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應用激光多普勒測振儀的巖塊體累計損傷評價試驗研究

Experimental study on cumulative damage assessment of rock-block using a laser Doppler vibrometer

  • 摘要: 巖塊體崩塌破壞的突發性使其成為最難預防的地質災害,嚴重威脅人類的生命財產安全.邊坡巖塊體崩塌破壞多是系統不穩定導致的動力破壞,而用振動特征參數來進行安全監測和損傷評價更為有效.本文應用激光多普勒測振技術,通過固有振動頻率對危巖塊體主控結構面的黏結力損傷進行定量分析.通過改進后的極限平衡模型,得出結構面不斷劣化塊體的安全系數由原來的1.17下降到1.04,與實際破壞結果相符.試驗結果表明:固有振動頻率一方面可對危巖塊體累積損傷進行有效識別,另一方面可以為黏結力參數的合理確定提供客觀的數據支持.因此,基于固有振動頻率分析的激光多普勒測振技術可實現邊坡巖塊體的累計損傷評價,并將在未來的工程應用中發揮巨大的作用.

     

    Abstract: Rock-block collapse has been a hot issue in the study of geological hazards for many years, and it is difficult to prevent because of its sudden disintegration, which is a serious threaten to human life and property safety. Rock-block collapse is caused by dynamic failure derived from system instability, so it can be more effective to apply vibration characteristic parameters in damage assessment and early warning. By using a laser Doppler vibrometer, the cohesion damage of control fissure was analyzed by natural vibration frequency in the paper. Based on the modified limit equilibrium model, the safety factor of the block with a deteriorating structural plane was calculated by the frequency, which decreased from 1.17 to 1.04, in accordance with the reality. The results show that the natural vibration frequency can effectively identify the unstable rock cumulative damage and provide objective data for reasonable determination of the cohesion. The laser Doppler vibrometer technology based on natural vibration frequency can satisfy cumulative damage evaluation of unstable rocks. It will play a significant role in engineering applications in the future.

     

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