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Published in: Bulletin of Engineering Geology and the Environment 4/2019

02-04-2018 | Original Paper

V shaped gully method for controlling rockfall on high-steep slopes in China

Authors: Zhu Chun, Tao Zhigang, Yang Sen, Zhao Shuai

Published in: Bulletin of Engineering Geology and the Environment | Issue 4/2019

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Abstract

Large, deep open-pit mining projects lead to rockfall, which becomes an engineering hazard second only to slope stability. The V shaped gully (V-gully) method introduced here was shown to have a significant effect on preventing rockfall through reduction of kinetic energy and rainfall discharge. The method, where a gravel cushion was laid on the V-gully surface, was applied in a typical open-pit mine. A drain dyke should be set at the bottom of the V-gully to discharge rainfall effectively. The slope stability analysis under different drainage rates was calculated by Modified Sarma (MSARMA) software. Slope stability, engineering activities and weathering condition of slope were taken into account to identify the rockfall prone areas. RocFall numerical software was used to calculate the effect of various angle V-gullies on the movements of various rockfall. A striking reduction in kinetic energy of rockfall was achieved, and the effects of V-gully protective measures were studied. Then, a system for controlling rockfall effectively and economically was designed for a particular slope according to the field situation. The effectiveness and reasonableness of design were evaluated through numerical simulations and field testing. This paper provides a theoretical and practical basis for a novel rockfall prevention technique on the high-steep slopes in similar engineering projects.

