首页> 外文期刊>Acta Geotechnica Slovenica >A THREE-DIMENSIONAL STATIC NUMERICAL MODEL OF A COMPLEX UNDERGROUND STRUCTURE IN HIGH SQUEEZING GROUND
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A THREE-DIMENSIONAL STATIC NUMERICAL MODEL OF A COMPLEX UNDERGROUND STRUCTURE IN HIGH SQUEEZING GROUND

机译:高压地基中复杂地下结构的三维静态数值模型

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摘要

The present study assesses high squeezing ground confirmed by empirical and semi-empirical theories. High squeezing ground is often present in underground constructions at great depths, but it is hardly ever researched separately from light and fair squeezing ground. A three-dimensional, static numerical model is developed for a complex underground structure consisting of a shaft, a silo, and a mine roadway at great depth, which is certainly in high squeezing ground. Furthermore, a solution for the entire structure based on shotcrete with incorporated yielding elements is provided. The yielding elements, in general, absorb the strain energy by compressing at a relatively constant stress, but without rebounding. A three-dimensional, static numerical model of a support system with incorporated yielding elements is established in order to demonstrate that the presented forces are under control. Therefore, a failure of the lining is avoided because the stresses in the shotcrete lining are below its load-bearing capacity. It can be concluded that yielding elements incorporated in the shotcrete lining play an important role in the support solution in high squeezing ground.
机译:本研究评估了经验和半经验理论证实的高挤压地面。高挤土经常出现在较深的地下建筑中,但几乎没有与轻挤土一起研究的。针对复杂的地下结构,开发了三维静态数值模型,该结构由竖井,筒仓和深处的矿井巷道组成,深处肯定是在高挤压地中。此外,提供了一种基于喷浆混凝土的整体结构解决方案,并结合了屈服元件。通常,屈服元素通过在相对恒定的应力下压缩而吸收应变能,但不会反弹。建立了包含屈服元件的支撑系统的三维静态数值模型,以证明所提供的力处于受控状态。因此,避免了衬砌的破坏,因为喷浆衬砌中的应力低于其承重能力。可以得出结论,喷浆混凝土衬砌中所包含的屈服元素在高压实地面的支撑解决方案中起着重要作用。

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