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首页> 外文期刊>Journal of Asian architecture and building engineering >Grid Cell-based Algorithm for Workspace Overlapping Analysis Considering Multiple Allocations of Construction Resources
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Grid Cell-based Algorithm for Workspace Overlapping Analysis Considering Multiple Allocations of Construction Resources

机译:考虑网格资源多种分配的基于网格单元的工作空间重叠分析算法

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摘要

When multiple workspaces for resources are allocated within a narrow work area, the constructability of work may deteriorate based on the conflicts that occur due to the mutual adjacency levels between the workspaces. In this situation, the identification of the workspace overlapping status is essential for establishing the optimized layout planning of workspaces. However, current 3D environments consider only physical collision and reaction by the cross verification of geometric properties to detect collisions between 3D objects. Thus, the configuration of methodology to visually check the overlapping level of workspaces with conflicting status is insufficient for a successful interference management. This study develops a new grid cell-based analysis algorithm and its 4D simulation system for visually verifying the workspace overlapping of dynamic resources to be allocated multiply within a confined area, such as a tunnel or underground facility. The proposed algorithm and system can assist in the intensive management of activities that have a high level of workspace overlap by visualizing their overlapping level.
机译:当在狭窄的工作区域内分配资源的多个工作空间时,工作空间的可构造性可能会由于工作空间之间的相互邻接程度而发生冲突而恶化。在这种情况下,工作空间重叠状态的标识对于建立工作空间的优化布局规划至关重要。但是,当前的3D环境通过几何属性的交叉验证仅考虑物理碰撞和反应,以检测3D对象之间的碰撞。因此,用于视觉检查具有冲突状态的工作空间的重叠水平的方法的配置不足以成功进行干扰管理。这项研究开发了一种新的基于网格单元的分析算法及其4D仿真系统,以可视方式验证在有限区域(例如隧道或地下设施)内要分配的动态资源的工作空间重叠。所提出的算法和系统可以通过可视化重叠程度来协助对具有较高工作空间重叠程度的活动进行密集管理。

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