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Study on the mechanical behavior and the model test of segmental linings for the shield tunnel undercrossing the Yellow River

机译:黄河屏蔽隧道节段衬里力学行为及模型试验研究

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The Yellow River tunnel of Lanzhou Metro Line No. 1 is the first underwater tunnel to be going through the Yellow River that is used for urban rail transit. The shield tunnel of the Lanzhou metro undercrossing the Yellow River is built in a high-permeability sandy gravel stratum and bears high water pressure. To research the mechanical behavior of segmental linings for the shield tunnel undercrossing the Yellow River. Sand and gravel used for the model test was compounded using the similar grading method. A device for an external loading test was developed which introduced controllable air pressure between the linings and grouting layer; by regulating the pressure difference, equivalent water pressure in the test can be simulated. Using this device together with a tunnel-ground simulation facility, a model test with a geometric similarity ratio of 1:10 was conducted. The device could reach the point that the water pressure and the earth pressure were controlled separately. The mechanical characteristics of the segmental lining with respect to. different external water pressures and soil pressure were analyzed. At the same time, finite element simulation software ANSYS was applied to the verification of the model test result. As external water pressure increases, a significant increasing trend of thrust force and a gentle decrease trend of bending moment was observed, eccentricity decreases obviously as water pressure rises, changes in water pressure have little effect on the distribution of thrust force and bending moment. As the soil pressure increases, a gentle increase of thrust force and bending moment and eccentricity was observed, and changes in soil pressure have little effect on the distribution of internal forces.
机译:兰州地铁线的黄河隧道1是第一个穿过黄河的水下隧道,用于城市轨道交通。兰州地铁欠交织黄河盾的盾构隧道建在高渗透性砂砾场,耐水压高。研究黄河下屏蔽隧道节段衬里的力学行为。使用类似的分级方法配混用于模型试验的沙子和砾石。开发了一种用于外部加载试验的装置,其在衬里和灌浆层之间引入可控的气压;通过调节压力差,可以模拟试验中的等效水压。使用该设备与隧道地仿真设施一起进行,进行几何相似性比为1:10的模型测试。该装置可以达到水压和接地压力分别控制的点。关于型衬砌相对的机械特性。分析了不同的外部水压和土壤压力。同时,有限元模拟软件ANSYS应用于模型测试结果的验证。随着外部水压的增加,观察到推力的显着增加和弯曲力矩的缓和降低趋势,随着水压升高,偏心率明显降低,水压变化对推力和弯矩的分布几乎没有影响。由于土壤压力增加,观察到推力和弯曲力矩和偏心的温和增加,并且土壤压力变化对内部力的分布几乎没有影响。

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