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Original Articles

An analytical solution for the nonlinear distribution of effective and total stresses in vertical backfilled stopes

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Pages 237-245 | Received 30 Jul 2008, Accepted 28 May 2010, Published online: 01 Dec 2010

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (3)

Baoxu Yan, Wancheng Zhu, Chen Hou & Kai Guan. (2019) A three-dimensional analytical solution to the arching effect in inclined backfilled stopes. Geomechanics and Geoengineering 14:2, pages 136-147.
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Li Li, Jean-Sébastien Dubé & Zahra Zangeneh-Madar. (2012) Estimation of total and effective stresses in trenches with inclined walls. International Journal of Geotechnical Engineering 6:4, pages 525-538.
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Yufei Li, Nan Yao, Yicheng Ye, Menglong Wu, Guan Chen & Wenchao Guan. (2023) Leaching toxicity and deformation failure characteristics of phosphogypsum-based cemented paste backfill under chemical solution erosion. Environmental Science and Pollution Research.
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Walid El Kamash, Hany El Naggar & Sivakugan Nagaratnam. (2022) Novel adaptation of Marston's stress solution for inclined backfilled stopes. Alexandria Engineering Journal 61:10, pages 8221-8239.
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Yuan Zhao, Guoyan Zhao, Jing Zhou, Xin Cai & Ju Ma. (2022) Mining Stress Evolution Law of Inclined Backfilled Stopes Considering the Brittle-Ductile Transition in Deep Mining. Mathematics 10:8, pages 1308.
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Qiang Ma, Huafei Fu, Henglin Xiao & Chuheng Zhong. (2021) A Simplified Method for Calculating Vertical Earth Pressure on Rigid Load Shedding Culvert Crown Underneath the Embankment. Arabian Journal for Science and Engineering 46:11, pages 11101-11112.
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Jian Zheng & Li Li. (2020) Experimental study of the “short-term” pressures of uncemented paste backfill with different solid contents for barricade design. Journal of Cleaner Production 275, pages 123068.
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Zhanguo Xiu, Shuhong Wang, Yingchun Ji, Feili Wang, Fengyu Ren & Van-Tuan Nguyen. (2020) The effects of dry and wet rock surfaces on shear behavior of the interface between rock and cemented paste backfill. Powder Technology.
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Mutaz Nujaim, Tikou Belem & Albert Giraud. (2020) Experimental Tests on a Small-Scale Model of a Mine Stope to Study the Behavior of Waste Rock Barricades during Backfilling. Minerals 10:11, pages 941.
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Wee Kiet TingAlsidqi Hasan, Fauzan Sahdi, Siti Noor Linda TaibNorsuzailina Mohamed SutanBadhrulhisham Abdul Aziz & Andy Fourie. (2020) A Narrow Wall System to Capture Temperature Stress–Strain Behavior in Paste Backfill. Geotechnical Testing Journal 43:2, pages 20170383.
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Chongchong Qi & Andy Fourie. (2019) Numerical Investigation of the Stress Distribution in Backfilled Stopes Considering Creep Behaviour of Rock Mass. Rock Mechanics and Rock Engineering 52:9, pages 3353-3371.
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El Mustapha Jaouhar & Li Li. (2019) Effect of Drainage and Consolidation on the Pore Water Pressures and Total Stresses within Backfilled Stopes and on Barricades. Advances in Civil Engineering 2019, pages 1-19.
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Minghui Yang & Bo Deng. (2019) Simplified Method for Calculating the Active Earth Pressure on Retaining Walls of Narrow Backfill Width Based on DEM Analysis. Advances in Civil Engineering 2019, pages 1-12.
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Jian Zheng, Li Li & Yuchao Li. (2019) Total and Effective Stresses in Backfilled Stopes during the Fill Placement on a Pervious Base for Barricade Design. Minerals 9:1, pages 38.
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Changjie XuQizhi Chen, Wenjun LuoLuju Liang. (2019) Analytical Solution for Estimating the Stress State in Backfill Considering Patterns of Stress Distribution. International Journal of Geomechanics 19:1.
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Yi Xue, Faning Dang, Zhengzheng Cao, Feng Du, Jie Ren, Xu Chang & Feng Gao. (2018) Deformation, Permeability and Acoustic Emission Characteristics of Coal Masses under Mining-Induced Stress Paths. Energies 11:9, pages 2233.
