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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >The Application of Laser-Scanning-Based BIM Technology in Large Steel Structure Engineering for Environmental Protection
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The Application of Laser-Scanning-Based BIM Technology in Large Steel Structure Engineering for Environmental Protection

机译:基于激光扫描的BIM技术在大型钢结构工程环境保护中的应用

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摘要

The rise of heteromorphic architecture brings great challenges to engineering design, blanking, construction, completion testing, and maintenance. The 3D laser scanning measurement technology can quickly achieve the “copy” measurement of the target, especially suitable for the digitization of complex structure and the accurate construction of true 3D model and it takes care of other things which are necessary environment point of view. In this paper, we are considering the steel structure inspection and curtain wall blanking in the construction of the Grand Theater in the “Shangqiu Cultural and Art Center” as a case study. First, the laser scanning technology has been introduced to complete the data acquisition of steel structure objects and to screen the other details of the structure. Then, the high-quality point cloud is obtained through multistation splicing, filtering, denoising and smoothing, compression, and simplification. Through field comparison, the point cloud accuracy reached an acceptable level. Through field comparison, it can be seen that the difference between the designed building model combining laser technology and BIM technology is distributed within the range of ±(1–5)mm, and the mean square error is ±3.5?mm, and the deviation of numerical simulation is small, which meets the building requirements. Therefore, this method can effectively detect steel structure, and the BIM model can be updated according to the measured point cloud data. We provide accurate data reference for curtain wall material and installation.
机译:异构建筑的兴起给工程设计、消隐、施工、竣工测试和维护带来了巨大的挑战。三维激光扫描测量技术可以快速实现目标的“复制”测量,特别适用于复杂结构的数字化和真实三维模型的精确构建,并兼顾了其他必要的环境因素。本文以“商丘文艺中心”大剧院建设中的钢结构检测和幕墙下料为例进行研究。首先,引入激光扫描技术,完成钢结构物体的数据采集,并对结构的其他细节进行筛选。然后,通过多站拼接、滤波、去噪平滑、压缩、简化等方式获得高质量的点云。通过现场比对,点云精度达到了可接受的水平。通过现场对比可以看出,结合激光技术与BIM技术设计的建筑模型的差异分布在±(1–5)mm范围内,均方误差为±3.5?mm,数值模拟偏差小,满足建筑要求。因此,该方法可以有效地检测钢结构,并可根据实测点云数据更新BIM模型。我们为幕墙材料和安装提供准确的数据参考。

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