岩土力学
巖土力學
암토역학
Rock and Soil Mechanics
2015年
11期
3071-3076,3192
,共7页
贾宝新%陈扬%潘一山%姜明%赵培%王凯兴
賈寶新%陳颺%潘一山%薑明%趙培%王凱興
가보신%진양%반일산%강명%조배%왕개흥
冲击载荷%块系岩体%摆型波%传播特性
遲擊載荷%塊繫巖體%襬型波%傳播特性
충격재하%괴계암체%파형파%전파특성
shock load%block rock mass%pendulum-type wave%propagation characteristics
摆型波现象是深部开采中块系岩体固有的动力学特征之一。为研究深部块系岩体摆型波传播规律,采用理论分析与室内试验相结合的方法,研究了在冲击载荷作用下摆型波的传播特性。该试验采用12块花岗岩和橡胶夹层材料建立了模型,采用 TST5915动态数据采集系统进行信号监测,分别获得了在均质夹层和部分夹层介质增厚情况下的加速度响应曲线,并运用摆型波动力模型理论进行分析。结果表明,摆型波在块体间传播过程中,频率大小不受能量大小的影响,而能量大小决定了波的衰减时间。当块体间介质黏性增加时,加速度幅值均有所下降,但对加速度衰减周期没有影响,而影响加速度衰减的主要因素是冲击载荷的能量大小。此次试验研究将为今后进一步研究摆型波动力传播特性提供一定的基础。
襬型波現象是深部開採中塊繫巖體固有的動力學特徵之一。為研究深部塊繫巖體襬型波傳播規律,採用理論分析與室內試驗相結閤的方法,研究瞭在遲擊載荷作用下襬型波的傳播特性。該試驗採用12塊花崗巖和橡膠夾層材料建立瞭模型,採用 TST5915動態數據採集繫統進行信號鑑測,分彆穫得瞭在均質夾層和部分夾層介質增厚情況下的加速度響應麯線,併運用襬型波動力模型理論進行分析。結果錶明,襬型波在塊體間傳播過程中,頻率大小不受能量大小的影響,而能量大小決定瞭波的衰減時間。噹塊體間介質黏性增加時,加速度幅值均有所下降,但對加速度衰減週期沒有影響,而影響加速度衰減的主要因素是遲擊載荷的能量大小。此次試驗研究將為今後進一步研究襬型波動力傳播特性提供一定的基礎。
파형파현상시심부개채중괴계암체고유적동역학특정지일。위연구심부괴계암체파형파전파규률,채용이론분석여실내시험상결합적방법,연구료재충격재하작용하파형파적전파특성。해시험채용12괴화강암화상효협층재료건립료모형,채용 TST5915동태수거채집계통진행신호감측,분별획득료재균질협층화부분협층개질증후정황하적가속도향응곡선,병운용파형파동력모형이론진행분석。결과표명,파형파재괴체간전파과정중,빈솔대소불수능량대소적영향,이능량대소결정료파적쇠감시간。당괴체간개질점성증가시,가속도폭치균유소하강,단대가속도쇠감주기몰유영향,이영향가속도쇠감적주요인소시충격재하적능량대소。차차시험연구장위금후진일보연구파형파동력전파특성제공일정적기출。
The pendulum-type wave is one of the block rock mass inherent dynamic characteristics in deep mining. To study the propagation regularity of deep block rock mass pendulum-type wave, a method combined theory analysis with laboratory experiments is adopted;the pendulum-type wave propagation characteristics under shock load are discussed. In the experiment, twelve pieces of granite and rubber interlayer material are used to establish the experimental model, and the TST5915 dynamic data acquisition system is used for monitoring signals. Acceleration response curves are obtained in homogeneous interlayer and part of thickened interlayer medium, and pendulum-type wave dynamic model theory is also used for analysis. The results show that in the transmission process of pendulum-type wave between the blocks, the frequency is not affected by the energy, but the energy determines the attenuation time of the wave. When the viscosity increases in the block medium, the acceleration amplitudes are declined, but it has no effect on the acceleration attenuation cycle, and the main factors influencing the acceleration attenuation is the energy magnitude of the shock load. The experimental research will provide certain basis for studying dynamic transmission characteristics of pendulum-type wave in the future.