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首页> 外文期刊>Tunnelling and underground space technology >Coupled three-dimensional analysis of the progressive tunnelling-induced damage to masonry buildings: is it always worth it?
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Coupled three-dimensional analysis of the progressive tunnelling-induced damage to masonry buildings: is it always worth it?

机译:耦合三维分析渐进式隧道造成的砌体建筑造成的损坏:它总是值得吗?

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ABSTR A C T The development of urban mobility implies the construction of tunnels, often interacting with valuable masonry structures. It is thus necessary to develop rational and reliable procedures to estimate the potential excavation-induced damage, which imply the analysis of the related soil-structure interaction problem. Classical approaches to soil-structure interaction are often characterised by relatively simple schematisations for either one or both components of the problem, as, for example, springs for the soil or equivalent plates for the structure. Such simplified assumptions prove to be appropriate for conventional soil-foundation cases, while show all their limitations when tackling more complex problems, as those involving the excavation in the vicinity or beneath masonry structures. In such cases, the need for reliable prediction of the potential damage induced by construction activities on surface structures justifies the adoption of more advanced numerical approaches, based on realistic constitutive assumptions for both soil and masonry, together with an accurate modelling schema-tisation of the excavation process. This is what proposed in this paper, where a 3D Finite Element approach is adopted to realistically model the multidimensional and progressive nature of the excavation process, the strongly non-linear soil behaviour and the non-linear anisotropic response that characterises masonry structures, here included accounting for their 3D geometrical characteristics. All the analyses are carried out with reference to a sample masonry building founded on strip footings, interacting with a shallow tunnel in a typical London soil profile, already examined in the literature. Different configurations of the structure, considering the sole facade or the whole building, are examined. Also, different relative positions of the tunnel and the structure, in terms of skew angle and eccen-tricity, are considered. In all the analyses, the excavation is simulated either reproducing the whole three-dimensional advancement of the tunnel or through a simplified single-step analysis. A critical review of the deformation regimes and related plastic points patterns resulting from the different analyses point out in which cases it is necessary to accurately model the 3D tunnel advancement to detect the transient effects governing the onset of structural damage.
机译:Abst A C T的城市移动性的发展意味着隧道的建造,通常与宝贵的砌体结构进行互动。因此,有必要制定理性和可靠的程序来估计潜在的挖掘诱导的损伤,这意味着对相关土壤结构相互作用问题的分析。土壤结构相互作用的经典方法通常是对问题的一个或两个部件的相对简单的典范化,例如,用于土壤的弹簧或用于结构的等效板。这种简化的假设证明是适合传统的土壤基础案例,同时在解决更复杂的问题时显示所有限制,因为涉及附近或砌体结构下的挖掘的那些。在这种情况下,需要基于土壤和砌体的现实本构造的施工活动的施工活动造成的施工活动诱导的潜在损害的需求证明了采用更高的数值方法,以及准确的建模模式 - 紧张挖掘过程。这是本文提出的,其中采用3D有限元方法来现实地模拟挖掘过程的多维和渐进性质,具有强烈的非线性土壤行为和表征砌体结构的非线性各向异性响应,其中包括考虑他们的3D几何特征。所有分析都是参考在条带基础上的样品砌体建筑进行,与典型的伦敦土壤剖面中的浅隧道相互作用,已经在文献中进行了研究。考虑到唯一立面或整个建筑物的结构的不同配置。而且,考虑了隧道和结构的不同相对位置,其在倾斜角度和生态特性方面。在所有分析中,挖掘是模拟隧道的整个三维进步或通过简化的单步分析。对不同分析产生的变形制度和相关塑料点图案的关键综述在这种情况下指出,需要准确地模拟3D隧道进步以检测有关结构损伤的发作的瞬态效果。

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