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FLAC Based Numerical Studies on Dynamic Interference of Two Nearby Embedded Machine Foundations

机译:基于FLAC的两个附近嵌入式机械基础动态干扰数值研究。

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This paper emphasizes on the dynamic interaction of two closely spaced embedded square or rectangular foundations under the action of machine vibration. One of the foundations is excited with a known vibration source placed on the top of it, called the active foundation. The objective is to study the effect of dynamic motion of the active foundation on the nearby passive foundation through a layered soil medium. The analysis is performed numerically by using the explicit finite difference code FLAC~(3D). The soil profile is assumed to obey the Mohr-Coulomb yield criteria with non-linear failure envelope. The analysis is performed under sinusoidal dynamic loading with varying amplitude. Under the dynamic excitation, the settlement behavior of the interacting foundations is studied by varying the spacing between the foundations. In addition, the variation of vertical normal and shear stress developed beneath the interacting foundations is also explored. The present theoretical investigation indicates that the settlement and vertical normal stress below the active foundation is generally found to be higher than that obtained for the passive foundation, whereas the shear stress response below the foundations follows the reverse trend.
机译:本文着重介绍了在机器振动作用下两个紧密间隔的嵌入式方形或矩形基础的动力相互作用。一个基础被位于其顶部的已知振动源(称为活动基础)激发。目的是研究层状土壤介质中主动基础动力运动对附近被动基础的影响。通过使用显式有限差分代码FLAC〜(3D)进行数值分析。假定土壤剖面符合非线性破坏包络线的Mohr-Coulomb屈服准则。该分析是在正弦动态载荷下以可变幅度进行的。在动力激励下,通过改变基础之间的间距来研究相互作用基础的沉降行为。此外,还研究了相互作用基础下竖向法向应力和剪应力的变化。目前的理论研究表明,通常发现主动基础下的沉降和垂直法向应力高于被动基础下的沉降和垂直法向应力,而基础下的剪应力响应遵循相反的趋势。

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