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Study on time-dependent behavior and stability assessment of deep-buried tunnels based on internal state variable theory

机译:基于内部状态变量理论的深埋隧道时变行为与稳定性评估研究

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The creep model based on thermodynamics with internal state variables theory can simulate complex time-dependent deformation of rock mass, describe process of energy dissipation of material system, and can be used to evaluate the long-term stability of underground structures quantitatively. In this paper, the creep model proposed by author is improved further and recast to be central difference equation. The redevelopment interface of FLAC(3D) is used to develop a new calculation program, which is based on thermodynamics for vsico-plasticity (PTV-P). Program validation has been conducted by comparing the results from FLAC(3D) and Matlab software under uniaxial compression condition. Then the developed program has been applied to analyze the time-dependent behavior of deep-buried double tunnels. The integral values of energy dissipation rate and its time derivative in domain can be calculated and are used to evaluate the long-term stability of tunnels quantitatively, and the evaluation criterion is also proposed. Moreover, the contour map of energy dissipation rate is used to exhibits the local non-equilibrium region clearly. (C) 2015 Elsevier Ltd. All rights reserved.
机译:基于具有内部状态变量理论的热力学的蠕变模型可以模拟复杂的时变岩体变形,描述材料系统的能量耗散过程,并可用于定量评估地下结构的长期稳定性。本文对作者提出的蠕变模型进行了进一步改进,并将其重铸为中心差分方程。 FLAC(3D)的重新开发接口用于开发一个新的计算程序,该程序基于热力学的可塑性(PTV-P)。通过比较FLAC(3D)和Matlab软件在单轴压缩条件下的结果进行了程序验证。然后将开发的程序应用于深埋双隧道的时变行为分析。可以计算出能量耗散率的积分值及其在时间上的时间导数,并用于定量评估隧道的长期稳定性,并提出了评估标准。此外,利用能量消散率的等高线图可以清楚地显示出局部的非平衡区域。 (C)2015 Elsevier Ltd.保留所有权利。

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