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Erschienen in: Geotechnical and Geological Engineering 5/2020

07.05.2020 | Original Paper

Numerical Analysis of the Hydraulic and Mechanical Behavior of In Situ Cemented Paste Backfill

verfasst von: Di Wu, Wentao Hou, Hua Yang, Lijie Guo

Erschienen in: Geotechnical and Geological Engineering | Ausgabe 5/2020

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Abstract

Although the most explicit approach to acknowledge the behavior of in-stope CPB is to utilize monitoring instruments to collect relevant data, such as pore water pressure, total stress and temperature, the in situ monitoring may lead to production delays and rising costs. An alternative solution is using numerical simulation method to understand the behaviors of field CPBs that are placed in stopes. Hence, a numerical model, which considers the binder hydration process, hydraulic (pore water pressure) and mechanical (total stress, uniaxial compressive stress) properties, is developed to analyze the performances of in-stope CPBs. The proposed model is validated by comparing field monitoring data with corresponding results predicted by model simulation. Satisfactory agreement is detected between the modeling results and monitoring data, validating the capability of the developed model in well describing the hydraulic and mechanical behaviors of CPBs placed in field stopes. Understanding the characteristics of field paste backfill matrix is of great importance in improving its ultimate mix design with respect to cost savings. This study also contributes to a better understanding of the hydro-mechanical performance of field CPB structures.

