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Influence of continuous rainfall on surrounding rock-initial support system of shallow decomposed-rock tunnel

机译:连续降雨对浅埋碎石隧道围岩初始支护系统的影响

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A case study is presented to identify the influence of continuous rainfall on surrounding rock-initial support system of shallow decomposed-rock tunnel. From March 21 to April 29, 2006, rainfall with intensities ranging from 10 mm/day to 25 mm/day fell several hours every day, resulting in the collapse of the tunnel crown after the initial support of the surrounding rock in a part of shallow tunneling bench sections of Xiang-an Subsea Tunnel, located in Xiamen, Fujian, China. The applied calculation method of 3D elastic–plastic numerical back analysis based upon FLAC3D is presented. Through site investigation, test and in situ monitoring, the surrounding rock physical-mechanics parameters and support parameters were obtained by the calculation of elastic–plastic back-analysis method presented here. Furthermore, the influence of continuous rainfall on the stability of shallow decomposed-rock tunnel was investigated using the proposed method. The results show that: (1) rainwater infiltration makes the surrounding rock of the shallow decomposed-rock tunnel continuously softened due to the continuous rain, resulting in decreasing surrounding rock stiffness and coefficient of confinement pressure; (2) the negative influence of groundwater must be considered on the initial setting and initial strength of shotcreting of shallow decomposed-rock tunnel under the action of continuous rainfall, to ensure the stabilization of surrounding rock-initial support system; and (3) tunnel stability analysis by the back-analysis method proposed in this study is reasonable and reliable, which could be used as a reference for the estimation of stability of the same type of tunnels and their design.
机译:进行了案例研究,以识别连续降雨对浅层分解岩石隧道围岩初始支护系统的影响。从2006年3月21日至4月29日,强度范围从<10毫米/天到> 25毫米/天的降雨每天下降几小时,导致在部分围岩得到初步支撑后隧道顶坍塌位于中国福建厦门的翔安海底隧道浅层隧道台阶断面图。提出了基于FLAC 3D 的3D弹塑性数值反分析的应用计算方法。通过现场调查,测试和现场监测,通过本文提出的弹塑性反分析方法的计算,获得了围岩的物理力学参数和支护参数。此外,利用该方法研究了连续降雨对浅层分解岩石隧道稳定性的影响。结果表明:(1)由于连续降雨,雨水的渗入使浅层分解岩石隧道的围岩连续软化,导致围岩刚度和围压系数减小。 (2)在连续降雨的作用下,必须考虑地下水对浅层分解岩石隧道喷浆初始设定和初始强度的不利影响,以保证围岩初始支护系统的稳定。 (3)本文提出的反分析方法对隧道的稳定性进行分析是合理,可靠的,可为同类隧道的稳定性及其设计提供参考。

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