Review on the Geophysical and UAV-Based Methods Applied to Landslides

Journal article


Hussain, Y., Schlögel, R., Innocenti, A., Hamza, O., Iannucci, R., Martino, S. and Havenith, H. 2022. Review on the Geophysical and UAV-Based Methods Applied to Landslides. Remote Sensing. 14 (18), p. 4564. https://doi.org/10.3390/rs14184564
AuthorsHussain, Y., Schlögel, R., Innocenti, A., Hamza, O., Iannucci, R., Martino, S. and Havenith, H.
Abstract

Landslides (LS) represent geomorphological processes that can induce changes over time in the physical, hydrogeological, and mechanical properties of the involved materials. For geohazard assessment, the variations of these properties might be detected by a wide range of non-intrusive techniques, which can sometimes be confusing due to their significant variation in accuracy, suitability, coverage area, logistics, timescale, cost, and integration potential; this paper reviews common geophysical methods (GM) categorized as Emitted Seismic and Ambient Noise based and proposes an integrated approach between them for improving landslide studies; this level of integration (among themselves) is an important step ahead of integrating geophysical data with remote sensing data. The aforementioned GMs help to construct a framework based on physical properties that may be linked with site characterization (e.g., a landslide and its subsurface channel geometry, recharge pathways, rock fragments, mass flow rate, etc.) and dynamics (e.g., quantification of the rheology, saturation, fracture process, toe erosion, mass flow rate, deformation marks and spatiotemporally dependent geogenic pore-water pressure feedback through a joint analysis of geophysical time series, displacement and hydrometeorological measurements from the ground, air and space). A review of the use of unmanned aerial vehicles (UAV) based photogrammetry for the investigation of landslides was also conducted to highlight the latest advancement and discuss the synergy between UAV and geophysical in four possible broader areas: (i) survey planning, (ii) LS investigation, (iii) LS dynamics and (iv) presentation of results in GIS environment. Additionally, endogenous source mechanisms lead to the appearance of deformation marks on the surface and provide ground for the integrated use of UAV and geophysical monitoring for landslide early warning systems. Further development in this area requires UAVs to adopt more multispectral and other advanced sensors where their data are integrated with the geophysical one as well as the climatic data to enable Artificial Intelligent based prediction of LS.

Keywordslandslides; seismic measurements; UAV; geohazard
Year2022
JournalRemote Sensing
Journal citation14 (18), p. 4564
PublisherMDPI
ISSN2072-4292
Digital Object Identifier (DOI)https://doi.org/10.3390/rs14184564
Web address (URL)https://www.mdpi.com/2072-4292/14/18/4564
Accepted author manuscript
File Access Level
Open
Publisher's version
License
File Access Level
Open
Output statusPublished
Publication dates
Online13 Sep 2022
Publication process dates
Accepted06 Sep 2022
Deposited17 Oct 2022
Permalink -

https://repository.derby.ac.uk/item/996z0/review-on-the-geophysical-and-uav-based-methods-applied-to-landslides

Download files


Publisher's version
remotesensing-14-04564.pdf
License: CC BY 4.0
File access level: Open

  • 53
    total views
  • 63
    total downloads
  • 5
    views this month
  • 5
    downloads this month

