Volume 38 Issue 6
Dec.  2024
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Li Qingbo, Du Pengzhao, Liu Zhenhong, Qi Jumei, Pei Lina. Key Technologies and Applications of Air-Ground Integrated Digital Engineering Investigation[J]. GEOTECHNICAL ENGINEERING TECHNIQUE, 2024, 38(6): 644-649. doi: 10.3969/j.issn.1007-2993.2024.06.002
Citation: Li Qingbo, Du Pengzhao, Liu Zhenhong, Qi Jumei, Pei Lina. Key Technologies and Applications of Air-Ground Integrated Digital Engineering Investigation[J]. GEOTECHNICAL ENGINEERING TECHNIQUE, 2024, 38(6): 644-649. doi: 10.3969/j.issn.1007-2993.2024.06.002

Key Technologies and Applications of Air-Ground Integrated Digital Engineering Investigation

doi: 10.3969/j.issn.1007-2993.2024.06.002
  • Received Date: 2024-03-31
  • Accepted Date: 2024-08-29
  • Rev Recd Date: 2024-07-16
  • Publish Date: 2024-12-06
  • Combined with the major needs of digitalization and informatization construction in the engineering investigation industry, the current status and shortcomings of the digital technology for engineering investigation were systematically analyzed, the research on key technologies in the digital collection, integrated management, and collaborative application of investigation information was carried out, several research results with practical engineering application value were obtained. Taking the Dongzhuang Water Control Project as an example, through the application of the key technologies of air-ground integration digital engineering investigation, the work efficiency and achievement quality of water conservancy engineering investigation in the mountain canyon area were improved, this provides a reference for the geological work in large-scale, long-distance, and difficult areas in the field, and promoting the advancement of information technology in the investigation industry.

     

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  • [1]
    周晓梅. 浅谈岩土工程勘察中存在的问题及相应对策[J]. 矿产勘察,2007(5):40-41.
    [2]
    林海娟. 基于数字化的岩土工程勘察探索架构[J]. 地理信息,2020,10(5):83-84.
    [3]
    孟宪才. 数字化技术在提高岩土勘察效率方面的应用[J]. 工程建设与设计,2017(20):17-18.
    [4]
    郭 凡. 数字化工程勘察资料馆开发及勘察大数据初步分析[D]. 西安: 西安科技大学,2020.
    [5]
    占建琴, 李世明, 鱼安卿. 城市岩土大数据平台研发及道路工程勘察应用[J]. 西部交通科技,2022(3):167-171.
    [6]
    王志超, 赵健赟, 温兰冲, 等. 基于“天–空–地”协同观测的西宁市南川东路滑坡变形特征与稳定性分析[J]. 水土保持通报,2024,44(2):223-235.
    [7]
    朱 江, 杨胜雄, 黄泽磊, 等. 空地一体化技术在地质灾害调查评价中的应用——以粤北连州镇为例[J]. 矿产勘查,2023,14(12):2426-2433.
    [8]
    王升钊, 陈雨人, 杨元弢. 空地融合的城市道路基础设施数字化技术研究[J]. 计算机测量与控制,2021,29(11):176-182,188.
    [9]
    刘尚蔚, 李 闯, 魏 群. 面向水利工程的空地一体三维重建方法研究[J]. 华北水利水电大学学报(自然科学版),2020,41(6):73-77,84.
    [10]
    裴丽娜, 侯清波, 齐菊梅, 等. 基于Android的工程勘察数字采集系统关键技术[J]. 人民黄河,2017,39(1):113-116. doi: 10.3969/j.issn.1000-1379.2017.01.028
    [11]
    唐志政, 唐 佳, 李尚高, 等. 基于Android +Web 的工程勘测数字化采集系统[J]. 资源信息与工程,2021,36(5):150-152. doi: 10.3969/j.issn.2095-5391.2021.05.042
    [12]
    宋 广, 吴 芮, 安亚杰. 工程勘察内外业一体化信息管理平台设计与应用[J]. 河南水利与南水北调,2021,50(9):88-90.
    [13]
    高姣姣. 高精度无人机遥感地质灾害调查应用研究[D]. 北京: 北京交通大学, 2010.
    [14]
    王桂杰, 谢谟文, 邱 骋, 等. D-INSAR技术在大范围滑坡监测中的应用[J]. 岩土力学,2010,31(4):1337-1344.
    [15]
    贾曙光, 金爱兵, 赵怡晴. 无人机摄影测量在高陡边坡地质调查中的应用[J]. 岩土力学,2018,39(3):1130-1136.
    [16]
    中华人民共和国住房和城乡建设部. 住房城乡建设部关于印发2016—2020年建筑业信息化发展纲要的通知[A/OL]. (2016-08-23). https://www.mohurd.gov.cn/gongkai/zhengce/zhengcefilelib/201609/20160919_228929.html
    [17]
    亓兆伟, 王 星. 基于华宁勘察软件与理正勘察软件数据接口的研究与开发[J]. 西部探矿工程,2016(6):157-162.
    [18]
    苏定立, 胡贺松, 谢小荣. 岩土工程勘察智能信息化技术研究现状[J]. 广州建筑,2019,47(6):10-18.
    [19]
    任 彧, 戴一鸣. 基于BIM的工程勘察软件系统研究与应用[J]. 工程勘察,2017(3):29-34.
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