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Literatur
Zurück zum Zitat Abdul-Hussain N, Fall M (2011) Unsaturated hydraulic properties of cemented tailings backfill that contains sodium silicate. Eng Geol 123:288–301CrossRef Abdul-Hussain N, Fall M (2011) Unsaturated hydraulic properties of cemented tailings backfill that contains sodium silicate. Eng Geol 123:288–301CrossRef
Zurück zum Zitat Abdul-Hussain N, Fall M (2012) Thermo-hydro-mechanical behaviour of sodium silicate-cemented paste tailings in column experiments. Tunn Undergr Space Technol 29:85–93CrossRef Abdul-Hussain N, Fall M (2012) Thermo-hydro-mechanical behaviour of sodium silicate-cemented paste tailings in column experiments. Tunn Undergr Space Technol 29:85–93CrossRef
Zurück zum Zitat Cao S, Yilmaz E, Song W (2018) Dynamic response of cement-tailings matrix composites under SHPB compression load. Constr Build Mater 186:892–903CrossRef Cao S, Yilmaz E, Song W (2018) Dynamic response of cement-tailings matrix composites under SHPB compression load. Constr Build Mater 186:892–903CrossRef
Zurück zum Zitat Cayouette J (2003) Optimization of paste backfill plant at Louvicourt mine. CIM Bull 96(1075):51–57 Cayouette J (2003) Optimization of paste backfill plant at Louvicourt mine. CIM Bull 96(1075):51–57
Zurück zum Zitat Cui L, Fall M (2015) A coupled thermo-hydro-mechanical-chemical model for underground cemented tailings backfill. Tunn Undergr Space Technol 50:396–414CrossRef Cui L, Fall M (2015) A coupled thermo-hydro-mechanical-chemical model for underground cemented tailings backfill. Tunn Undergr Space Technol 50:396–414CrossRef
Zurück zum Zitat Doherty JP, Hasan A, Suazo GH, Fourie A (2015) Investigation of some controllable factors that impact the stress state in cemented paste backfill. Can Geotech J 52:1901–1912CrossRef Doherty JP, Hasan A, Suazo GH, Fourie A (2015) Investigation of some controllable factors that impact the stress state in cemented paste backfill. Can Geotech J 52:1901–1912CrossRef
Zurück zum Zitat Fahey M, Helinski M, Fourie A (2011) Development of specimen curing procedures that account for the influence of effective stress during curing on the strength of cemented mine backfill. Geotech Geol Eng 29:709–723CrossRef Fahey M, Helinski M, Fourie A (2011) Development of specimen curing procedures that account for the influence of effective stress during curing on the strength of cemented mine backfill. Geotech Geol Eng 29:709–723CrossRef
Zurück zum Zitat Fall M, Samb SS (2007) Pore structure of cemented tailings materials under natural or accidental thermal loads. Mater Charact 59:598–605CrossRef Fall M, Samb SS (2007) Pore structure of cemented tailings materials under natural or accidental thermal loads. Mater Charact 59:598–605CrossRef
Zurück zum Zitat Fall M, Adrien D, Celestin JC, Pokharel M, Toure M (2009) Saturated hydraulic conductivity of cemented paste backfill. Miner Eng 22:1307–1317CrossRef Fall M, Adrien D, Celestin JC, Pokharel M, Toure M (2009) Saturated hydraulic conductivity of cemented paste backfill. Miner Eng 22:1307–1317CrossRef
Zurück zum Zitat Ghirian A, Fall M (2013) Coupled thermo-hydro-mechanical-chemical behaviour of cemented paste backfill in column experiments. Part I: physical, hydraulic and thermal processes and characteristics. Eng Geol 164:195–207CrossRef Ghirian A, Fall M (2013) Coupled thermo-hydro-mechanical-chemical behaviour of cemented paste backfill in column experiments. Part I: physical, hydraulic and thermal processes and characteristics. Eng Geol 164:195–207CrossRef
Zurück zum Zitat Ghirian A, Fall M (2015) Coupled behavior of cemented paste backfill at early ages. Geotech Geol Eng 33:1141–1166CrossRef Ghirian A, Fall M (2015) Coupled behavior of cemented paste backfill at early ages. Geotech Geol Eng 33:1141–1166CrossRef
Zurück zum Zitat Hansen TC (1986) Physical structure of hardened cement paste: a classical approach. Mater Struct 19(114):423–436CrossRef Hansen TC (1986) Physical structure of hardened cement paste: a classical approach. Mater Struct 19(114):423–436CrossRef
Zurück zum Zitat Hassani F, Fotoohi K, Doucet C (1998) Instrumentation and backfill performance in a narrow vein gold mine. Int J Rock Mech Min Sci 35:392CrossRef Hassani F, Fotoohi K, Doucet C (1998) Instrumentation and backfill performance in a narrow vein gold mine. Int J Rock Mech Min Sci 35:392CrossRef
Zurück zum Zitat Helinski M, Fahey M, Fourie A (2010) Coupled two-dimensional finite element modelling of mine backfilling with cemented tailings. Can Geotech J 47:1187–1200CrossRef Helinski M, Fahey M, Fourie A (2010) Coupled two-dimensional finite element modelling of mine backfilling with cemented tailings. Can Geotech J 47:1187–1200CrossRef
Zurück zum Zitat Helinski M, Fahey M, Fourie A (2011) Behavior of cemented paste backfill in two mine stopes: measurements and modeling. J Geotech Geoenviron Eng 137:171–182CrossRef Helinski M, Fahey M, Fourie A (2011) Behavior of cemented paste backfill in two mine stopes: measurements and modeling. J Geotech Geoenviron Eng 137:171–182CrossRef
Zurück zum Zitat Jiang H, Qi Z, Yilmaz E, Han J, Qiu J, Dong C (2019) Effectiveness of alkali-activated slag as alternative binder on workability and early age compressive strength of cemented paste backfills. Constr Build Mater 218:689–700CrossRef Jiang H, Qi Z, Yilmaz E, Han J, Qiu J, Dong C (2019) Effectiveness of alkali-activated slag as alternative binder on workability and early age compressive strength of cemented paste backfills. Constr Build Mater 218:689–700CrossRef
Zurück zum Zitat Kjellsen KO, Detwiler RJ (1993) Later-age strength prediction by a modified maturity model. ACI Mater J 90(3):220–227 Kjellsen KO, Detwiler RJ (1993) Later-age strength prediction by a modified maturity model. ACI Mater J 90(3):220–227
Zurück zum Zitat Kou Y, Jiang H, Ren L, Yilmaz E, Li Y (2020) Rheological properties of cemented paste backfill with alkali-activated slag. Miner 10:288CrossRef Kou Y, Jiang H, Ren L, Yilmaz E, Li Y (2020) Rheological properties of cemented paste backfill with alkali-activated slag. Miner 10:288CrossRef
