Innovating as-built verification

案例分析

作者:Yoshie Katagiri

In 2018, the Japanese Ministry of Land, Infrastructure and Transport (MLIT) publicly invited bids for a ‘Project to Introduce and Utilise Innovative Technology to Dramatically Improve Productivity on Construction Sites’ under its i-Construction initiative aiming to boost productivity on construction sites as part of a wider innovation strategy. Kanatsu Giken formed a consortium of four companies with Fukui Computer Co., Ltd., Leica Geosystems Co., Ltd., and Sanyo Sokki Co., Ltd., and tendered for the project. The consortium was selected in the category of ‘Techniques Using Data to Improve the Productivity of Construction in Civil Engineering Work.’

四公司联盟的目的是在混凝土结构(例如桥梁基台和码头)上进行3D激光扫描,并使用获得的点云数据进行实行验证,以显着提高施工地点的生产率。此外,他们使用捕获的点云数据与3D设计数据(CIM)的坐标值之间的差异进行了试验并提出了一种新的进度管理方法。

Kanatsu Giken使用了Leica GeosystemsLeica Nova MS60 MultiStation,一种具有3D激光扫描的仪器,并具有常规总站的测量功能。

“Current as-built verification method is time-consuming and labour intensive because much of the measurement and analysis of disparities is done manually. The reason we bought the Nova MS60 in the first place, was to make these tasks less labour intensive. Soon after the purchase, we found out about the MLIT project. We focused the expertise available across the four companies and came up with a specific method for construction management using points and surfaces. This also had the potential to enable high productivity when verifying the as-built, so we tendered for the project,”描述了Kanatsu Giken土木工程部信息技术小组的团队负责人Yoshinobu Kimura。

该财团在五个地点进行了现场测量和数据分析,并根据结果进行了编译并提交了MLIT的建议。2019年,MLIT宣布了对所有提交项目的评估 - 该财团获得了“ A”评级,是最高评估。



点云数据之间的比较obtained by measuring the as-built of cast-in-place piles and 3D design data (blue lines)



平面(粗糙度)对点云数据的比较评估,通过测量与3D设计数据的地位桩的构建



点云数据之间的比较obtained by measuring the as-built of footing and design data (blue lines)



平面(粗糙度)通过测量与3D设计数据的基础建造获得的点云数据的比较评估



By conventional techniques, it takes a total of three people - a pair taking measurements and a photographer - to measure the as-built of the cast-in-place pile.



使用试用技术,一个人可以操作NOVA MS60进行测量和摄影.The trial techniques reduced the number of man-hours required for measurements of cast-in-place piles by more than half.



基础是具有减震功能的钢筋混凝土基础。倒角时,读取准确的角点可能是一个问题。


测量工作减半



In the case of piers, due to the requirement to take measurements at height and in confined spaces,使用3D点云数据进行平面评估非常有用。

该试验是在日本Ohguni高架桥外部和下部的两个桥梁基台上和两个桥梁的施工过程中进行的测量和验证。试验的结果分为现场桩,基础和住房。

To be able to efficiently conduct accurate as-built verification of the entire top of the pile was one of the great advantages of the trial technology.

“使用常规方法,当我们测量桩顶的标准高度时,我们使用了一个梯子或类似的东西,类似于爬过桩从桩上伸出的增援,并在中心有一个测量师。桩直径通过两个团队测量,在两个方向上进行测量 - 一个沿着桥的轴,另一个垂直于此。这项工作一次又一次地重复,直到测量所有桩。需要另一个工人拍摄剩余的验证过程的照片。

使用Nova MS60,您可以从钢筋外部进行测量。不再需要成对工作以用胶带测量测量桩芯和桩直径,然后计算中心点,因为以后可以通过数据分析准确地确定这些中心点,”Kimura解释。

The MultiStation reduced the manhours required for the measurement work to less than half. Worker downtime got reduced from 83.3 manhours with the conventional techniques to 37.27 hours.

此外,由于将NOVA MS60捕获的数据上传到点云处理系统以进行临时测量,因此无需单独拍摄照片以进行验证。这也消除了现场工作后组织照片的时间。

基础是放置在铸件桩顶部的钢筋混凝土的基础。在审判中,脚手架被证明是一个障碍。码头坐在立足点上并支撑桥接的上层建筑。

For the piers and footing, scaffolding proved to be an obstacle and the instruments had to be moved frequently. In spite of this, the trial task took 8.5 manhours compared with the 11 manhours for the footing and 30.9 manhours compared with the 40 manhours taken with conventional techniques.



通过测量码头的完成形状和设计数据(蓝线)获得的点云数据的比较



平面(粗糙度)通过测量码头对3D设计数据的测量来获得的点云数据的比较评估

“对于基础和码头,我们只管理了约20%的货运量。但是,如果有许多结构要测量,即使20%也代表了一个大量节省。同样,如果建立3D激光扫描作为标准过程,则建筑工地将设计工作流以建造和去除脚手架,以便可以有效地进行测量,这应该会进一步减少ManUrs,”木村说。


Use of point cloud data boosts productivity increases accuracy and improves safety



这种使用Point Cloud数据进行的创新验证的创新方法具有无数的潜在优势,包括更高的生产率,更高的准确性和提高的安全性。此外:

•可以由单个工人进行实施测量。

•一旦捕获数据,就可以测量任意坐标之间的维度或在任何位置查看横截面。

•不再需要拍摄并组织验证照片。

•能够计算XYZ轴偏差是前所未有的,并且有可能提高维护和管理的精度。

即使在建设进行了进展,桩和基础也被埋葬在地下和看不见之后,这些无形结构的状态也可以在将来准确地测量和精心管理。保持施工过程的详细记录可提高安全性和可靠性,并有望减少重大事故的发生率。

Moreover, the opportunities for application are likely to expand. Potential uses include uploading the captured data to CIM for processing and combining of the above techniques with VR (virtual reality), AR (augmented reality) and MR (mixed reality) technology, and wearable terminals, changing the nature of construction work.


Immediately view 3D design data superimposed on point cloud data



Merged as-built point cloud data of the entire structure with 3D design data (CIM).

The ease of use, a familiar operating interface of a total station combined with a high-performance motor drive for high-speed rotation and inversion, and a high laser scanning speed resulted in complete user satisfaction.

“ Nova MS60的最大好处是,您可以实时查看在点云数据上叠加在点云数据上的3D设计数据 - 您只需查看Nova MS60现场的屏幕,然后立即查看差异即可。如果读数不在标准值范围内,则测量位置或其他问题是错误的。因此,通过在工作时检查3D设计数据,您可以验证未造成的算法,没有错误,”Kimura解释。

Kanatsu Giken进行了该试验项目,主题是“充分利用现场技术”,并将工程师和建筑工地汇集在一起​​,以追求创新。

“在这项审判中,我们只是将提案付诸实践,表明还有另一种做事的方法。随着由于从参与到全面采用I-Construction的转变而导致的需求变化,我们将继续拥抱灵活的思维和创造力,以提高建筑工地的生产力,并使站点成为更具吸引力的工作场所,”总结是基穆拉。

Tilmeld Dig Leica记者

Fådeseneste历史学家OG Nyheder Med Vores Kundemagasin,记者。
Fådeseneste历史学家OG Nyheder Med Vores Kundemagasin,记者。