Dynamic response characteristics of adjacent tunnel lining under blasting impact in subway connecting passage

IF 2.1 Q2 ENGINEERING, CIVIL
Linghao Xiong, N. Jiang, Chuan-bo Zhou, Haibo Li
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引用次数: 2

Abstract

The connecting passage between two adjacent tunnels is conducive to the rescue and evacuation of subway tunnels when disasters occur. The blasting method is usually used in the construction of connecting passage. The vibration caused by blasting construction may endanger the safety of subway tunnel structure. As a result, the influence of blasting pressure on the stability of subway tunnel lining structure during the excavation of connecting passage is studied, and the safe blasting construction distance is proposed, which is crucial to the safety of adjacent subway tunnel lining. This study takes the connecting passage of Wuhan Metro Line 8 as an example. Using Finite element software ANSYS/LS-DYNA, an accurate numerical calculation model of construction site is established. The nonlinear elastoplastic mechanical characteristics of soil, rock, and tunnel lining are simulated by Drucker Prager, Plastic Kinematic, and Johnson Holmquist Concrete constitutive material models, respectively. The credibility of the three-dimensional numerical calculation model and material constitutive model was proved by contrasting the field measured data of the connecting passage with the numerical calculated results. Analysis of numerical results, the axial and radial PPV, frequency, and Von Mises stress of subway tunnel lining are obtained. The influence of subway tunnel lining under adjacent blasting can be obtained by analyzing the distribution law of PPV and Von Mises stress. Non-static tensile strength is needed considering the high pressure and high strain rate process of concrete during blasting. By fitting the relationship between PPV and dynamic tensile stress, and referring to DIF parameters, the safety range of PPV in subway tunnel lining blasting is determined. The critical safety distance between blasting construction and tunnel lining is obtained by Sadovsky vibration velocity attenuation formula, which is used to guide the subsequent blasting excavation of continuous tunnels.
地铁联络通道邻近隧道衬砌在爆破冲击下的动力响应特性
相邻隧道之间的连通通道有利于地铁隧道发生灾害时的救援和疏散。在连接通道的施工中,通常采用爆破法。爆破施工产生的振动会危及地铁隧道结构的安全。研究了连接通道开挖时爆破压力对地铁隧道衬砌结构稳定性的影响,提出了安全爆破施工距离,对相邻地铁隧道衬砌的安全至关重要。本研究以武汉地铁8号线连接通道为例。利用有限元软件ANSYS/LS-DYNA,建立了施工现场的精确数值计算模型。采用Drucker Prager、Plastic Kinematic和Johnson Holmquist混凝土本构材料模型分别模拟了土体、岩石和隧道衬砌的非线性弹塑性力学特性。通过连接通道现场实测数据与数值计算结果的对比,验证了三维数值计算模型和材料本构模型的可信性。对数值结果进行了分析,得到了地铁衬砌的轴向和径向PPV、频率和Von Mises应力。通过分析PPV和Von Mises应力的分布规律,得出相邻爆破对地铁隧道衬砌的影响。考虑到爆破过程中混凝土的高压、高应变率过程,需要提高混凝土的非静态抗拉强度。通过拟合PPV与动拉应力的关系,并参考DIF参数,确定了地铁隧道衬砌爆破PPV的安全范围。利用萨多夫斯基振动速度衰减公式求得爆破施工与隧道衬砌之间的临界安全距离,用于指导连续隧道后续爆破开挖。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
4.30
自引率
25.00%
发文量
48
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