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Abtin JahanbakhshzadehMichel AubertinLi Li. (2018) Three-dimensional stress state in inclined backfilled stopes obtained from numerical simulations and new closed-form solution. Canadian Geotechnical Journal 55:6, pages 810-828.
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Pengyu Yang, Li Li & Michel Aubertin. (2017) Stress Ratios in Entire Mine Stopes with Cohesionless Backfill: A Numerical Study. Minerals 7:10, pages 201.
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E Yilmaz. (2017) Paste technology integrated solutions for effective management of sulfidic mine tailings. Paste technology integrated solutions for effective management of sulfidic mine tailings.
Mohamed Amine Sobhi & Li Li. (2017) Numerical investigation of the stresses in backfilled stopes overlying a sill mat. Journal of Rock Mechanics and Geotechnical Engineering 9:3, pages 490-501.
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Abtin Jahanbakhshzadeh, Michel Aubertin & Li Li. (2017) A New Analytical Solution for the Stress State in Inclined Backfilled Mine Stopes. Geotechnical and Geological Engineering 35:3, pages 1151-1167.
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Guangsheng LiuLi LiXiaocong YangLijie Guo. (2017) Numerical Analysis of Stress Distribution in Backfilled Stopes Considering Interfaces between the Backfill and Rock Walls. International Journal of Geomechanics 17:2.
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Mohamed Amine SobhiLi LiMichel Aubertin. (2017) Numerical investigation of earth pressure coefficient along central line of backfilled stopes. Canadian Geotechnical Journal 54:1, pages 138-145.
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P. Rajeev, P. R. Sumanasekera & N. Sivakugan. (2016) Average Vertical Stresses in Underground Mine Stopes Filled with Granular Backfills. Geotechnical and Geological Engineering 34:6, pages 2053-2061.
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Alireza Ghirian & Mamadou Fall. (2016) Strength evolution and deformation behaviour of cemented paste backfill at early ages: Effect of curing stress, filling strategy and drainage. International Journal of Mining Science and Technology 26:5, pages 809-817.
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P. Rajeev, P. R. Sumanasekera & N. Sivakugan. (2015) Lateral Variation of the Vertical Stress in Underground Mine Stopes Filled with Granular Backfills. Geotechnical and Geological Engineering 34:2, pages 481-492.
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Yang Pengyu & Li Li. (2015) Investigation of the short-term stress distribution in stopes and drifts backfilled with cemented paste backfill. International Journal of Mining Science and Technology 25:5, pages 721-728.
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Li Li & Michel Aubertin. (2014) Numerical Analysis of the Stress Distribution in Symmetrical Backfilled Trenches with Inclined Walls. Indian Geotechnical Journal 45:3, pages 278-290.
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Li Li & Michel Aubertin. (2014) An improved method to assess the required strength of cemented backfill in underground stopes with an open face. International Journal of Mining Science and Technology 24:4, pages 549-558.
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Venanzio R. Greco. (2014) Analytical solution of seismic pseudo-static active thrust acting on fascia retaining walls. Soil Dynamics and Earthquake Engineering 57, pages 25-36.
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Nawfal El MkadmiMichel AubertinLi Li. (2014) Effect of drainage and sequential filling on the behavior of backfill in mine stopes. Canadian Geotechnical Journal 51:1, pages 1-15.
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Li Li, Jean-Sébastien Dubé & Michel Aubertin. (2013) An Extension of Marston’s Solution for the Stresses in Backfilled Trenches with Inclined Walls. Geotechnical and Geological Engineering 31:4, pages 1027-1039.
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Venanzio Greco. (2013) Active thrust on retaining walls of narrow backfill width. Computers and Geotechnics 50, pages 66-78.
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B.D. ThompsonW.F. BawdenM.W. Grabinsky. (2012) In situ measurements of cemented paste backfill at the Cayeli Mine. Canadian Geotechnical Journal 49:7, pages 755-772.
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Li Li. (2012) Beneficial Experience from Teaching and Education to Research and Development. Creative Education 03:07, pages 148-153.
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