温克勒路基双反力系数对弹性基础梁的弯曲研究

M. Balabušić, B. Folić, Slobodan Ćorić
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引用次数: 6

摘要

本文提出了一种新的反梁分析方法。分析中考虑了它们的刚度EI、温克勒空间与路基反力模量k和基础梁与地面的等变形。通过对Winkler模型的数值分析发现,在力区r外,路基反力k2的模量不同,而在力区P下,存在路基反力k的模量,直至最小弯矩的定义。近似假设最小矩的几何位置为指数函数k2(r)。从位移与反力相互作用的势能条件出发,明确确定了区域宽度r和路基反力模量k2,并在计算中先后引入了初始位移和计算土位移wsi。最后给出了数值算例,分析了k和k2值对反梁弯矩的影响。本文的基本思想是减少地基、梁的配筋量,即获得经济高效的基础施工。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bending the Foundation Beam on Elastic Base by Two Reaction Coefficient of Winkler’s Subgrade
A new method for analysis of counter beams is presented in the paper. The analysis has taken into account their stiffness EI, Winkler’s space with modulus of subgrade reaction k and equality deformities of the foundation beam with the ground. The solution is found by using the numerical analysis of the Winkler’s model, with variation of different moduli of the subgrade reaction k2 outside the force zone r, while under the force P exists the modulus of the subgrade reaction k, up to the definition of minimum bending moments. The exponential function k2(r), as the geometric position of the minimum moments is approximately assumed. From the potential energy conditions of the reciprocity of displacement and reaction, the width of the zone r and the modulus of the subgrade reaction k2 are explicitly determined, introducing in the calculation initial and calculation soil displacement wsi successively. At the end of the paper, it presented numerical example in which the influence of k and k2 values on bending moments of the counter beam is analyzed. The essential idea of this paper is to decrease the quantity of the reinforcement in the foundations, beams, i.e. to obtain a cost-efficient foundation construction.
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