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首页> 外文期刊>Canadian Geotechnical Journal >Scaled physical and numerical modelling of static soil pressures on box culverts
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Scaled physical and numerical modelling of static soil pressures on box culverts

机译:箱涵静态土压力的比例物理和数值模拟

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The response of buried box culverts is a complex soil-structure interaction problem, where the relative stiffness between the soil and structure is a critical factor. In addition, soil arching is an important aspect of the soil-culvert interaction problem. A series of static scaled physical model centrifuge tests were performed to investigate soil-culvert interaction. Two different box culvert thicknesses and Nevada sand specimens with different relative densities were used to explore the interaction between the sand and box culverts under different conditions. The static loading consisted of the self-weight from the soil body. The responses of the box culvert were recorded for all loading conditions. The results were evaluated in terms of bending moment, soil pressure, and soil-culvert interaction factors. Soil pressures were evaluated using different experimental methods, which provided comparable results. The soil pressure observed on the culvert top slab showed parabolic distribution, i.e., higher values at the edges and lower at the centre than the theoretical vertical soil (overburden) pressure. The horizontal soil pressure on the side wall increased with depth. The soil-culvert interaction factors decreased at the centre and increased at the edges of the top slab, as the thickness and relative stiffness of the culvert decreased.
机译:埋入式箱涵的响应是一个复杂的土-结构相互作用问题,其中土与结构之间的相对刚度是一个关键因素。此外,土拱效应是土涵相互作用问题的重要方面。进行了一系列静态比例物理模型离心机试验,以研究土涵相互作用。两种不同的箱涵厚度和内华达沙标本具有不同的相对密度,以探讨在不同条件下沙土与箱涵之间的相互作用。静态载荷包括土壤主体的自重。记录箱形涵洞在所有荷载条件下的响应。根据弯矩,土压力和土涵相互作用因素对结果进行了评估。使用不同的实验方法对土壤压力进行了评估,结果可比。在涵洞顶板上观察到的土壤压力显示出抛物线分布,即比理论垂直土壤(覆土)压力高,而边缘低。侧壁上的水平土壤压力随深度增加。当涵洞的厚度和相对刚度减小时,土涵的相互作用因子在中心处减小,在顶板的边缘处增加。

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