Early Warning of Rock Collapse Based on Precursor Identification in the Detachment Phase

Yan Du , Mengjia Lyu , Mowen Xie , Yujing Jiang , Santos Daniel Chicas , Hongda Zhang , Jingnan Liu

Journal of Earth Science ›› 2026, Vol. 37 ›› Issue (1) : 373 -380.

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Journal of Earth Science ›› 2026, Vol. 37 ›› Issue (1) :373 -380. DOI: 10.1007/s12583-026-0502-8
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Early Warning of Rock Collapse Based on Precursor Identification in the Detachment Phase

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Yan Du, Mengjia Lyu, Mowen Xie, Yujing Jiang, Santos Daniel Chicas, Hongda Zhang, Jingnan Liu. Early Warning of Rock Collapse Based on Precursor Identification in the Detachment Phase. Journal of Earth Science, 2026, 37(1): 373-380 DOI:10.1007/s12583-026-0502-8

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References

[1]

Berhane G, Kebede M, Alfarrah N. Landslide Susceptibility Mapping and Rock Slope Stability Assessment Using Frequency Ratio and Kinematic Analysis in the Mountains of Mgulat Area, Northern Ethiopia. Bulletin of Engineering Geology and the Environment, 2021, 80(1): 285-301

[2]

Cai M F, Detournay E. Green Mining, Smart Future. Green and Smart Mining Engineering, 2024, 1(1): 1

[3]

Chao W-A, Wu T R, Ma K Fet al.. The Large Greenland Landslide of 2017: Was a Tsunami Warning Possible?. Seismological Research Letters, 2018, 8941335-1344

[4]

Crosta G B, Agliardi F, Rivolta Cet al.. Long-Term Evolution and Early Warning Strategies for Complex Rockslides by Real-Time Monitoring. Landslides, 2017, 14(5): 1615-1632

[5]

Du Y, Huo L C, Zhang H Det al.. Experimental Research on Remote Monitoring and Early Warning of Rock Collapse. Journal of China University of Mining & Technology, 2022, 51(6): 1201-1208(in Chinese with English Abstract)

[6]

Du Y, Liu J N, Xie M Wet al.. Experimental Study on the Real-Time Stability Assessment Method for Unstable Sliding Rock. Rock Mechanics and Rock Engineering, 2023, 56(9): 6879-6888

[7]

Du Y, Lu Y D, Xie M Wet al.. A New Attempt for Early Warning of Unstable Rocks Based on Vibration Parameters. Bulletin of Engineering Geology and the Environment, 2020, 79(8): 4363-4368

[8]

Du Y, Lyu M J, Liu J Net al.. Research and Prospects on Intelligent Monitoring and Early Warning of Brittle Failure-Type Geological Hazard. Journal of Basic Science and Engineering, 2025, 33(3): 755-769(in Chinese with English Abstract)

[9]

Du Y, Wu Z X, Xie M Wet al.. Early-Warning Method of Rock Collapse and Its Experimental Verification. Journal of the China Coal Society, 2019, 44(10): 3069-3075(in Chinese with English Abstract)

[10]

Du Y, Xie M W. Indirect Method for the Quantitative Identification of Unstable Rock. Natural Hazards, 2022, 112(1): 1005-1012

[11]

Du Y, Xie M W, Jiang Y Jet al.. Experimental Rock Stability Assessment Using the Frozen-Thawing Test. Rock Mechanics and Rock Engineering, 2017, 50(4): 1049-1053

[12]

Du Y, Zhang H D, Xie M Wet al.. Review on the Monitoring and Early Warning Technology of Large-Scale Unstable Rock Collapse. Advanced Engineering Sciences, 2024, 56(5): 10-23(in Chinese with English Abstract)

[13]

Du Y, Zhang H D, Xie M Wet al.. A Possible Mechanism of High-Speed and Long-Distance Rockslides. Journal of Earth Science, 2024, 35(6): 2158-2162

[14]

Francioni M, Calamita F, Coggan Jet al.. A Multi-Disciplinary Approach to the Study of Large Rock Avalanches Combining Remote Sensing, GIS and Field Surveys: The Case of the Scanno Landslide, Italy. Remote Sensing, 2019, 11(13): 1570

[15]

Guo C B, Zhang Y S, Zhang Y Net al.. Freeze-Thaw Cycle Effects on Granite and the Formation Mechanism of Long-Runout Landslides: Insights from the Luanshibao Case Study in the Tibetan Plateau, China. Bulletin of Engineering Geology and the Environment, 2023, 8210394

[16]

He Z, Xie M W, Huang Z Jet al.. Experimental Hazardous Rock Block Stability Assessment Based on Vibration Feature Parameters. Advances in Civil Engineering, 2020, 2020: 8837459

[17]

He Z, Xie M W, Wu Z Xet al.. Field Measurement Study on the Pre-Collapse Tilt Deformation Characteristics of Tension-Cracking Slope Rock Mass Using Micro-Core-Pile Sensor. Rock and Soil Mechanics, 2024, 45113399-3415

[18]

Huo L, Du Y, Xie Met al.. Unstable Rock Mass Identification Method Based on Multi-Level Dynamic Parameters. Chinese Journal of Rock Mechanics and Engineering, 2022, 41(Suppl. 2): 3124-3131

