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高应力动力扰动作用下抽水蓄能矿井泥质砂岩的动态响应特性

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废弃矿井抽水蓄能开发利用已逐渐成为储能技术开发与废弃矿井资源再利用的研究热点。井下地下厂房和蓄水空间处于高应力、循环水体反复抽蓄的复杂动态应力环境,这会导致围岩体结构面弱化、整体强度降低。废弃矿井地下围岩体动态响应特性是废弃矿井抽水蓄能电站建设与运行的重要基础。为研究高应力、动力扰动作用下抽水蓄能矿井围岩体动态响应特性,采用自主研制的蠕变扰动动态冲击加载系统对泥质砂岩开展不同应力水平和扰动振幅下的动力扰动加载试验。研究结果表明,应力水平与扰动振幅只有达到一定阈值后才导致泥质砂岩发生破坏,且应力水平对泥质砂岩破坏的影响更为显著,泥质砂岩应力-应变曲线中的滞后环呈现出独特的"稀疏-密集-稀疏"模式。随着应力水平和扰动振幅的增加,泥质砂岩的宏观破坏主要呈锥形,片状剥落明显,破坏完整性较差。基于声发射能量和振铃次数随时间的变化,破坏过程中的声发射活动分为三个阶段,即减弱期、平滑期和激增期,分别对应应力-应变曲线中压实阶段、弹性上升阶段和峰后破坏阶段。本研究结果对废弃矿井抽水蓄能电站建设和运行期内的围岩体稳定性分析有一定参考价值。
Dynamic response characteristics of muddy sandstone in pumped storage mine under action of high-stress dynamic disturbance
During the construction and operation of the abandoned mine pumped storage power station,the underground space surrounding rock body faces the complex stress environment under the action of mining disturbance,frequent pumping,water storage and other dynamic disturbances.The stability of the abandoned mine surrounding rock body is the basis for guaranteeing the safety and effectiveness of water storage in the underground space of the abandoned mine.By considering the two main factors of different stress levels and disturbance amplitudes,the mechanical properties,damage characteristics and acoustic emission characteristics of the abandoned mine perimeter rock body under dynamic disturbance were investigated using a creep-disturbed dynamic impact loading system.The experimental results show that:1)The stress level is considered to be the major contributing factor of the failure of muddy sandstone,followed by the amplitude of the disturbances;2)The time required for the destruction of muddy sandstone decreases with the increase of amplitude.When the stress level is 80%,the sandstone specimens have a decreasing number of cycles as the disturbance amplitude increases.The disturbance amplitude is sequentially increased from 4 MPa to 5,6,7,and 8 MPa,the number of cycles required for specimen destruction decreases significantly by 96.71%,99.13%,99.60%,and 99.93%,respectively;3)Disturbance amplitude and stress level have a significant effect on muddy sandstone damage and damage occurs only after a certain threshold is reached.With the increase of stress level and disturbance amplitude,the macroscopic damage of muddy sandstone is mainly conical,with obvious flake spalling and poor damage integrity;4)According to the time-dependent changes in AE energy and ringing counts,the acoustic emission activity during the failure process could be divided into three phases,namely,weakening period,smooth period,and surge period,corresponding to the compaction phase,elastic rise phase and post-peak damage phase.The research results are of reference significance for the damage evolution analysis of muddy sandstone under dynamic disturbance and the safety and stability of abandoned mine perimeter rock body.

abandoned minepumped storagedynamic disturbancemuddy sandstoneacoustic emission

梁彬、王冬、栾恒杰、董玲、刘建康、王长盛

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State Key Laboratory of Mining Disaster Prevention and Control Co-founded By Shandong Province and the Ministry of Science and Technology,Shandong University of Science and Technology,Qingdao,266590,China

废弃矿井 抽水蓄能 动力扰动 泥质砂岩 声发射

National Natural Science Foundation of ChinaNatural Science Foundation of Shandong Province,ChinaOpen Project of State Key Laboratory for Geomechanics and Deep Underground Engineering in China University of Mining& Techno

52204101ZR2022QE 137SKLGDUEK2023

2024

中南大学学报(英文版)
中南大学

中南大学学报(英文版)

CSTPCDEI
影响因子:0.47
ISSN:2095-2899
年,卷(期):2024.31(8)