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Numerical Analysis of Blast-Induced Stress Waves in a Rock Mass with Anisotropic Continuum Damage Models Part 1: Equivalent Materials Property Approach

机译:具有各向异性连续谱损伤模型的岩体中爆炸诱发应力波的数值分析,第1部分:等效材料特性方法

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This paper uses the concept of anisotropic damage mechanics to analyze dynamic responses of a granite site under blasting loads. An anisotropic continuum damage model is suggested to model rock mass behavior under blasting loads. The effects of existing cracks and joints in the rock mass are considered by using equivalent rock material properties obtained from both filed and laboratory test data. The anisotropic damage accumulations are simulated by continuous degradation of equivalent material stiffness and strength during loading process and are calculated using the exponential function with respect to the principal tensile strain in three directions. The suggested models are programmed and linked to an available computer program Autodyn3D through its user's subroutine capability. Stress wave propagation and damage zone in the rock mass induced by underground explosions are simulated. Numerical results of damaged area, peak particle velocity and acceleration attenuation as well as acceleration time histories and Fourier spectra are compared with those from independent field tests.
机译:本文使用各向异性破坏力学的概念来分析爆破载荷下花岗岩场地的动力响应。建议使用各向异性连续介质损伤模型来模拟爆破载荷下的岩体行为。通过使用从现场和实验室测试数据获得的等效岩石材料特性,可以考虑岩体中现有裂缝和接缝的影响​​。通过在加载过程中等效材料刚度和强度的连续退化来模拟各向异性损伤累积,并使用相对于三个方向上的主拉伸应变的指数函数进行计算。所建议的模型已编程并通过其用户的子例程功能链接到可用的计算机程序Autodyn3D。模拟了地下爆炸引起的岩体中应力波的传播和破坏带。将损伤区域,峰值粒子速度和加速度衰减以及加速时间历史和傅立叶光谱的数值结果与独立现场测试的数值结果进行了比较。

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