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Seismic Damage Prediction Method for Lining Structures Based on the SEDR Principle

机译:基于SEDR原理的衬里结构地震损伤预测方法

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The safety and stability of lining structures are core concerns of tunnel and underground engineering. It is crucial to determine whether a lining structure would crack and which direction the crack would expand with seismic excitation. In previous literature, the principle based on stress and strain has been widely used to predict the seismic damage of lining structures, whereas it cannot specify the cracking modes. Taking account of that deficiency, this paper introduces the strain energy density ratio (SEDR) principle and proposes a seismic damage prediction method for lining structures, which can precisely predict the crack positions and expansion directions. Moreover, numerical simulations of the typical seismic damage sections of two tunnels in the Great Wenchuan Earthquake and a calculating example of the theoretical equations are conducted to verify the proposed method. In summary, the numerical simulation results show that the arch springing cracks first, and the invert cracks next; then the cracks expand to the spandrel, and finally, they form oblique cracks, annular cracks, and longitudinal cracks, whose positions and patterns are in accordance with the field investigation results. In terms of the calculating example results, the obtained two-fold SEDR and cracking angle θ are 1.87 and ?6.28°, respectively, which are consistent with the numerical simulation results. Therefore, one can see that the proposed seismic damage prediction method based on the SEDR principle is quite accurate. This method can be used to predict the seismic damage of lining structures and provide a reference for the research of the damage mechanism of tunnels.
机译:衬里结构的安全性和稳定性是隧道和地下工程的核心问题。确定衬里结构是否会破裂以及裂缝将通过地震激发扩展的方向是至关重要的。在以前的文献中,基于应力和菌株的原理已被广泛用于预测衬里结构的地震损伤,而它不能指定裂缝模式。考虑到该缺陷,本文介绍了应变能密度比(SEDR)原理,并提出了一种衬里结构的地震损伤预测方法,可以精确地预测裂缝位置和膨胀方向。此外,对大汶川地震中两个隧道的典型地震损伤部分的数值模拟和理论方程的计算示例进行了验证所提出的方法。总之,数值模拟结果表明,拱形弹性首先裂缝,接下来的反转裂缝;然后裂缝扩展到刮刀,最后,它们形成斜裂缝,环形裂缝和纵向裂缝,其位置和图案符合现场调查结果。就计算的示例结果而言,所获得的双折叠次级和裂化角θ分别为1.87且α6.28°,这与数值模拟结果一致。因此,人们可以看出,基于SEDR原理的建议地震损伤预测方法非常准确。该方法可用于预测衬里结构的地震损伤,并为隧道损伤机构的研究提供参考。

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