[19]

Jia B N, Wu Z X, Du Y. Real-Time Stability Assessment of Unstable Rocks Based on Fundamental Natural Frequency. International Journal of Rock Mechanics and Mining Sciences, 2019, 124: 104134

[20]

Lambert C, Thoeni K, Giacomini Aet al.. Rockfall Hazard Analysis from Discrete Fracture Network Modelling with Finite Persistence Discontinuities. Rock Mechanics and Rock Engineering, 2012, 45(5): 871-884

[21]

Li T Z, Zhang L M, Gong W Pet al.. Cyclic Freezing-Thawing Induced Rock Strength Degradation, Crack Evolution, Heave and Settlement Accounted for by a DEM Model. International Journal of Rock Mechanics and Mining Sciences, 2023, 170: 105498

[22]

Liu J J, Liu H D, Luo J Met al.. Tilting Deformation Analysis and Instability Prediction of Arch-Locked-Segment Landslides Induced by Rainfall. Scientific Reports, 2025, 15: 3449

[23]

Loew S, Gschwind S, Gischig Vet al.. Monitoring and Early Warning of the 2012 Preonzo Catastrophic Rockslope Failure. Landslides, 2017, 14(1): 141-154

[24]

Meng S J, Mu H L, Wang Met al.. Characteristics and Identification Method of Natural and Mine Earthquakes: a Case Study on the Hegang Mining Area. Minerals, 2022, 12(10): 1256

[25]

Parisio F, Tarokh A, Makhnenko Ret al.. Experimental Characterization and Numerical Modelling of Fracture Processes in Granite. International Journal of Solids and Structures, 2019, 163: 102-116

[26]

Qiu J. Killer Landslides: The Lasting Legacy of Nepal’s Quake. Nature, 2016, 532(7600): 428-431

[27]

Sättele M, Krautblatter M, Bründl Met al.. Forecasting Rock Slope Failure: How Reliable and Effective Are Warning Systems?. Landslides, 2016, 13(4): 737-750

[28]

Sirorattanakul K, Larochelle S, Rubino Vet al.. Sliding and Healing of Frictional Interfaces that Appear Stationary. Nature, 2025, 639(8056): 947-953

[29]

Sparks R S J, Baker L, Brown R Jet al.. Dynamical Constraints on Kimberlite Volcanism. Journal of Volcanology and Geothermal Research, 2006, 155(1/2): 18-48

[30]

Strom A L, Korup O. Extremely Large Rockslides and Rock Avalanches in the Tien Shan Mountains, Kyrgyzstan. Landslides, 2006, 3(2): 125-136

[31]

Tian J J, Li T T, Pei X Jet al.. Experimental Study on Multistage Seismic Damage Process of Bedding Rock Slope: A Case Study of the Xinmo Landslide. Journal of Earth Science, 2024, 35(5): 1594-1612

[32]

Walter T R, Haghighi M H, Schneider F Met al.. Complex Hazard Cascade Culminating in the Anak Krakatau Sector Collapse. Nature Communications, 2019, 10: 4339

[33]

Wang X, Fu X D, Wu Ket al.. Analysis of Historical Evolution Characteristics and Collapse Process on July 18, 2023, of a Dangerous Rock Mass at Guanyinyan in Baoxing County, Sichuan Province, China. Landslides, 2024, 21(6): 1367-1383

[34]

Xie M W, He Z, Ying Y Yet al.. A New Method for Early Warning of Dangerous Rock Collapse Based on Tilt and Vibration Parameters. IOP Conference Series: Earth and Environmental Science, 2021, 861(6): 062022

[35]

Yan B Q, Kang H P, Zuo J Pet al.. Study on Damage Anisotropy and Energy Evolution Mechanism of Jointed Rock Mass Based on Energy Dissipation Theory. Bulletin of Engineering Geology and the Environment, 2023, 828294

[36]

Yin Y P, Cheng Y L, Liang J Tet al.. Heavy-Rainfall-Induced Catastrophic Rockslide-Debris Flow at Sanxicun, Dujiangyan, after the Wenchuan Ms 8.0 Earthquake. Landslides, 2016, 1319-23

[37]

Zhang M Y, Han Y, Yang Pet al.. Landslide Displacement Prediction Based on Optimized Empirical Mode Decomposition and Deep Bidirectional Long Short-Term Memory Network. Journal of Mountain Science, 2023, 20(3): 637-656

[38]

Zhang M, McSaveney M, Shao Het al.. The 2009 Jiweishan Rock Avalanche, Wulong, China: Precursor Conditions and Factors Leading to Failure. Engineering Geology, 2018, 233: 225-230

[39]

Zhang Y F, He J Y, Yuan Ket al.. Investigation on Deformation Behavior of Unstable Rock Belt Based on Multi-Source Data Analysis. Bulletin of Engineering Geology and the Environment, 2024, 84(1): 5

[40]

Zhuang Y, Yin Y P, Xing A Get al.. Combined Numerical Investigation of the Yigong Rock Slide-Debris Avalanche and Subsequent Dam-Break Flood Propagation in Tibet, China. Landslides, 2020, 1792217-2229

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China University of Geosciences (Wuhan) and Springer-Verlag GmbH Germany, Part of Springer Nature

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