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Investigation of geometric effects on three-dimensional tunnel deformation mechanisms due to basement excavation

机译:地下室开挖对三维隧道变形机理的几何影响研究

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摘要

Numerical parametric study is conducted to investigate geometric effects of basement excavation on existing tunnels. Centrifuge test results are adopted to validate numerical models. If basements with a same excavation area are constructed above a tunnel, the most preferable excavation geometry is short-rectangular basement, followed by cylindrical, square, and long-rectangular basements. When excavation diameter of cylindrical basement reaches eight times of the final excavation depth, three-dimensional effects of basement-tunnel interaction at basement centerline are negligible. If three-dimensional effects in a small basement are ignored, the heave and transverse tensile strain of tunnels are overestimated by up to 160% and 50%, respectively.
机译:进行数值参数研究以研究地下隧道对现有隧道的几何影响。采用离心机测试结果验证数值模型。如果在隧道上方建造具有相同开挖面积的地下室,则最优选的开挖几何形状是短矩形地下室,其次是圆柱,方形和长矩形地下室。当圆柱地下室的开挖直径达到最终开挖深度的八倍时,地下室-隧道相互作用在地下室中心线的三维效应可忽略不计。如果忽略小地下室中的三维效应,则隧道的升沉和横向拉伸应变分别高估了160%和50%。

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