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Literature
go back to reference Agliardi F, Crosta G (2003) High resolution three-dimensional numerical modelling of rockfalls. Int J Rock Mech Min Sci 40(1):455–471CrossRef Agliardi F, Crosta G (2003) High resolution three-dimensional numerical modelling of rockfalls. Int J Rock Mech Min Sci 40(1):455–471CrossRef
go back to reference Alejano LR, Pons B, Bastante FG, Alonso E, Stockhausen HW (2007) Slope geometry design as a means for controlling rockfalls in quarries. Int J Rock Mech Min Sci 44(6):903–921CrossRef Alejano LR, Pons B, Bastante FG, Alonso E, Stockhausen HW (2007) Slope geometry design as a means for controlling rockfalls in quarries. Int J Rock Mech Min Sci 44(6):903–921CrossRef
go back to reference Azzoni A, de Freitas M (1995) Experimentally gained parameters, decisive for rock fall analysis. Rock Mech Rock Eng 28(2):111–124CrossRef Azzoni A, de Freitas M (1995) Experimentally gained parameters, decisive for rock fall analysis. Rock Mech Rock Eng 28(2):111–124CrossRef
go back to reference Azzoni A, La Barbera G, Zaninetti A (1995) Analysis and prediction of rockfalls using a mathematical model. Int J Rock Mech Min Sci 32(1):709–724CrossRef Azzoni A, La Barbera G, Zaninetti A (1995) Analysis and prediction of rockfalls using a mathematical model. Int J Rock Mech Min Sci 32(1):709–724CrossRef
go back to reference Bozzolo D, Pamini R (1986) Simulation of rock falls down a valley side. Acta Mech 63:113–130CrossRef Bozzolo D, Pamini R (1986) Simulation of rock falls down a valley side. Acta Mech 63:113–130CrossRef
go back to reference Chau KT, Wong RHC, Wu JJ (2002) Coefficient of restitution and rotational motions of rockfall impacts. Int J Rock Mech Min Sci 39:69–77CrossRef Chau KT, Wong RHC, Wu JJ (2002) Coefficient of restitution and rotational motions of rockfall impacts. Int J Rock Mech Min Sci 39:69–77CrossRef
go back to reference Descoeudres F, Zimmermann T (1987) Three-dimensional dynamic calculation of rockfalls. In: Proceedings of the 6th International Congress on Rock Mechanics. Montreal: Balkema; 337–42 Descoeudres F, Zimmermann T (1987) Three-dimensional dynamic calculation of rockfalls. In: Proceedings of the 6th International Congress on Rock Mechanics. Montreal: Balkema; 337–42
go back to reference Giani GP, Giacomini A, Migliazza M, Segalini A (2004) Experimental and theoretical studies to improve rock fall analysis and protection work design. Rock Mech Rock Eng 37(5):369–389CrossRef Giani GP, Giacomini A, Migliazza M, Segalini A (2004) Experimental and theoretical studies to improve rock fall analysis and protection work design. Rock Mech Rock Eng 37(5):369–389CrossRef
go back to reference Guzzetti F, Reichenbach P, Wieczorek GF (2003) Rockfall hazard and risk assessment in the Yosemite Valley, California. USA Nat Hazards Earth Syst Sci 3(1):491–503CrossRef Guzzetti F, Reichenbach P, Wieczorek GF (2003) Rockfall hazard and risk assessment in the Yosemite Valley, California. USA Nat Hazards Earth Syst Sci 3(1):491–503CrossRef
go back to reference Huang R, Weihua L (2009) Platform resistent test on rolling rock blocks[J]. Chin J Rock Mech Eng 28(3):516–524 in Chinese Huang R, Weihua L (2009) Platform resistent test on rolling rock blocks[J]. Chin J Rock Mech Eng 28(3):516–524 in Chinese
go back to reference Koleini M, Van Rooy JL (2011) Falling rock hazard index: a case study from the Marun dam and power plant, South-Western Iran. Bull Eng Geol Environ 70(2):279–290CrossRef Koleini M, Van Rooy JL (2011) Falling rock hazard index: a case study from the Marun dam and power plant, South-Western Iran. Bull Eng Geol Environ 70(2):279–290CrossRef
go back to reference Notaro S, Paletto A (2012) The economic valuation of natural hazards in mountain forests: an approach based on the replacement cost method. J For Econ 18(4):318–328 Notaro S, Paletto A (2012) The economic valuation of natural hazards in mountain forests: an approach based on the replacement cost method. J For Econ 18(4):318–328
go back to reference Pfeiffer T, Bowen T (1989) Computer simulation of rockfalls. Bull Assoc Eng Geol 26(1):135–146 Pfeiffer T, Bowen T (1989) Computer simulation of rockfalls. Bull Assoc Eng Geol 26(1):135–146
go back to reference Piteau DR, Clayton R (1976) Description of the slope model computer rock fall program for determining rock fall distribution. DR Piteau and Associates Piteau DR, Clayton R (1976) Description of the slope model computer rock fall program for determining rock fall distribution. DR Piteau and Associates
go back to reference RocScience Inc (2000) RocFall 4.0. Software for risk analysis of falling rocks on steep slopes[R]. RocScience Inc., Toronto RocScience Inc (2000) RocFall 4.0. Software for risk analysis of falling rocks on steep slopes[R]. RocScience Inc., Toronto
