基于bim的周期规划概念设计的案例评估

Paul Häringer, A. Borrmann
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引用次数: 2

摘要

周期计划,或节拍时间计划,是一个关键的方法,以减少不同的活动之间的可变性,在一个结构的执行。一个建筑部分,如地板,由多个工作区组成,这些工作区应该有连续的流程和相似的周期时间,以有效地协调所需的资源。然而,对于混凝土结构,通常很难找到合适的浇筑段尺寸和它们的工作区域分组。目前,调度专家通常利用他们的实际经验来寻找周期规划的直观解决方案,这可能是次优的。因此,我们研究的目的是开发一种半自动方法来生成一个周期的最佳工作区域。提出的解决方案是基于bim的周期规划概念,用于墙壁的现浇施工方法。本文为我们的概念奠定了基础,并评估了循环规划布局的不同设计,以确保生成的工作区域的实际相关性。我们提供了一种半自动方法:在将所有墙体对象分割成更小的部分后,优化算法将墙体部分聚合为铸造段,并将铸造段聚合为工作区。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of a Case Study to Design a BIM-Based Cycle Planning Concept
Cycle Planning, or Takt Time Planning, is a key method to reduce the variability between different activities within the execution of a construction. A construction section such as a floor consists of multiple work zones, which should have continuous flow and similar cycle times to efficiently coordinate needed resources. However, for concrete structures it is often difficult to find suitable sizes of casting segments and their grouping to work zones. Nowadays, scheduling experts usually use their practical experience to find an intuitive solution for Cycle Planning, which might be sub-optimal. The objective of our research is thus to develop a semiautomatic method to generate optimal work zones for a cycle. The proposed solution is a BIM-based Cycle Planning concept for the cast in-situ construction method of walls. This paper lays the foundation for our concept and evaluates different designs of Cycle Planning layouts to ensure the practical relevance of the generated work zones. We provide an approach to the semiautomatic method: after splitting all wall objects into smaller sections, an optimization algorithm aggregates wall sections into casting segments and casting segments into work zones.
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