首页> 外文期刊>Bulletin of engineering geology and the environment >Analyse numerique et experimentale du comportement des ouvrages fondes sur un sol mou renforce par des colonnes ballastees flottantes
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Analyse numerique et experimentale du comportement des ouvrages fondes sur un sol mou renforce par des colonnes ballastees flottantes

机译:浅析浮压拉柱的浮土力的作品行为的数字及实验分析

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This paper work is in the frame of the study about the reduction of settlements in the case of floating columns. The prediction of a settlement remains a prickly problem to which geotechnical engineer is confronted. Experience has shown that structural pathologies are caused by the effects of excessive differential settlements before reaching soil bearing capacity. To palliate this problems in the case of soft and compressible soils, we advocate, as an alternative solution, piles or the reinforcement of the soils with stone columns. This strengthening method, introduced in Algeria in 1999, is economical. However, it does not inihilate settlements but it speeds up the time factor. Numerical modelings by finite element method (FEM) have been carried out through interest into all mechanical and geometrical aspects that are inherent in the meshing of floating stone columns. An analytical formulation of a correction coefficent (mu beta) and an abacus of the settlement reduction factor (beta) has been suggested. On the other way, the monitoring instrumentation of experimental site since 2008 to 2017 at the level of the harbour lowland of Bejaia has been carried out. It concerns important storage structures fonded on a very compressible ground reinforced by floating stone columns. The records of the settlements at the scale of the structures, according to variable loads recorded in real time, have revealed excessive settlements under the effects of variable stresses from 1 to 3 bars. An exhaustive geological, geotechnical and geomechanical analysis has been carried out for the characterization of the grounds, and numerical modelling by finite element method (FEM) has been carried out. The experimental and numerical investigation of the concerned structures at issue allowed us to confront the results with regard to settlement prediction of an environment reinforced with floating stone columns. The result is a perfect matching in relation to the suggested formula.
机译:本文作品在浮动柱情况下的研究框架上。对岩土工程师面临的徘徊问题仍然是一个多刺的问题。经验表明,结构病理是由于在达到土壤承载力之前过度差动沉降的影响引起的。为了在柔软和可压缩的土壤的情况下进行这种问题,我们倡导,作为替代解决方案,桩或用石柱的土壤加强。 1999年在阿尔及利亚引入的这种强化方法是经济的。但是,它不会忽视定居点,但它加快了时间因素。通过有限元方法(FEM)的数值建模已经通过感兴趣的所有机械和几何方面进行,这些机械和几何方面是固有的浮石柱的啮合固有。已经提出了校正系数(muβ)的分析制剂和沉降减少因子(β)的算盘。另一方面,自2008年至2017年以来,实验部门监测仪器在北京港口低地的港口低地水平。它涉及通过浮石柱加固的非常可压缩地上沉迷的重要存储结构。根据实时记录的可变载荷的结构,结构的定居点的记录显示,在1至3巴的可变应力的影响下显示出过度的沉降。已经进行了详尽的地质,岩土和地质力学分析,用于对地面表征,并进行了有限元方法(FEM)的数值模型。有关结构的实验性和数值调查允许我们对浮石柱加固环境的沉降预测来对抗结果。结果是与建议的公式有关的完美匹配。

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