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Acoustic emission generated during the gas sorption-desorption process in coal

机译:煤在气体吸附-解吸过程中产生的声发射

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摘要

An experimental system for monitoring the acoustic signals generated in coal during gas sorption and/or desorption was designed and the acoustic signals were observed under different gas pressures.The experimental results show that signals generated by the coal during gas adsorption are attenuated over time.Also,the signals are not continuous but are impulsive.The intensity of the signals generated during gas desorption is far smaller than that observed during adsorption.The signal seen during desorption remains essentially stable.Cycles of sorption and desorption cause acoustic emission signals that exhibit a memory effect,which depends upon the maximum gas pressure the sample was exposed to in earlier cycles.Lower pressures in subsequent cycles,compared to the maximum adsorption pressure in previous cycles,cause both the energy and impulse frequency to be lower than previously.On the contrary,a gas adsorption pressure that exceeds the maximum pressure seen by the sample during earlier cycles causes both the energy and impulse frequency to be high.
机译:设计了用于监测煤中煤中产生的声学信号的实验系统,并在不同的气体压力下观察声信号。实验结果表明,在气体吸附过程中由煤产生的信号随时间衰减。 ,信号不是连续的,但是是脉冲的。在气体解吸期间产生的信号的强度远小于吸附过程中观察到的信号。在解吸期间看到的信号仍然是稳定的。吸附和解吸的循环导致声音发射信号导致呈现存储器的声发射信号效果取决于最大气体压力,样品在早期的循环中暴露于早期循环。随后的循环中的压力,与先前循环中的最大吸附压力相比,使能量和脉冲频率低于先前。相反,气体吸附压力超过在此期间样品所见的最大压力R循环导致能量和脉冲频率高。

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  • 来源
    《矿业科学技术(英文版)》 |2012年第3期|391-397|共7页
  • 作者单位

    School of Safety Engineering, China University of Mining (ε) Technology, Xuzhou 221008,China;

    School of Safety Engineering, China University of Mining (ε) Technology, Xuzhou 221008,China;

    Mineral and Mining Resource Engineering, Southern Illinois University Carbondale, Carbondale 62901, USA;

    School of Safety Engineering, China University of Mining (ε) Technology, Xuzhou 221008,China;

    School of Safety Engineering, China University of Mining (ε) Technology, Xuzhou 221008,China;

    School of Safety Engineering, China University of Mining (ε) Technology, Xuzhou 221008,China;

  • 收录信息 中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 chi
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