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Correlating EPB Chengdu Metro Settlement Data with Analysis Predictions in Sandy Cobble Stratum

机译:EPB成都地铁沉降数据与砂卵石地层分析预测的相关性

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Construction in urban areas, e.g., excavation, can generate negative impacts on the foundations of surrounding structures. In this study, based on the surface subsidence measurements due to earth pressure balance shield (EPB shield) tunneling in Chengdu Metro, displacement back-analysis was conducted for a typical cross section using the Peck formula and the stochastic medium theory. The engineering properties of a sandy cobble stratum in the Chengdu area, the settlement trough width (ⅰ), stratum loss rate (η), settlement trough effecting angle (β), and cross section contract value (AR) were analyzed statistically, and the ranges of these parameters under normal working conditions were corrected as: for the stochastic medium theory, tanp=1, AR=16mm (lower limit), and tanp=1, AR=5mm (upper limit); and for the Peck formula, k=0.3, η=0.9% (lower limit), and k=0.6, η=0.3% (upper limit). Comparison of the Peck formula and the stochastic medium theory formula, although composition and principle differ, show that the two methods can both be applied to the prediction of surface subsidence caused by tunnel excavation of sandy cobble formation through statistical experience, parametric inversion, and example verification.
机译:城市地区的建筑,例如开挖,可能会对周围结构的基础产生负面影响。在这项研究中,基于成都地铁的土压平衡盾构(EPB盾构)隧道施工引起的地面沉降测量结果,使用Peck公式和随机介质理论对典型截面进行了位移反分析。对成都地区某砂卵石地层的工程性质,沉降槽宽(ⅰ),地层损失率(η),沉降槽影响角(β)和截面收缩值(AR)进行了统计分析,将这些参数在正常工作条件下的范围校正为:对于随机介质理论,tanp = 1,AR = 16mm(下限),tanp = 1,AR = 5mm(上限);对于派克公式,k = 0.3,η= 0.9%(下限),k = 0.6,η= 0.3%(上限)。通过比较Peck公式和随机介质理论公式,尽管组成和原理不同,但通过统计经验,参数反演和实例,这两种方法均可用于预测砂砾形成隧道开挖引起的地面沉降。确认。

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