go back to reference Sadagah B (2015) Back analysis of a rockfall event and remedial measures along part of a mountainous road, western Saudi Arabia. Int J Innov Sci Mod Eng (IJISME) 3(2):2319–6386 Sadagah B (2015) Back analysis of a rockfall event and remedial measures along part of a mountainous road, western Saudi Arabia. Int J Innov Sci Mod Eng (IJISME) 3(2):2319–6386
go back to reference Saroglou H, Marinos V, Marinos P, Tsiambaos G (2012) Rockfall hazard and risk assessment: an example from a high promontory at the historical site of Monemvasia. Greece Nat Hazards Earth Syst Sci 12(6):1823–1836CrossRef Saroglou H, Marinos V, Marinos P, Tsiambaos G (2012) Rockfall hazard and risk assessment: an example from a high promontory at the historical site of Monemvasia. Greece Nat Hazards Earth Syst Sci 12(6):1823–1836CrossRef
go back to reference Scioldo G (1991) Rotomap: analisi statistica del rotolamento dei massi. Patron, Guida Informatica Ambientale Scioldo G (1991) Rotomap: analisi statistica del rotolamento dei massi. Patron, Guida Informatica Ambientale
go back to reference Stoffel M, Wehrli A, Kühne R, Dorren LKA, Perret S, Kienholz H (2006) Assessing the protective effect of mountain forests against rockfall using a 3D simulation model. For Ecol Manag 225(1–3):113–122CrossRef Stoffel M, Wehrli A, Kühne R, Dorren LKA, Perret S, Kienholz H (2006) Assessing the protective effect of mountain forests against rockfall using a 3D simulation model. For Ecol Manag 225(1–3):113–122CrossRef
go back to reference Tao Z, Li Haipeng, Sun Guanglin, et. al. Development of monitoring and early warning system for landslides based on constant resistance and large deformation anchor cable and its application. Chin J Rock Soil Mech, 2015, 36(10): 3032–3040.(in Chinese) Tao Z, Li Haipeng, Sun Guanglin, et. al. Development of monitoring and early warning system for landslides based on constant resistance and large deformation anchor cable and its application. Chin J Rock Soil Mech, 2015, 36(10): 3032–3040.(in Chinese)
go back to reference Topal T, Akın M, Özden AU (2006) Analysis and evaluation of rockfall hazard around Afyon Castle. Turkey Environ Geol 53(1):191–200CrossRef Topal T, Akın M, Özden AU (2006) Analysis and evaluation of rockfall hazard around Afyon Castle. Turkey Environ Geol 53(1):191–200CrossRef
go back to reference Wehrli A, Zingg A, Bugmann H, Huth A (2005) Using a forest patch model to predict the dynamics of stand structure in Swiss mountain forests. For Ecol Manag 205(1):149–167CrossRef Wehrli A, Zingg A, Bugmann H, Huth A (2005) Using a forest patch model to predict the dynamics of stand structure in Swiss mountain forests. For Ecol Manag 205(1):149–167CrossRef
go back to reference Wehrli A, Dorren LK, Berger F, Zingg A et al (2006) Modelling long-term effects of forest dynamics on the protective effect against rockfall. For Snow Landsc Res 80(1):57–76 Wehrli A, Dorren LK, Berger F, Zingg A et al (2006) Modelling long-term effects of forest dynamics on the protective effect against rockfall. For Snow Landsc Res 80(1):57–76
go back to reference Yang Y, Yingqing Z, Ruiqi J et al (2005) Theory and practice of slope geological disaster flexible protection [M]. Science Press, Beijing (in Chinese) Yang Y, Yingqing Z, Ruiqi J et al (2005) Theory and practice of slope geological disaster flexible protection [M]. Science Press, Beijing (in Chinese)
go back to reference Yang X, Dinggui H, Zhenli H et al (2016) Research on correlations between slope stability and rainfall of high steep slope on Nanfen open-pit iron ore. Chin J Rock Mech Eng 35(Supp.1):3232–3240 in Chinese Yang X, Dinggui H, Zhenli H et al (2016) Research on correlations between slope stability and rainfall of high steep slope on Nanfen open-pit iron ore. Chin J Rock Mech Eng 35(Supp.1):3232–3240 in Chinese
go back to reference Ye S, Hongkai C, Hongmei T (2010) Computing method of Rockfall impact force[J]. Chin Railway Sci 31(6):57–61 in Chinese Ye S, Hongkai C, Hongmei T (2010) Computing method of Rockfall impact force[J]. Chin Railway Sci 31(6):57–61 in Chinese
go back to reference Yilmaz I, Yildirim M, Keskin I (2008) A method for mapping the spatial distribution of RockFall computer program analyses results using ArcGIS software. Bull Eng Geol Environ 67(4):547–554CrossRef Yilmaz I, Yildirim M, Keskin I (2008) A method for mapping the spatial distribution of RockFall computer program analyses results using ArcGIS software. Bull Eng Geol Environ 67(4):547–554CrossRef
Metadata
Title
V shaped gully method for controlling rockfall on high-steep slopes in China
Authors
Zhu Chun
Tao Zhigang
Yang Sen
Zhao Shuai
Publication date
02-04-2018
Publisher
Springer Berlin Heidelberg
Published in
Bulletin of Engineering Geology and the Environment / Issue 4/2019
Print ISSN: 1435-9529
Electronic ISSN: 1435-9537
DOI
https://doi.org/10.1007/s10064-018-1269-7

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