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Prototype Model Tests of Soil and Tunnel Interactions under Earthquake Forces

机译:地震作用下土与隧道相互作用的原型试验

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This paper presents test results of a prototype model of soil and metro tunnel interaction on a 1/40 scale in laboratory. The horseshoe-shaped metro tunnel model was mounted on a shaking table to induce earthquake forces for simulating the seismic activities in the Xi'an metro system. The effects of fault lines (in the form of ground fissures) on the soil-tunnel interaction were also investigated. The seismic response data including the acceleration, displacement and dynamic soil pressure between the tunnel and soil, were measured to test the scale model. The test results conclude that 1) the tunnel-soil interaction had significant influence on the bulk dynamic response of the system; 2) the soil pressure and the acceleration changed with the seismic inputs. The soil pressure at the top of the tunnel increased while the pressure at the bottom decreased; 3) the acceleration of the tunnel was greater than that of the adjacent soil; 4) the soil settlements within the vicinity of the fissure were larger as compared to the settlements further away from the fissure.
机译:本文介绍了在实验室中以1/40规模进行的土壤与地铁隧道相互作用原型模型的测试结果。将马蹄形地铁隧道模型安装在振动台上,以诱发地震力,以模拟西安地铁系统中的地震活动。还研究了断层线(以地面裂缝的形式)对土壤-隧道相互作用的影响。测量了地震响应数据,包括隧道与土壤之间的加速度,位移和动态土压力,以测试比例模型。试验结果表明:1)隧道-土体相互作用对系统的整体动力响应有显着影响; 2)土压力和加速度随地震输入而变化。隧道顶部的土压力增加,而底部的土压力减小。 3)隧道的加速度大于邻近土壤的加速度; 4)与远离裂缝的沉降相比,裂缝附近的土壤沉降更大。

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