIM) helps managers to visualizebuildings before implementation takes place through a digitally constructed virtual model. Hence, in thispaper, the integrated GIS-BIM model starts with the identification of feasible locations for defined tower cranes.The method presented is based on previous works using ?geometric closeness? and coverage of all demand andsupply points as key criteria for locating a group of tower cranes*). Once the geometry of the construction site isgenerated by the BIM tool, the model determines the proper combination of tower cranes in order to optimizelocation. The output of the GIS model includes one or more feasible areas that cover all demand and supplypoints, which is then linked to the BIM tool and generates 3D models to visualize the optimum location of towercranes. As a result, potential conflicts are detected in different 3D views in order to identify optimal location oftower cranes. To address the feasibility of a GIS-BIM integrated model for layout of tower cranes, an actualcase example is introduced.
机译:在当今典型的建筑施工现场,塔式起重机是生产,提升和运输各种负载的核心。塔式起重机有时在重叠的工作区域内工作,并且经常受时间,成本和人工约束。确定塔式起重机的最佳数量和位置是一个重要的问题,可以减少塔式起重机组之间的冲突。地理信息系统(GIS)有助于分析塔式起重机的位置优化过程中使用的大量空间数据,此外,将GIS的分析结果与3D视觉模型相集成,使管理人员可以可视化与塔架的潜在冲突起重机的细节。建筑信息模型(BIM)可帮助管理人员通过数字化虚拟模型在实施之前可视化建筑物。因此,在本文中,集成的GIS-BIM模型从确定定义的塔式起重机的可行位置开始,所提出的方法是基于先前使用“几何接近度”的工作。以及所有需求和供应点的覆盖范围是确定一组塔式起重机的关键标准*)。通过BIM工具生成施工现场的几何图形后,该模型将确定塔式起重机的正确组合,以优化位置。 GIS模型的输出包括一个或多个涵盖所有需求和供应点的可行区域,然后将其链接到BIM工具并生成3D模型以可视化塔式起重机的最佳位置。结果,在不同的3D视图中检测到潜在的冲突,以识别塔式起重机的最佳位置。为了解决用于塔式起重机布局的GIS-BIM集成模型的可行性,介绍了一个实际案例。

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