Export as

Related outputs

Editorial: Near-surface geophysics in Latin American contexts: its applications, education, and societal perspectives as a whole
Hussain, Y., Maciel, S., Candori, C., Uagoda, R., Borges, W., Cárdenas-Soto, M., Hamza, O. and Seivane, H. 2024. Editorial: Near-surface geophysics in Latin American contexts: its applications, education, and societal perspectives as a whole. Frontiers in Earth Science. 12, pp. 1-3. https://doi.org/10.3389/feart.2024.1495375
Bio-protection of cementitious materials below ground: The significance of natural soil environments
Hamza, O., Esaker, M., Abogdera, A. and Elliott, D. 2024. Bio-protection of cementitious materials below ground: The significance of natural soil environments. Developments in the Built Environment. 17, pp. 1-12. https://doi.org/10.1016/j.dibe.2024.100331
Bio-self-healing of cementitious mortar incubated within clay soil
Esaker, M., Hamza, O. and Elliott, D. 2023. Bio-self-healing of cementitious mortar incubated within clay soil. Journal of Materials in Civil Engineering. 36 (1). https://doi.org/10.1061/JMCEE7.MTENG-15713
Emissions-based options appraisal for modular building foundations – a case study
Omar Hamza, Abdurahim Abogdera and Zoras, S. 2023. Emissions-based options appraisal for modular building foundations – a case study. Engineering Sustainability. https://doi.org/10.1680/jensu.22.10017
Monitoring the bio-self-healing performance of cement mortar incubated within soil and water using electrical resistivity
Esaker, M., Hamza, O. and Elliott, D. 2023. Monitoring the bio-self-healing performance of cement mortar incubated within soil and water using electrical resistivity . Construction and Building Materials. 393, pp. 1-11. https://doi.org//10.1016/j.conbuildmat.2023.132109
Seismic signatures and site characterization of an intermittent stream in dry and flood conditions: an implication for soil losses and landslide triggering
Hussain, Y., Seivane, H., Gao, Q., Maciel, S., Hamza, O., Uagoda, R. and Borges, W. 2023. Seismic signatures and site characterization of an intermittent stream in dry and flood conditions: an implication for soil losses and landslide triggering. Environmental Earth Sciences. 82 (295), pp. 1-20. https://doi.org/10.1007/s12665-023-10960-w
Subgrade reaction for closely spaced raft and isolated foundations on sand: case study
Hamza, O., Kourdey, A., Hussain, Y. and Mawas, A. 2023. Subgrade reaction for closely spaced raft and isolated foundations on sand: case study. Geotechnical Engineering. https://doi.org/10.1680/jgeen.21.00212
Extracting Energy from Flooded Coal Mines for Heating and Air-Conditioning of Buildings: Opportunities and Challenges
Al-Habaibeh, A., Shakmak, B., Athresh, A., Parker, K. and Hamza, O. 2022. Extracting Energy from Flooded Coal Mines for Heating and Air-Conditioning of Buildings: Opportunities and Challenges. in: Bienvenido-Huertas, D. and Moyano-Campos, J. (ed.) New Technologies in Building and Construction: Towards Sustainable Development Singapore Springer. pp. 353–365
Hydrogeophysical Characterization of Fractured Aquifers for Groundwater Exploration in the Federal District of Brazil
Hussain, Yawar, Campos, José Eloi Guimarães, Borges, Welitom Rodrigues, Uagoda, Rogério Elias Soares, Hamza, Omar and Havenith, Hans-Balder 2022. Hydrogeophysical Characterization of Fractured Aquifers for Groundwater Exploration in the Federal District of Brazil. Applied Sciences. 12 (5), p. 2509. https://doi.org/10.3390/app12052509
Detection of Cover Collapse Doline and Other Epikarst Features by Multiple Geophysical Techniques, Case Study of Tarimba Cave, Brazil
Hussain, Yawar, Uagoda, Rogerio, Borges, Welitom, Prado, Renato, Hamza, Omar, Cárdenas-Soto, Martín, Havenith, Hans-Balder and Dou, Jie 2020. Detection of Cover Collapse Doline and Other Epikarst Features by Multiple Geophysical Techniques, Case Study of Tarimba Cave, Brazil. Water. 12 (10), p. 2835. https://doi.org/10.3390/w12102835
Seismic signature of mudflow tremor resulted from Brumadinho (Brazil) tailings dam failure
Hussain, Yawar, Hamza, Omar, Huang, Xinghui, Silva, André Carlos, Condori, Cristobal, Uagoda, Rogério and Cavalcante, André Luís Brasil 2020. Seismic signature of mudflow tremor resulted from Brumadinho (Brazil) tailings dam failure. REM: International Engineering Journal. 73 (3), pp. 421-424. https://doi.org/10.1590/0370-44672019730040
Self-healing of bio-cementitious mortar incubated within neutral and acidic soil
Esaker, Mohamed, Hamza, Omar, Souid, Adam and Elliott, D. 2021. Self-healing of bio-cementitious mortar incubated within neutral and acidic soil. Materials and Structures. 54 (2), pp. 1-16. https://doi.org/10.1617/s11527-021-01690-1
Estimation of total groundwater reserves and delineation of weathered/fault zones for aquifer potential: A case study from the Federal District of Brazil
Hussain, Yawar, Borges, Welitom, Uagoda, Rogerio, Moura, Cristiane, Maciel, Susanne, Hamza, Omar and Havenith, Hans-Balder 2021. Estimation of total groundwater reserves and delineation of weathered/fault zones for aquifer potential: A case study from the Federal District of Brazil. Open Geosciences. 13 (1), pp. 904-916. https://doi.org/10.1515/geo-2020-0226
Characterization of Sobradinho landslide in fluvial valley using MASW and ERT methods
