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Effect of interface characteristics on the influence coefficients of an embedded circular footing under horizontal and moment loading

机译:水平和弯矩荷载作用下界面特性对埋入式圆形基础影响系数的影响

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摘要

By means of a semi-analytical FE approach an embedded circular footing under mono-tonic horizontal and moment loading is studied. In a non-homogeneous soil whose shear modulus is characterized by a power law variation with depth, horizontal, rocking and coupled modes of displacement, expressed in terms of influence factors are thoroughly examined. The exponent a that controls the shape of the stiffness variation with depth is termed shear modulus factor. Surface influence coefficients are considered for the situations where the interface between the soil and the footing is either perfectly rough or perfectly smooth. First, results of semi-analytical FE analysis in the case of rough footing are established and compared with those of another numerical method. Results of comparison show good agreement. Then, for different values of a the surface influence coefficients are presented for an embedded footing in perfect smooth contact with soil. The metacentre is referred to as the depth at which there is no coupling between the sliding and the rocking modes of footing deformations. Expressions for location and horizontal influence coefficient corresponding to this particular depth are developed and their variations with a examined. The paper finishes by showing the effect of interface conditions on the soil normal stresses developed beneath the embedded circular footing for the case of loading applied at the footing top.
机译:通过半解析有限元方法,研究了单调水平荷载和弯矩荷载作用下的嵌入式圆形基础。在非均质土壤中,其剪切模量的特征在于幂律随深度,水平,摇摆和位移的耦合模式而变化,用影响因子表示。控制刚度随深度变化的形状的指数a被称为剪切模量因子。在土壤和基础之间的界面完全粗糙或完全光滑的情况下,可以考虑使用表面影响系数。首先,建立起伏情况下的半解析有限元分析结果,并将其与另一种数值方法进行比较。比较结果显示出良好的一致性。然后,对于a的不同值,给出了与土壤完美平滑接触的嵌入基础的表面影响系数。超中心是指在脚部变形的滑动模式和摇摆模式之间没有耦合的深度。提出了对应于该特定深度的位置和水平影响系数的表达式,并对其进行了检验。本文通过显示界面条件对埋入式圆形底座下方产生的土壤法向应力的影响来完成(对于在底座顶部施加载荷的情况)。

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