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Effects of overconsolidation ratio on tunnel responses due to overlying basement excavation in clay

机译:超固结率对黏土上覆地下室开挖引起的隧道响应的影响

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摘要

Due to shortage of usable spaces in congested urban cities, deep basements for buildings are frequently constructed above or at a side of existing tunnels. Although much attention was paid to the basement-tunnel interaction, previous studies mainly simplified it as a plane strain problem and focused on excavation-induced tunnel responses in sand. In this study, three-dimensional centrifuge tests were conducted to investigate long-term tunnel responses due to overlying basement excavation in lightly (overconsolidation ratio (OCR) = 1.7) and heavily overconsolidated (OCR = 6.0) kaolin clays. Immediately upon completion of basement excavation, the measured heave and tensile strain of tunnel in heavily overconsolidated clay are up to 25% smaller than those in lightly overconsolidated clay. This is because a smaller void ratio in a stiffer clay possesses large soil stiffness around tunnel lining. Due to dissipation of excess negative pore water pressure, the maximum heave and tensile strain of tunnel increase by up to 210% and 50%, respectively, in heavily and lightly overconsolidated clays. To ensure the safety and serviceability of existing tunnel, special attention should be paid to long-term rather than short-term tunnel responses.
机译:由于拥挤的城市中可用空间的短缺,经常在现有隧道的上方或侧面建造用于建筑物的深层地下室。尽管人们对地下室-隧道的相互作用给予了极大的关注,但先前的研究主要将其简化为平面应变问题,并着眼于开挖引起的砂土隧道响应。在这项研究中,进行了三维离心试验,以研究轻度(超固结比(OCR)= 1.7)和重度超固结(OCR = 6.0)高岭土引起的长期隧道响应。地下室开挖完成后,在严重超固结的黏土中,测得的隧道的隆起和拉伸应变比在轻微固结的黏土中测得的隧道小。这是因为较硬的粘土中较小的孔隙率在隧道衬砌周围具有较大的土壤刚度。由于消散了过量的负孔隙水压力,在重固结和轻固结的粘土中,隧道的最大起伏和拉伸应变分别增加了210%和50%。为了确保现有隧道的安全性和可维护性,应特别注意长期而不是短期的隧道响应。

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