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首页> 外文期刊>Journal of Performance of Constructed Facilities >Determination of Deformation Mechanism and Countermeasures in Silty Clay Tunnel
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Determination of Deformation Mechanism and Countermeasures in Silty Clay Tunnel

机译:粉质粘土隧道变形机理及对策的测定

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摘要

Deformation control and stability analysis are very important for tunnel construction. Large deformations of the constructed primary support accompanied by lining cracking and spalling occurred in the Dongxishan Tunnel located in Chaozhou City, northeastern Guangdong Province, China, posing a serious damage to the tunnel safety. In order to determine the causes of large deformations, comprehensive investigations have been performed by combining field monitoring, laboratory tests, and mechanism analyses. The results show that there have been three main factors resulting in the occurrence of large deformations in the Dongxishan Tunnel: the plastic flow of surrounding rock due to low strength of silty clay, obvious creep behavior, and water-weakening effect of silty clay. Besides, based on the preceding mechanism analyses of large deformations, many countermeasures were proposed during construction, including double row pipe pregrouting reinforcement, strengthening primary support, and timely closing of temporary support. These countermeasures can effectively deal with large deformation problems in the Dongxishan Tunnel from the in situ feedbacks. This paper can provide useful guidance for avoiding the similar anomalies in the following excavation and support of Dongxishan Tunnel. (C) 2019 American Society of Civil Engineers.
机译:变形控制和稳定性分析对于隧道施工非常重要。在广东省东北部潮州市东兴山隧道中发生了衬里裂缝和剥落的构建初级载体的大变形。对隧道安全构成严重损害。为了确定大变形的原因,通过结合现场监测,实验室测试和机制分析来进行全面的研究。结果表明,在东兴山隧道中有三个主要因素导致发生大变形的影响:周围岩石塑料流动由于粉质粘土的低强度,明显的蠕变行为和粉质粘土的水弱效果。此外,基于前面的机理分析大变形,在施工期间提出了许多对策,包括双排管道预测强化,强化初级支持,及时关闭临时支持。这些对策可以有效地应对东兴山隧道的大变形问题从原位反馈。本文可以提供有用的指导,以避免在以下挖掘和东兴隧道的挖掘和支持中的类似异常。 (c)2019年美国土木工程师协会。

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