高级检索

联合智能算法与建模技术的吊装优化方法

Hoisting Optimization Method Combining Intelligent Algorithm and Modeling Technology

  • 摘要: 在装配式混凝土预制板吊装施工中,存在路径规划不合理、起重机利用率低、施工安全性低等问题,且传统方法缺乏动态调整能力,难以适应复杂多变的施工环境。因此,本研究旨在提出一种优化策略,以解决上述问题,提升施工效率和智能化水平。本研究提出一种基于改进遗传算法(IGA)和建筑信息模型技术(BIM)的装配式混凝土预制板吊装优化策略。通过改进遗传算法优化吊装路径和施工调度,实现吊装过程建模与动态调整;同时借助BIM技术的动态调整能力,对突发情况进行迅速优化,增强施工的适应性。实验结果表明,相较于传统经验法,改进遗传算法优化策略可将吊装路径缩短至112.50 m,施工时间减少至97.20 min,起重机移动次数降低至67次。BIM技术的动态调整可在突发情况下迅速优化吊装方案,施工调整响应时间缩短至4.95 s-5.75 s,施工误差减少至4.80 min以内。此外,优化策略将起重机荷载超限率控制在4%以下,使最终施工成本从449.95万元降至332.85万元。本研究提出的基于改进遗传算法和BIM技术的装配式混凝土预制板吊装优化策略,能够有效优化吊装路径和施工调度,提升施工效率,增强施工管理的智能化水平,并降低施工成本,为智能化装配式建筑吊装优化提供了科学理论支撑,具有重要的应用价值和推广意义。

     

    Abstract: In the process of prefabricated panel hoisting, there are some problems such as unreasonable path planning, low utilization rate of crane and low construction safety, and the traditional method lacks dynamic adjustment ability. Therefore, a hoisting optimization strategy of prefabricated concrete slab based on improved genetic algorithm and building information modeling technology is proposed to optimize the hoisting path and construction scheduling, and realize the modeling and dynamic adjustment of the hoisting process. The experimental results show that compared with the traditional empirical method, the improved genetic algorithm optimization strategy can shorten the lifting path to 112.50 m, the construction time to 97.20 min, and the crane movement times to 67 times. At the same time, the dynamic adjustment of building information model technology can quickly optimize the hoisting scheme in emergencies, shorten the response time of construction adjustment to 4.95 s-5.75 s, and reduce the construction error to less than 4.80 min, which improves the construction adaptability. In addition, the optimization strategy controlled the crane load overrun rate below 4%, reducing the final construction cost from 4499500 yuan to 3328500 yuan. The research provides scientific theoretical support for intelligent prefabricated building hoisting optimization, which is of great significance for improving construction efficiency and enhancing the intelligent level of construction management.

     

/

返回文章
返回