Zurück zum Zitat Krus M, Hansen KK, Kiinzel HM (1997) Porosity and liquid absorption of cement paste. Mater Struct 30:394–398CrossRef Krus M, Hansen KK, Kiinzel HM (1997) Porosity and liquid absorption of cement paste. Mater Struct 30:394–398CrossRef
Zurück zum Zitat Mainguy M, Coussy O, Baroghel-Bouny V (2001) Role of air pressure in drying of weakly permeable materials. J Eng Mech 127:582–592CrossRef Mainguy M, Coussy O, Baroghel-Bouny V (2001) Role of air pressure in drying of weakly permeable materials. J Eng Mech 127:582–592CrossRef
Zurück zum Zitat Poole JL, Riding KA, Folliard KJ, Juenger MCG, Schindler AK (2007) Methods for calculating activation energy for Portland cement. ACI Mater J 104(1):303–311 Poole JL, Riding KA, Folliard KJ, Juenger MCG, Schindler AK (2007) Methods for calculating activation energy for Portland cement. ACI Mater J 104(1):303–311
Zurück zum Zitat Poyet S, Charlesa S, Honoré N, L’hostisa V (2011) Assessment of the unsaturated water transport properties of an old concrete: determination of the pore-interaction factor. Cem Concr Res 41:1015–1023CrossRef Poyet S, Charlesa S, Honoré N, L’hostisa V (2011) Assessment of the unsaturated water transport properties of an old concrete: determination of the pore-interaction factor. Cem Concr Res 41:1015–1023CrossRef
Zurück zum Zitat Qi C, Fourie A (2019) Numerical investigation of the stress distribution in backfilled stopes considering creep behaviour of rock mass. Rock Mech Rock Eng 52(9):3353–3371CrossRef Qi C, Fourie A (2019) Numerical investigation of the stress distribution in backfilled stopes considering creep behaviour of rock mass. Rock Mech Rock Eng 52(9):3353–3371CrossRef
Zurück zum Zitat Revell M (2004) Paste—how strong is it? In Proceedings of the 8th international symposium on mining with backfill, Beijing. The Nonferrous Metals Society of China. pp 286–294 Revell M (2004) Paste—how strong is it? In Proceedings of the 8th international symposium on mining with backfill, Beijing. The Nonferrous Metals Society of China. pp 286–294
Zurück zum Zitat Richards LA (1931) Capillary conduction of liquids through porous mediums. Physics 1:318–333CrossRef Richards LA (1931) Capillary conduction of liquids through porous mediums. Physics 1:318–333CrossRef
Zurück zum Zitat Schindler AK, Folliard KJ (2005) Heat of hydration models for cementitious materials. ACI Mater J 102(1):24–33 Schindler AK, Folliard KJ (2005) Heat of hydration models for cementitious materials. ACI Mater J 102(1):24–33
Zurück zum Zitat Taylor SC, Hoff WD, Wilson MA, Green KM (1999) Anomalous water transport properties of Portland and blended cement-based materials. J Mater Sci Lett 18:1925–1927CrossRef Taylor SC, Hoff WD, Wilson MA, Green KM (1999) Anomalous water transport properties of Portland and blended cement-based materials. J Mater Sci Lett 18:1925–1927CrossRef
Zurück zum Zitat Thompson BD, Grabinsky MW, Bawden WF, Counter DB (2009) In-situ measurements of cemented paste backfill in long-hole stopes. In: Proceedings of the 3rd CANUS rock mechanics symposium, Toronto, Ont. Paper 4061 Thompson BD, Grabinsky MW, Bawden WF, Counter DB (2009) In-situ measurements of cemented paste backfill in long-hole stopes. In: Proceedings of the 3rd CANUS rock mechanics symposium, Toronto, Ont. Paper 4061
Zurück zum Zitat Thompson BD, Bawden WF, Grabinsky MW (2012) In situ measurements of cemented paste backfill at the Cayeli Mine. Can Geotech J 49:755–772CrossRef Thompson BD, Bawden WF, Grabinsky MW (2012) In situ measurements of cemented paste backfill at the Cayeli Mine. Can Geotech J 49:755–772CrossRef
Zurück zum Zitat Wu D, Fall M, Cai S (2014) Numerical modelling of thermally and hydraulically coupled processes in hydrating cemented tailings backfill columns. Int J Min Reclam Environ 28:173–199CrossRef Wu D, Fall M, Cai S (2014) Numerical modelling of thermally and hydraulically coupled processes in hydrating cemented tailings backfill columns. Int J Min Reclam Environ 28:173–199CrossRef
Zurück zum Zitat Xue G, Yilmaz E, Song W, Cao S (2018) Compressive strength characteristics of cemented tailings backfill with alkali-activated slag. Appl Sci 8(9):1537CrossRef Xue G, Yilmaz E, Song W, Cao S (2018) Compressive strength characteristics of cemented tailings backfill with alkali-activated slag. Appl Sci 8(9):1537CrossRef
Zurück zum Zitat Yilmaz E (2018) Stope depth effect on field behaviour and performance of cemented paste backfills. Int J Min Reclam Environ 32(4):273–296CrossRef Yilmaz E (2018) Stope depth effect on field behaviour and performance of cemented paste backfills. Int J Min Reclam Environ 32(4):273–296CrossRef
Zurück zum Zitat Yilmaz E, Belem T, Benzaazoua M (2013) Study of physico-chemical and mechanical characteristics of consolidated and unconsolidated cemented paste backfills. Miner Resour Manag 29(1):81–100 Yilmaz E, Belem T, Benzaazoua M (2013) Study of physico-chemical and mechanical characteristics of consolidated and unconsolidated cemented paste backfills. Miner Resour Manag 29(1):81–100
Zurück zum Zitat Yumlu M, Guresci M (2007) Paste backfill bulkhead monitoring—a case study from Inmet’s Cayeli mine, Turkey. In: Proceedings of the 9th international symposium on mining with backfill, Montréal. Paper 28 Yumlu M, Guresci M (2007) Paste backfill bulkhead monitoring—a case study from Inmet’s Cayeli mine, Turkey. In: Proceedings of the 9th international symposium on mining with backfill, Montréal. Paper 28
Zurück zum Zitat Zhang D, Yang W (2011) Theoretical study and tests on relative humidity change of concrete under self-desiccation effect. J Yangtze River Sci Res Inst 28(9):44–47 (in Chinese) Zhang D, Yang W (2011) Theoretical study and tests on relative humidity change of concrete under self-desiccation effect. J Yangtze River Sci Res Inst 28(9):44–47 (in Chinese)
Metadaten
Titel
Numerical Analysis of the Hydraulic and Mechanical Behavior of In Situ Cemented Paste Backfill
verfasst von
Di Wu
Wentao Hou
Hua Yang
Lijie Guo
Publikationsdatum
07.05.2020
Verlag
Springer International Publishing
Erschienen in
Geotechnical and Geological Engineering / Ausgabe 5/2020
Print ISSN: 0960-3182
Elektronische ISSN: 1573-1529
DOI
https://doi.org/10.1007/s10706-020-01333-2

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