Development law and growth model of dynamic pore water pressure of tailings under different consolidation conditions

被引:4
作者
Du, Changbo [1 ]
Jiang, Xinqi [1 ]
Wang, Laigui [2 ]
Yi, Fu [3 ]
Niu, Ben [1 ]
机构
[1] Liaoning Tech Univ, Coll Civil Engn, Fuxin, Peoples R China
[2] Liaoning Tech Univ, Sch Mech & Engn, Fuxin, Liaoning, Peoples R China
[3] Liaoning Tech Univ, Coll Architecture & Transportat, Fuxin, Peoples R China
关键词
COLLAPSE CHARACTERISTICS; SOFT CLAY; LIQUEFACTION; EVOLUTION; STRENGTH; SANDS; SILT; SOIL;
D O I
10.1371/journal.pone.0276887
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Tailings dams are in danger of liquefaction during earthquakes. The liquefaction process can be indirectly reflected by the evolution rule of the dynamic pore water pressure. To study the development law of dynamic pore water pressure of tailing sand under different consolidation conditions, the evolution equation of critical dynamic pore water pressure of tailings under isotropic and anisotropic consolidation conditions was derived based on the limit equilibrium theory. Moreover, the development law of dynamic pore water pressure was expounded theoretically. The dynamic triaxial tests of tailing silty sand and tailing silt under different dry densities, consolidation ratios, and confining pressures were performed. The dynamic pore water pressure ratio and vibration ratio curves of tailings under isotropic and anisotropic consolidation were analyzed, and a dynamic pore water pressure growth index model suitable for both isotropic and anisotropic consolidation was derived. The results showed that the critical dynamic pore water pressure was positively correlated with the confining pressure and average particle size of tailings under isotropic consolidation conditions. The tailings have a limit dynamic effective internal friction angle phi(c)(d) under the anisotropic consolidation condition. The evolution law of critical dynamic pore water pressure can be judged according to the dynamic effective internal friction angle of tailing sand phi(d) and phi(c)(d) values. The consolidation ratio significantly affects the dynamic pore pressure growth curve while confining pressure and dry density do not. For different tailing materials, the dynamic pore water pressure ratio is positively correlated with tailing particles. The dynamic pore water pressure growth process of tailing silty sand and tailing silt can be divided into two stages: rapid and stable growths. The development law of two types of tailings can be described by the dynamic pore water pressure growth index model. The research results can provide a theoretical basis for the seismic design of tailings dams in practical engineering.
引用
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页数:22
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