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Geometry-based modeling and simulation of construction processes.

机译:基于几何的建模和施工过程模拟。

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摘要

This research describes a new approach for modeling and simulation of construction processes based on geometric models and techniques. Currently, there is inadequate support for modeling the spatial aspects of construction operations, evaluation of alternative process plans and visualizing the results directly. Extending existing planning, simulation, and visualization techniques and using geometry, I describe a process modeling approach and geometric techniques to support the approach.; GPM, the process modeling approach in this research, models the conversions in construction processes as sequences of crews acting on geometric work locations. It uses a simple process description: work locations are processed by crews. It describes a crew model that includes a workflow strategy and a production rate function. The workflow strategy specifies in what order crews plan to perform their scope of work. The production rate function specifies at what rate crews can perform work at a specific work location at a specific time instant.; A set of crews acting on work locations in a bounded space defines a subsystem. Subsystems use formal approaches to modeling and simulation for their definition. GPM describes three interaction types to couple a set of subsystems to describe the complete process model. It reduces each subsystem into queueing networks for simulation purposes and uses discrete event simulation to obtain state trajectories for the geometric model and the crews performing work on the project. The system states provide automatic 4D and crew performance visualizations.; In this research, geometry is not a static representational element, but an integral part of the process model. The geometric model, represented as triangle meshes, is a source for automated extraction of a number of constraints and interactions. The geometric techniques manipulate, reorganize and analyze the geometric model.; GSim, an implementation prototype for GPM, implements the elements of the modeling and simulation approach and the geometric techniques. Users can define subsystems interactively and evaluate alternatives easily by changing parameters and observing the results directly. The research results provide improved modeling and simulation techniques for construction operations and more effective use of geometry for practice and research.
机译:这项研究描述了一种基于几何模型和技术的建筑过程建模和仿真的新方法。当前,对于构建操作的空间方面的建模,替代工艺计划的评估以及直接可视化结果的支持不足。扩展了现有的计划,仿真和可视化技术并使用几何,我描述了一种流程建模方法和支持该方法的几何技术。 GPM(本研究中的过程建模方法)将施工过程中的转换建模为工作人员在几何工作位置上工作的顺序。它使用简单的过程描述:工作地点由工作人员处理。它描述了一个工作人员模型,其中包括工作流程策略和生产率函数。工作流策略指定工作人员计划按照什么顺序执行其工作范围。生产率函数指定了工作人员可以在特定时间在特定工作地点执行工作的速率。一组在有限空间内的工作地点工作的工作人员定义了一个子系统。子系统使用正式的方法对其定义进行建模和仿真。 GPM描述了三种交互类型,以耦合一组子系统来描述完整的过程模型。它将每个子系统简化为用于仿真目的的排队网络,并使用离散事件仿真来获取几何模型和在项目上执行工作的人员的状态轨迹。系统状态提供自动4D和机组人员性能可视化。在这项研究中,几何不是静态的表示元素,而是过程模型的组成部分。表示为三角形网格的几何模型是自动提取许多约束和相互作用的来源。几何技术可以操纵,重组和分析几何模型。 GSim是GPM的实现原型,它实现了建模和仿真方法以及几何技术的要素。用户可以交互地定义子系统,并可以通过更改参数和直接观察结果轻松评估备选方案。研究结果为施工作业提供了改进的建模和仿真技术,并为实践和研究提供了更有效的几何方法。

著录项

  • 作者

    Akbas, Ragip.;

  • 作者单位

    Stanford University.;

  • 授予单位 Stanford University.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 138 p.
  • 总页数 138
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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