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Fracture behaviors of tunnel lining caused by multi-factors: A case study

机译:多因素引起的隧道衬里的断裂行为 - 以案例研究

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The cracking and spalling caused by fracture of concrete lining have adverse impacts on serviceability and durability of the tunnel, and the subsequent maintenance work for damaged structure needs to be specific to the damaging causes. In this paper, a particular case study of an operational tunnel structure is presented for the serious cracking and spalling behaviours of concrete lining, focusing on the multi-factors inducing lining failure. An integrated field investigation is implemented to characterize the spatial distribution of damages and detailed site situations. According to results of nondestructive inspection, insufficient lining thickness and cavity behind lining are the coupled-inducement of lining failure bahaviors. To further understanding of the lining structure performance influenced by these multiple construction deficiencies, a reliable numerical simulation based on extended finite element method (XFEM) is performed by using the finite element software. The numerical model with 112 m longitudinal calculation, 100 m vertical calculation and 43 m vertical depth, and the concrete lining with 1450 solid elements are set enrichment shape function for the aim of simulating cracking behavior. The numerical simulation responses are essentially in accordance with the actual lining damaging forms, especially including a complete evolutionary process of lining spalling This work demonstrates that the serious lining damaging behaviors are directly caused by a combination of insufficient thickness lining and cavity around the surrounding rocks. Ultimately, specific maintenance work is design based on the construction deficiencies, and that is confirmed as an efficient, time-saving and safe maintenance method in the operational railway tunnel.
机译:混凝土衬里骨折引起的裂缝和剥落对隧道的可靠性和耐久性产生了不利影响,并且随后的受损结构的维护工作需要特定于破坏性原因。在本文中,提出了一种特定的隧道结构案例研究,用于混凝土衬里的严重裂缝和剥落行为,专注于诱导衬里故障的多因素。实施了一体化的实地调查,以表征损害赔偿和详细网站情况的空间分布。根据非破坏性检查的结果,衬里后面的衬里厚度和腔腔内的衬里是衬里失败的耦合诱导。为了进一步了解受这些多施工缺陷影响的衬里结构性能,通过使用有限元软件来执行基于扩展有限元方法(XFEM)的可靠数值模拟。具有112米纵向计算的数值模型,100米垂直计算和43米的垂直深度,以及1450实体元件的混凝土衬里是设定富集的形状函数,以实现裂缝行为。数值模拟响应基本上根据实际的衬里损坏形式,特别是包括衬里剥落的完整进化过程,这项工作表明,严重的衬里损坏行为直接由周围岩石周围的厚度衬里和空腔的组合直接引起的。最终,特定的维护工作是基于施工缺陷的设计,并且确认为运营铁路隧道中的有效,节省时间和安全的维护方法。

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