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Modulus Estimation of Surrounding Soils of Underground Structures in Service

机译:在役地下结构周围土的模量估计。

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Most underground structures in urban areas were built several decades ago and require diagnosis and maintenance to ensure their longevity. To ensure that diagnosis is as complete as possible, it is necessary to evaluate their state on three levels: structure lining, contact interface (soil/structure), and surrounding soil. However, at present, there is no fully appropriate technique for characterizing the parameters of surrounding soils and their variability in situ. This paper deals with a less invasive methodology used to obtain an estimation of the elasticity modulus of the surrounding soil of underground structures in service. The combined use of a dynamic lightweight penetrometric test (PANDA) and geoendoscopic tests permits estimating the deformation modulus of soils from the tip resistance (q(d)) for a given material and from relations established for different soil models. The paper first presents the complete methodology proposed for in situ soil characterization, then the experimental work carried out in the laboratory for obtaining the relations linking the penetration tip resistance to the elastic modulus for four soil models and for different density and moisture conditions. Finally, the performance and adaptability of the methodology for estimating soil-deformation modulus and its variability is demonstrated by in situ testing campaigns in the Paris subway network.
机译:城市地区的大多数地下建筑是几十年前建造的,需要进行诊断和维护才能确保其使用寿命。为了确保诊断尽可能完整,有必要在三个层次上评估它们的状态:结构衬里,接触界面(土壤/结构)和周围土壤。但是,目前尚没有完全合适的技术来表征周围土壤的参数及其原位变异性。本文讨论了一种侵入性较小的方法,该方法可用于估算在役地下结构周围土壤的弹性模量。动态轻型渗透测试(PANDA)和地质内窥镜测试的结合使用,可以根据给定材料的抗顶撞性(q(d))和针对不同土壤模型建立的关系来估算土壤的变形模量。本文首先介绍了提出的用于原位土壤表征的完整方法,然后在实验室中进行了实验工作,以获取针对四种土壤模型以及在不同密度和湿度条件下渗透尖端阻力与弹性模量之间的关系。最后,通过巴黎地铁网络中的现场测试活动证明了估算土壤变形模量及其变异性的方法的性能和适应性。

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