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首页> 外文期刊>Acta Geotechnica: An International journal for Geoengineering >Face stability analysis of shield-driven tunnels shallowly buried in dry sand using 1-g large-scale model tests
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Face stability analysis of shield-driven tunnels shallowly buried in dry sand using 1-g large-scale model tests

机译:用1G大型模型试验浅埋在干砂中浅埋遮蔽隧道的稳定性分析

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This paper investigates the face stability of shield-driven tunnels shallowly buried in dry sand using 1-g large-scale model tests. A half-circular tunnel model with a rigid front face was designed and tested. The ground movement was mobilized by pulling the tunnel face backwards at different speeds. The support pressure at tunnel face, settlement at ground surface, and internal movement of soil body were measured by load cells, linear variable differential transducers, and a camera, respectively, and the progress of face failure was observed through a transparent lateral wall of model tank. The tests show that, as the tunnel face moves backwards, the support pressure at the tunnel face drops sharply initially, then rebounds slightly, and tends to be stabilized at the end. Similarly, the ground surface settlement shows a three-stage variation pattern. Using the particle image velocimetry technique, the particle movement, shear strain, and vortex location of soil are analyzed. The variation of support pressure and ground surface settlement related to the internal movement of soil particles is discussed. The impact of the tunnel face moving speed on the face stability is discussed. As the tunnel face moves relatively fast, soil failure originates from a height above tunnel invert and an analytical model is developed to analyze such failure.
机译:本文研究了屏蔽驱动隧道的面部稳定性,使用1g大规模模型试验浅埋到干砂中的浅埋。设计并测试了具有刚性前面的半圆形隧道模型。通过以不同的速度向后拉隧道面部来动员地面运动。通过称重传感器,线性可变差分传感器和相机测量隧道面,地面沉降和土壤体内的内部运动的支撑压力,并且通过模型的透明侧壁观察到面部故障的进展坦克。测试表明,随着隧道面向后移动,隧道面的支撑压力最初急剧下降,然后略微呈篮板,并且趋于在末端稳定。类似地,地面沉降示出了三级变化图案。分析了使用粒子图像测速技术,分析颗粒运动,剪切应变和土壤的涡旋位置。讨论了与土壤颗粒内部运动相关的支撑压力和地面沉降的变化。讨论了隧道面移动速度对面部稳定性的影响。随着隧道面相对快速地移动,土壤失效源自隧道反转的高度,并且开发了分析模型以分析这种失效。

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