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Zastosowania fotogrametrii niskopułapowej z wykorzystaniem bezzałogowych statków powietrznych do weryfikacji grubości pakietu mineralno-asfaltowego
Konferencja
9th World Multidisciplinary Congress on Civil Engineering, Architecture, and Urban Planning - WMCCAU 2024 : 2-6.09.2024
Języki publikacji
Abstrakty
Low-ceiling photogrammetry using unmanned aerial vehicles (UAVs) is becoming more and more widely used in engineering works. The use of this method is supported by the possibility of remote measurement quickly and at the same time with appropriate accuracy. UAV measurements are extremely useful over large areas, including construction sites. Such monitoring enables constant control of the progress of construction works, with the possibility of taking measurements. In the research, the authors verified the possibility of using a tool such as a UAV in the inventory of road investments, i.e. to control the thickness of the mineral-asphalt package. A testing ground was used for this purpose. Based on the raids performed before and after applying the mixture, the resulting dense point clouds were compared. Thanks to this, the actual thickness of the fresh surface was checked with the design assumptions. Results ranging from 9 to 11 cm were obtained, which indicates satisfactory compliance with the design.
Czasopismo
Rocznik
Tom
Strony
art. no. 28
Opis fizyczny
Bibliogr. 14 poz.
Twórcy
autor
- Silesian University of Technology, Faculty of Civil Engineering, Department of Geotechnics and Roads, Gliwice, Poland
autor
- Silesian University of Technology, Faculty of Civil Engineering, Department of Geotechnics and Roads, Gliwice, Poland
- ZRDiTZ "ROMUS" Sp.Jawna, ul.Roździeńska 27b, 40-389 Katowice, Poland
Bibliografia
- 1. Apanowicz B. Use of InSAR in Linear Discontinuous Ground Deformation Generation Analysis: Case Study of a Mine in Poland. Journal of Sustainable Mining. 2022 Apr 18;21(1):45–53.
- 2. Zhou S, Gheisari M. Unmanned aerial system applications in construction: a systematic review. CI. 2018 Nov 6;18(4):453–68.
- 3. Polanin P. Monitorowanie deformacji powierzchni terenu przy wykorzystaniu lotniczego skaningu laserowego na przykładzie miasta Bytom. Przegląd Górniczy. 2017;22–30.
- 4. Ayele YZ, Aliyari M, Griffiths D, Droguett EL. Automatic Crack Segmentation for UAV-Assisted Bridge Inspection. Energies. 2020 Nov 27;13(23):6250.
- 5. Ngadiman N, Badrulhissham IA, Mohamad M, Azhari N, Kaamin M, Hamid NB. Monitoring Slope Condition Using UAV Technology. cea. 2019 Dec;7(6A):1–6.
- 6. Han D, Lee S, Song M, Cho J. Change Detection in Unmanned Aerial Vehicle Images for Progress Monitoring of Road Construction. Buildings. 2021 Apr 2;11(4):150.
- 7. Elghaish F, Matarneh S, Talebi S, Kagioglou M, Hosseini MR, Abrishami S. Toward digitalization in the construction industry with immersive and drones technologies: a critical literature review. SASBE. 2021 Nov 10;10(3):345–63.
- 8. Karsznia K. The assessment of modern photogrammetric surveying methods in road works applications. In 2017.
- 9. Tatum MC, Liu J. Unmanned Aircraft System Applications in Construction. Procedia Engineering. 2017;196:167–75.
- 10. Herrmann M. Unmanned Aerial Vehicles in Construction: An Overview of Current and Proposed Rules. In: Construction Research Congress 2016 [Internet]. San Juan, Puerto Rico: American Society of Civil Engineers; 2016 [cited 2022 Jul 29]. p. 588–96. Available from: http://ascelibrary.org/doi/10.1061/9780784479827.060
- 11. Wróblewska M, Kowalska M, Łupieżowiec M. Slope stability analysis of post-mining dumps with the use of photogrammetric geometry measurements – a case study. Archives of Civil Engineering [Internet]. 2023 Dec 21 [cited 2024 Jan 18]; Available from: https://journals.pan.pl/dlibra/publication/147654/edition/129764/content
- 12. Vanneschi C, Eyre M, Francioni M, Coggan J. The Use of Remote Sensing Techniques for Monitoring and Characterization of Slope Instability. Procedia Engineering. 2017;191:150–7.
- 13. Cho J, Lee J, Lee B. Application of UAV Photogrammetry to Slope-Displacement Measurement. KSCE J Civ Eng. 2022 Apr;26(4):1904–13.
- 14. WT-2 2014 – część I. Nawierzchnie asfaltowe na drogach krajowych – Mieszanki mineralno-asfaltowe.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa nr POPUL/SP/0154/2024/02 w ramach programu "Społeczna odpowiedzialność nauki II" - moduł: Popularyzacja nauki i promocja sportu (2025).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-a332add6-20bc-4ec4-9a22-e5dd0a0c499b
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