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Performance of abutment-backfill system under thermal variations in integral bridges built on clay

机译:黏土上整体桥在热变化下的基台回填系统性能

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In this paper, performance of the abutment-backfill system under thermal variations is studied. For this purpose, a structural model of a typical integral bridge is built considering the nonlinear behavior of the piles and soil-bridge interaction effects. Static pushover analyses of the bridge are conducted to study the effect of various geometric, structural and geotechnical parameters on the performance of the abutment-backfill system under uniform positive thermal variations. It is observed that the intensity and distribution of backfill pressure is affected by the height of the abutment. Furthermore, the internal forces in the abutments are found to be functions of the thermal-induced displacements of the bridge deck, properties of the pile and stiffness of the foundation clay. Using the pushover analyses results, analytical equations are derived to determine the maximum forces in the abutments and maximum length of integral bridges based on the strength of the abutments. Integral bridges with abutment heights less than 4 m, non-compacted backfill and piles oriented to bend about weak axis are strongly recommended to enhance the maximum length limits of integral bridges as determined by the flexural capacity of the abutments.
机译:在本文中,研究了基台回填系统在热变化下的性能。为此,考虑桩的非线性特性和土桥相互作用,建立了典型的整体式桥梁的结构模型。进行桥梁的静力推覆分析,以研究在均匀正热变化下,各种几何,结构和岩土参数对桥台回填系统性能的影响。可以看到,回填压力的强度和分布受基台高度的影响。此外,发现桥台中的内力是桥面的热致位移,桩的特性和基础粘土的刚度的函数。使用推覆分析结果,可以得出分析方程式,以便根据基台的强度确定基台中的最大力和整体桥的最大长度。强烈建议使用基台高度小于4 m的整体桥,未压实的回填和定向为绕弱轴弯曲的桩,以增强由基台的抗弯能力决定的整体桥的最大长度限制。

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