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考慮地震影響的地下連續墻穩定性擬靜力法研究

Research on the stability of diaphragm walls subjected to earthquake using pseudo-static method

  • 摘要: 研究了在地震作用下,地下水位、錨桿極限抗拔力、土體的內摩擦角及墻體嵌入深度對地下連續墻穩定性的影響.土壓力和水壓力以及墻體的慣性力利用"一般楔體地震分析法"計算.墻體的穩定性利用擬靜力法,從抗傾覆安全系數和抗滑移安全系數的角度分析.實例計算結果顯示:隨著地震水平加速度系數的增加,其穩定性逐漸降低;非開挖側地下水位高度、土體內摩擦角、錨桿極限抗拔力以及墻體嵌入深度對地下連續墻的穩定性也有著重要影響;此外,土體的內摩擦角對地下連續墻的抗滑移安全系數的影響比抗傾覆安全系數的影響大,而錨桿極限抗拔力對墻體抗傾覆安全系數的影響相對比較大.

     

    Abstract: The effects of the water table, the ultimate pullout force of the rockbolt, the soil friction angle, and the penetration depth of the diaphragm wall on the stability of the wall under seismic conditions were investigated. The earth pressure, the groundwater pressure and the inertial force of the wall were calculated using "general wedge earthquake analysis". The pseudo-static method was used for analyzing the stability of the wall from the perspective of the safety factors against overturning and sliding. The calculated results show that the stability of the diaphragm wall decreases as the horizontal seismic acceleration coefficient increases;the water table on the non-excavation side, the soil friction angle, the ultimate pullout force of the rockbolt, and the penetration depth of the diaphragm wall play an important role on the stability;moreover, the soil friction angle has greater effect on the safety factor against sliding than on the safety factor against overturning, but the ultimate pullout force of the rockbolt has greater effect on the safety factor against overturning than on the safety factor against sliding.

     

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