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A Framework Design for Optimizing Scaffolding Erection by Applying Mathematical Models and Virtual Simulation

机译:应用数学模型和虚拟仿真优化棚架安装的框架设计

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Temporary structures like scaffolding have a significant impact on the quality, safety and profitability of construction projects. Workplace Health and Safety (WHS) Authorities in Australia have found that 40% of all scaffolding projects do not comply with national safety and design standards. Thereby the practical guidance in scaffolding cases should be treated as a critical research focal point in conjunction with the general Australia-wide Occupational Safety and Health (OSH) requirements, acts and regulations. At present, limited research attention has been placed on the impact of design and validation of scaffolding erection and dismantling on OSH, especially considering working at height. To address this issue, this paper aims to develop a framework of mathematical optimization algorithms for scheming the scaffolding erection and dismantling during the planning process, and exploring on how to combine the mathematical methods to produce a good solution in a relatively short time by taking consideration of special characteristics and complications of scaffolding. The framework can resolve the relatively multi-objective optimization issues and produce the optimal solutions with higher complexity. In parallel, virtual simulation scenario to digitalize the optimized work schemes of scaffolding is also proposed within the framework. In this sense, several sources of risks in scaffolding erection and dismantling including work area design and lay-out (e.g., inadequate space for task type), the nature of equipment or tool, erection and dismantling sequences load and working environment will be comprehensively optimized and visually simulated. It is envisaged that this integrated framework that combines the mathematical algorithms and virtual representation might, for the first time, automate the most effective way of controlling the risks in the context of scaffolding practice.
机译:像脚手架这样的临时结构对建筑项目的质量,安全性和盈利能力产生了重大影响。澳大利亚的工作场所健康和安全(WHS)当局发现,40%的脚手架项目不符合国家安全和设计标准。因此,脚手架案件的实际指导应被视为与澳大利亚普通的职业安全和健康(OSH)要求,行为和法规相结合的关键研究焦点。目前,研究了有限的研究注意力的影响和验证脚手架勃起和拆除对OSH的影响,特别是考虑在高度工作。为了解决这个问题,本文旨在开发数学优化算法的框架,用于在规划过程中拼接脚手架勃起和拆卸,并探索如何通过考虑在相对短的时间内结合数学方法在相对短的时间内产生良好的解决方案脚手架特点及并发症。该框架可以解决相对多目标的优化问题,并具有更高复杂性的最佳解决方案。在框架内,还提出了虚拟仿真方案以数字化脚手架的优化工作方案。从这个意义上讲,脚手架勃起和拆除的几种风险来源包括工作区设计和制定(例如,任务类型的空间不足),设备或工具的性质将全面优化拆除设备或工具,勃起和拆卸序列的负荷和工作环境和视觉模拟。可以预计将数学算法和虚拟表示的这种综合框架首次实现了控制脚手架实践的背景下控制风险的最有效方式。

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