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Mine Surveying in Underground Civil Engineering

Type of study Follow-up Master
Language of instruction English
Code 544-0173/02
Abbreviation DMPS
Course title Mine Surveying in Underground Civil Engineering
Credits 5
Coordinating department Department of Geodesy and Mine Surveying
Course coordinator doc. Ing. Juraj Gašinec, PhD.

Subject syllabus

1. Underground structures
2. Methods of excavation of underground structures, division of methods, methods of improving the environment during excavation
3. Point fields and demarcation networks
4. Transcripts and standards in underground construction
5. Instruments, aids and measuring systems for underground construction.
6. Measuring work in the excavation of tunnels and collectors
7. Measuring work during the excavation of the metro
8. Measuring work in the excavation of shafts and chimneys and shallow tunneling
9. Measuring work during machine embossing
10. Demarcation of drilling schemes
11. Measurement of convergences of underground structures
12. Monitoring the stability of the surface and objects affected by the excavation of underground structures
13. Control measurements and documentation of the actual construction of underground structures
14. Methods of geotechnical monitoring of underground structures

Literature

[1] QI, Fei, Gang CHEN, Xiaoxi ZHAO and Xueyun WANG. A high-precision positioning method for shield tunneling based on dual-axis hybrid inertial navigation system. Measurement [online]. 2024, 224, 113915. ISSN 0263-2241. Available at: doi:10.1016/j.measurement.2023.113915
[2] LAI, Wallace W.L. and Janet F.C. SHAM. Standardizing nondestructive underground utility survey methods. Tunnelling and Underground Space Technology [online]. 2023, 134, 104933. ISSN 0886-7798. Available at: doi:10.1016/j.tust.2022.104933
[3] JOHANSSON, Fredrik, Anders ANSELL, Daniel JOHANSSON, Johan FUNEHAG and Jenny NORRMAN. Tunnelling into a Sustainable Future – Methods and Technologies: Proceedings of the ITA-AITES World Tunnel Congress 2025 (WTC 2025), 9-15 May 2025, Stockholm, Sweden [online]. B.m.: CRC Press, 2025. ISBN 9781003559047. Available at: doi:10.1201/9781003559047
[4] ANAGNOSTOU, Georgios, Andreas BENARDOS and Vassilis P. MARINOS, eds. Expanding Underground - Knowledge and Passion to Make a Positive Impact on the World [online]. [Erscheinungsort nicht ermittelbar]: Taylor & Francis, 2023. ISBN 9781000957822. Available at: https://www.proquest.com/scholarly-journals/examining-potential-remote-deformation-management/docview/2864326266/se-2?accountid=26990

Advised literature

[1] SHI, Fangzhe, Jingxin YANG, Qiuyi LI, Junjie HE and Boning CHEN. 3D Laser Scanning Acquisition and Modeling of Tunnel Engineering Point Cloud Data. Journal of Physics: Conference Series [online]. 2023, 2425(1), 12064. ISSN 1742-6596. Available at: doi:10.1088/1742-6596/2425/1/012064
[2] LI, Menggang, Zhuoqi LI, Kun HU, Eryi HU, Chaoquan TANG and Gongbo ZHOU. Adaptive High-Resolution Dynamic Scanning System and Method for Deformation Monitoring of Underground Infrastructure. IEEE Transactions on Instrumentation and Measurement [online]. 2025, 74, 1–15. ISSN 1557-9662. Available at: doi:10.1109/tim.2025.3602599
[3] CUI, Yuming, Guozheng YANG, Yuanyuan DAI, Kewen YUAN and Xiaohui LIU. Subterranean roadway deformation detection based on LiDAR scanning and fusion filtering. Intelligence & Robotics [online]. 2026, 6(1), 19–38. ISSN 2770-3541. Available at: doi:10.20517/ir.2026.02
[4] SCHOFIELD, W. and M. BREACH. Engineering Surveying, Sixth Edition [online]. B.m.: Taylor & Francis, 2007. ISBN 978-0-7506-6949-8. Available at: https://books.google.cz/books?id=ONxywAEACAAJ