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Force equilibrium-based finite displacement analyses for reinforced slopes: Formulation and verification

机译:基于力平衡的加筋边坡有限位移分析:公式和验证

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Formulation and verification for a force equilibrium-based finite displacement method (FFDM) using test results of reinforced model slopes subjected to increasing pseudo-static seismic forces are reported. The FFDM requires, in addition to force equilibrium for a sliced potential failure mass, a hyperbolic shear stress-displacement constitutive law for the backfill soils, a hyperbolic pull-out force-displacement constitutive law for the reinforcement, and a displacement compatibility requirement for adjacent soil slices. As a result, the mobilized reinforcement force is an analytical output, rather than an empiricism-based input as required in conventional limit equilibrium analyses. Analytical results from the FFDM also indicated that a brittle failure is associated with the lightly reinforced failure surface; a ductile failure is associated with the heavily reinforced failure surface, regardless of the extensibility of reinforcement investigated in the present study. Good agreements between the measured and the computed slope displacements and reinforcement forces in response to increases in pseudo-static seismic forces suggest that the FFDM can be used as an analytical tool for evaluating displacements of reinforced slopes subjected to pseudo-static seismic loads.
机译:报告了基于力平衡的有限位移法(FFDM)的公式化和验证,该方法使用了受到增加的拟静力作用的加筋模型边坡的测试结果。 FFDM除了需要对切入的潜在破坏质量进行力平衡外,还要求对回填土进行双曲剪切应力-位移本构律,对钢筋进行双曲拉出力-位移本构律,以及对相邻土的位移相容性要求。土壤切片。结果,动员的增强力是一种分析输出,而不是常规极限平衡分析所要求的基于经验的输入。 FFDM的分析结果还表明,脆性破坏与轻度增强的破坏表面有关。韧性破坏与高强度破坏的表面有关,而与本研究中研究的增强性无关。响应于拟静地震力的增加,实测和计算的边坡位移与加筋力之间的良好一致性表明,FFDM可用作分析工具,以评估加筋土在拟静地震力作用下的位移。

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