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基于Mindlin应力解的分层土中群桩基础沉降计算方法
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作者 张志刚 葛斌 《佳木斯大学学报(自然科学版)》 CAS 2015年第3期326-330,335,共6页
为了考虑地基土的分层特性和桩端下卧层计算深度对群桩基础沉降的影响,基于Mindlin竖向应力解用分层总和的思想建立群桩的土体竖向位移柔度矩阵,参照弹性理论法的分析过程,建立了分层土中群桩基础沉降的计算方法.与工程实例对比表明,对... 为了考虑地基土的分层特性和桩端下卧层计算深度对群桩基础沉降的影响,基于Mindlin竖向应力解用分层总和的思想建立群桩的土体竖向位移柔度矩阵,参照弹性理论法的分析过程,建立了分层土中群桩基础沉降的计算方法.与工程实例对比表明,对于工后沉降量不大的群桩基础,本文方法可以给出较合理的沉降计算值. 展开更多
关键词 群桩基础 沉降 分层地基 MINDLIN应力解 分层总和法
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A layer-wise MITC9 finite element for the freevibration analysis of plates with piezo-patches 被引量:1
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作者 Maria Cinefra Stefano Valvano Erasmo Carrera 《International Journal of Smart and Nano Materials》 SCIE EI 2015年第2期85-104,共20页
The present article considers the free-vibration analysis of plate structures with piezoelectric patches by means of a plate finite element with variable through-the-thickness layer-wise kinematic.The refined models u... The present article considers the free-vibration analysis of plate structures with piezoelectric patches by means of a plate finite element with variable through-the-thickness layer-wise kinematic.The refined models used are derived from Carrera’s Unified Formulation(CUF)and they permit the vibration modes along the thickness to be accurately described.The finite-element method is employed and the plate element implemented has nine nodes,and the mixed interpolation of tensorial component(MITC)method is used to contrast the membrane and shear locking phenomenon.The related governing equations are derived from the principle of virtual displacement,extended to the analysis of electromechanical problems.An isotropic plate with piezoelectric patches is analyzed,with clamped-free boundary conditions and subjected to open-and short-circuit configurations.The results,obtained with different theories,are compared with the higher-order type solutions given in the literature.The conclusion is reached that the plate element based on the CUF is more suitable and efficient compared to the classical models in the study of multilayered structures embedding piezo-patches. 展开更多
关键词 PLATE PATCHES finite-element method piezoelectric materials mixed interpolated tensorial components Carrera’s Unified Formulation layer-wise
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