非连续土挡土墙土拱效应的建模算法

J. M. Giraldo, Liliana González Palacio
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引用次数: 0

摘要

土拱效应是高层建筑基础桩施工中采用的不连续挡土结构对土体进行自固的一种物理现象。为了分析这一现象,目前使用了二维(2D)简化分析,尽管它提供了问题解决的数学近似,但其结果显着降低了物理模型的准确性。本文展示了一种用于模拟智利圣地亚哥砾石的三维(3D)土拱效应的算法。该算法在有限元软件中实现。该方法在模型中提供了更准确的结果,大大降低了滑坡的风险,并优化了不连续挡土结构建设中的资源利用。有了这一贡献,也有可能建立一种新的设计算法,供结构工程师使用,由于开发了三维(3D)模型,其结果更加准确,计算精度更高。由此可见,技术已经融入到结构工程师的日常工作中,为挡土结构设计的决策提供了高可靠性的信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Algorithm for model the soil arching effect on discontinuous soil retaining walls
Soil arching effect is a physical phenomenon that allows self-retain to the soil by mean of discontinuous earth retaining structures used to the construction of foundation piles for high-rise buildings. To analyze this phenomenon, a two-dimensional (2D) simplified analysis is currently used, although it offers a mathematical approximation to the solution of the problem, their results significantly reduce the accuracy of the physical model. This article shows an algorithm developed to model the three — dimensional (3D) soil arching effect on the gravel of Santiago de Chile. The algorithm is implemented in a finite element software. This methodology provides more accurate results in the models, which considerably reduces the risk of landslides and optimizes the use of resources in the construction of discontinuous retaining structures. With this contribution it is also possible to establish a new design algorithm for the use of structural engineers that are more accuracy in their results with greater precision in calculations, due to the three-dimensional (3D) model developed. Thus, it can be seen that technology is engaged in everyday activities of structural engineers, providing high reliability information for the decision making respect to the structural design of retaining structures.
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