Experimental research and numerical simulation of the multi-field performance of cemented paste backfill: Review and future perspectives
Cemented paste backfill (CPB) technology is a green mining method used to control underground goaves and tailings ponds. The curing process of CPB in the stope is the product of a thermo-hydro-mechanical-chemical multi-field performance interaction. At present, research on the multi-field performanc...
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Published in | International journal of minerals, metallurgy and materials Vol. 30; no. 2; pp. 193 - 208 |
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Main Authors | , , , , , , |
Format | Journal Article |
Language | English |
Published |
Beijing
University of Science and Technology Beijing
01.02.2023
Springer Nature B.V |
Subjects | |
Online Access | Get full text |
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Abstract | Cemented paste backfill (CPB) technology is a green mining method used to control underground goaves and tailings ponds. The curing process of CPB in the stope is the product of a thermo-hydro-mechanical-chemical multi-field performance interaction. At present, research on the multi-field performance of CPB mainly includes indoor similar simulation experiments,
in-situ
multi-field performance monitoring experiments, multi-field performance coupling model construction of CPB, and numerical simulation of the multi-field performance of CPB. Because it is hard to study the
in-situ
multi-field performance of CPB in the real stope, most current research on
in-situ
multi-field performance adopts the numerical simulation method. By simulating the conditions of CPB in the real stope (e.g., maintenance environment, stope geometry, drainage conditions, and barricade and backfilling rates), the multi-field performance of CPB is further studied. This paper summarizes the mathematical models employed in the numerical simulation and lists the engineering application cases of numerical simulation in the
in-situ
multi-field performance of CPB. Finally, it proposes that the multi-field performance of CPB needs to strengthen the theoretical study of multi-field performance, form the strength design criterion based on the multi-field performance of CPB, perform a full-range numerical simulation of the multi-field performance of CPB, develop a pre-warning technology for the CPB safety of CPB, develop automatic and wireless sensors for the multi-field performance monitoring of CPB, and realize the application and popularization of CPB monitoring technology. |
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AbstractList | Cemented paste backfill (CPB) technology is a green mining method used to control underground goaves and tailings ponds. The curing process of CPB in the stope is the product of a thermo-hydro-mechanical-chemical multi-field performance interaction. At present, research on the multi-field performance of CPB mainly includes indoor similar simulation experiments,
in-situ
multi-field performance monitoring experiments, multi-field performance coupling model construction of CPB, and numerical simulation of the multi-field performance of CPB. Because it is hard to study the
in-situ
multi-field performance of CPB in the real stope, most current research on
in-situ
multi-field performance adopts the numerical simulation method. By simulating the conditions of CPB in the real stope (e.g., maintenance environment, stope geometry, drainage conditions, and barricade and backfilling rates), the multi-field performance of CPB is further studied. This paper summarizes the mathematical models employed in the numerical simulation and lists the engineering application cases of numerical simulation in the
in-situ
multi-field performance of CPB. Finally, it proposes that the multi-field performance of CPB needs to strengthen the theoretical study of multi-field performance, form the strength design criterion based on the multi-field performance of CPB, perform a full-range numerical simulation of the multi-field performance of CPB, develop a pre-warning technology for the CPB safety of CPB, develop automatic and wireless sensors for the multi-field performance monitoring of CPB, and realize the application and popularization of CPB monitoring technology. Cemented paste backfill (CPB) technology is a green mining method used to control underground goaves and tailings ponds. The curing process of CPB in the stope is the product of a thermo-hydro-mechanical-chemical multi-field performance interaction. At present, research on the multi-field performance of CPB mainly includes indoor similar simulation experiments, in-situ multi-field performance monitoring experiments, multi-field performance coupling model construction of CPB, and numerical simulation of the multi-field performance of CPB. Because it is hard to study the in-situ multi-field performance of CPB in the real stope, most current research on in-situ multi-field performance adopts the numerical simulation method. By simulating the conditions of CPB in the real stope (e.g., maintenance environment, stope geometry, drainage conditions, and barricade and backfilling rates), the multi-field performance of CPB is further studied. This paper summarizes the mathematical models employed in the numerical simulation and lists the engineering application cases of numerical simulation in the in-situ multi-field performance of CPB. Finally, it proposes that the multi-field performance of CPB needs to strengthen the theoretical study of multi-field performance, form the strength design criterion based on the multi-field performance of CPB, perform a full-range numerical simulation of the multi-field performance of CPB, develop a pre-warning technology for the CPB safety of CPB, develop automatic and wireless sensors for the multi-field performance monitoring of CPB, and realize the application and popularization of CPB monitoring technology. |
Author | Wang, Zhenqi Cao, Chen Yang, Gangfeng Wang, Liang Wang, Yong Na, Qing Wu, Aixiang |
Author_xml | – sequence: 1 givenname: Yong surname: Wang fullname: Wang, Yong organization: School of Civil and Resource Engineering, University of Science and Technology Beijing, State Key Laboratory for GeoMechanics and Deep Underground Engineering, China University of Mining & Technology (Beijing) – sequence: 2 givenname: Zhenqi surname: Wang fullname: Wang, Zhenqi email: 15101014530@163.com organization: School of Civil and Resource Engineering, University of Science and Technology Beijing – sequence: 3 givenname: Aixiang surname: Wu fullname: Wu, Aixiang email: wuaixiang@126.com organization: School of Civil and Resource Engineering, University of Science and Technology Beijing – sequence: 4 givenname: Liang surname: Wang fullname: Wang, Liang organization: ZHONGGUANCUN Green Mine Industry Alliance – sequence: 5 givenname: Qing surname: Na fullname: Na, Qing organization: School of Civil and Resource Engineering, University of Science and Technology Beijing – sequence: 6 givenname: Chen surname: Cao fullname: Cao, Chen organization: School of Civil and Resource Engineering, University of Science and Technology Beijing – sequence: 7 givenname: Gangfeng surname: Yang fullname: Yang, Gangfeng organization: School of Civil and Resource Engineering, University of Science and Technology Beijing |
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Snippet | Cemented paste backfill (CPB) technology is a green mining method used to control underground goaves and tailings ponds. The curing process of CPB in the stope... |
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SubjectTerms | Backfill Ceramics Characterization and Evaluation of Materials Chemistry and Materials Science Composites Corrosion and Coatings Design criteria Experimental research Glass Invited Review Materials Science Mathematical models Metallic Materials Mine tailings Monitoring Natural Materials Simulation Surfaces and Interfaces Thin Films Tribology |
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Title | Experimental research and numerical simulation of the multi-field performance of cemented paste backfill: Review and future perspectives |
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