Hussain, Yawar, Hamza, Omar, Cárdenas-Soto, Martín, Borges, Welitom Rodrigues, Dou, Jie, Rebolledo, Juan Félix Rodriguez and Prado, Renato Luiz 2020. Characterization of Sobradinho landslide in fluvial valley using MASW and ERT methods. REM: International Engineering Journal. 73 (4), pp. 487-497. https://doi.org/10.1590/0370-44672019730109
Variation in Rayleigh wave ellipticity as a possible indicator of earthflow mobility: a case study of Sobradinho landslide compared with pile load testing
Hussain, Yawar, Cardenas-Soto, Martin, Moreira, César, Rodriguez-Rebolledo, Juan, Hamza, Omar, Prado, Renato, Martinez-Carvajal, Hernan and Dou, Jie 2020. Variation in Rayleigh wave ellipticity as a possible indicator of earthflow mobility: a case study of Sobradinho landslide compared with pile load testing. Earth Sciences Research Journal. 24 (2), pp. 141-151. https://doi.org/10.15446/esrj.v24n2.81974
The potential use of geophysical methods to identify cavities, sinkholes and pathways for water infiltration
Hussain, Yawar, Uagoda, Rogerio, Borges, Welitom, Nunes, José, Hamza, Omar, Condori, Cristobal, Aslam, Khurram, Dou, Jie and Cárdenas-Soto, Martín 2020. The potential use of geophysical methods to identify cavities, sinkholes and pathways for water infiltration. Water. 12 (8), p. 2289. https://doi.org/10.3390/w12082289
The effect of soil incubation on bio self-healing of cementitious mortar
Hamza, Omar, Esaker, Mohamed, Elliott, D. and Souid, A. 2020. The effect of soil incubation on bio self-healing of cementitious mortar. Materials Today Communications. 24, pp. 1-9. https://doi.org/10.1016/j.mtcomm.2020.100988
Multiple geophysical techniques for investigation and monitoring of sobradinho landslide, Brazil
Hussain, Yawar, Cardenas-Soto, Martin, Martino, Salvatore, Moreira, Cesar, Borges, Welitom, Hamza, Omar, Prado, Renato, Uagoda, Rogerio, Rodríguez-Rebolledo, Juan, Silva, Rafeal and Martinez-Carvajal, Hernan 2019. Multiple geophysical techniques for investigation and monitoring of sobradinho landslide, Brazil. Sustainability. 11 (23), p. 6672. https://doi.org/10.3390/su11236672
Typological analysis of slidequakes emitted from landslides: experiments on expander body pile and Sobradinho landslide (Brasilia, Brazil)
Hussain, Y, Hussain, S, Martino, S, Cárdenas-Soto, M, Hamza, O, Rodriguez-Rebolledo, J, Uagoda, R and Martinez-Carvajal, H 2019. Typological analysis of slidequakes emitted from landslides: experiments on expander body pile and Sobradinho landslide (Brasilia, Brazil). International Engineering Journal (REM - Revista Escola de Minas). https://doi.org/10.1590/0370-44672018720110
Monitoring of Sobradinho landslide (Brasilia, Brazil) and a prototype vertical slope by time-lapse interferometry
Hussain, Y, Cárdenas-Soto, M, Augoda, R, Martino, S, Rodriguez-Rebolledo, J, Hamza, O and Martínez-Carvajal, H 2019. Monitoring of Sobradinho landslide (Brasilia, Brazil) and a prototype vertical slope by time-lapse interferometry. Brazilian Journal of Geology. https://doi.org/10.1590/2317-4889201920180085
Electrokinetic treatment of desiccated expansive clay
Hamza, Omar and Ikin, Jamie 2019. Electrokinetic treatment of desiccated expansive clay. Géotechnique. https://doi.org/10.1680/jgeot.18.p.266
Validation of electrokinetic stabilisation of M5 Junction 7
Alder, David, Lamont-Black, J, Hamza, Omar, Jackson, C and Jones, C 2019. Validation of electrokinetic stabilisation of M5 Junction 7. Ground Engineering.
Geohazard assessment of landslides in south Brazil: Case study
Hamza, Omar, De Vargas, Tiago, Boff, Fernando Eduardo, Hussain, Yawar and Davies-Vollum, S. 2019. Geohazard assessment of landslides in south Brazil: Case study. Geotechnical and Geological Engineering. https://doi.org/10.1007/s10706-019-01054-1
Experimental data of bio self-healing concrete incubated in saturated natural soil
Souid, A., Esaker, M., Elliott, D. and Hamza, Omar 2019. Experimental data of bio self-healing concrete incubated in saturated natural soil. Data in Brief. 26, pp. 1-11. https://doi.org/10.1016/j.dib.2019.104394
Creep properties of intact and fractured muddy siltstone.
Hamza, Omar and Stace, Rod 2018. Creep properties of intact and fractured muddy siltstone. International Journal of Rock Mechanics and Mining Sciences. https://doi.org/10.1016/j.ijrmms.2018.03.006
Geotechnical assessment strategy for bridge maintenance – case study.
Hamza, Omar 2017. Geotechnical assessment strategy for bridge maintenance – case study. CRC Press.
Laboratory measurement of time-dependent deformation properties of muddy siltstone.
Hamza, Omar and Stace, Rod 2017. Laboratory measurement of time-dependent deformation properties of muddy siltstone. Chamber of Mining Engineers of Turkey.
Repairing a shield tunnel damaged by secondary grouting.
Jin-long, Liu, Hamza, Omar, Davies-Vollum, S. and Jie-qun, Liu 2018. Repairing a shield tunnel damaged by secondary grouting. Tunnelling and Underground Space Technology. https://doi.org/10.1016/j.tust.2018.07.016
Sustainable geotechnics
Hamza, Omar 2016. Sustainable geotechnics. International Conference on Sustainability in Energy and Buildings 11-12 September 2016. https://doi.org/10.13140/RG.2.2.25353.44640/1
Investigation into the effect of uncertainty of CPT-based soil type estimation on the accuracy of CPT-based pile bearing capacity analysis
Hamza, Omar and Bellis, Angela 2016. Investigation into the effect of uncertainty of CPT-based soil type estimation on the accuracy of CPT-based pile bearing capacity analysis. https://doi.org/10.13140/RG.2.2.35614.74565