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岩石杨氏模量场和泊松比场的反演方法及其试验应用

Inversion Method of the Young's Modulus Field and Poisson's Ratio Field for Rock and Its Test Application.

作者信息

Yin Yanchun, Liu Guangyan, Zhao Tongbin, Ma Qinwei, Wang Lu, Zhang Yubao

机构信息

School of Aerospace Engineering, Beijing Institute of Technology, Beijing 100081, China.

College of Energy and Mining Engineering, Shandong University of Science and Technology, Qingdao 266590, China.

出版信息

Materials (Basel). 2022 Aug 8;15(15):5463. doi: 10.3390/ma15155463.

Abstract

As one typical heterogeneous material, the heterogeneity of rock micro parameters has an important effect on its macro mechanical behavior. The study of the heterogeneity of micro parameters is more important to reveal the root cause of deformation and failure. However, as a typical heterogeneous material, the current testing and inversion method is not suitable for micro parameters measurement for the rock. Aiming at obtaining the distribution of micro Young's modulus and micro Poisson's ratio of the rock, based on the digital image correlation method (DIC) and finite element method (FEM), this paper proposed a parameter field inversion method, namely the DF-PF inversion method. Its inversion accuracy is verified using numerical simulation and laboratory uniaxial compression test. Considering the influences of heterogeneity, stress state and dimension difference, the average inversion error of Young's modulus field and Poisson's ratio field are below 10%, and the proportion of elements with an error of less than 15% accounts for more than 86% in the whole specimen model. Compared with the conventional measuring method, the error of macro Young's modulus and macro Poisson's ratio calculated by the DF-PF inversion method is less than 2.8% and 9.07%, respectively. Based on the statistical analysis of Young's modulus field and Poisson's ratio field, the parameter homogeneity and quantitative function relation between the micro parameter and the principal strain can also be obtained in laboratory tests. The DF-PF inversion method provides a new effective method of testing Young's modulus field and Poisson's ratio field of the rocks under complex stress states.

摘要

作为一种典型的非均质材料,岩石细观参数的非均质性对其宏观力学行为有着重要影响。研究细观参数的非均质性对于揭示岩石变形与破坏的根源更为重要。然而,作为典型的非均质材料,目前的测试与反演方法并不适用于岩石细观参数的测量。针对获取岩石细观杨氏模量和细观泊松比的分布,基于数字图像相关法(DIC)和有限元法(FEM),本文提出了一种参数场反演方法,即DF - PF反演方法。通过数值模拟和室内单轴压缩试验验证了其反演精度。考虑到非均质性、应力状态和尺寸差异的影响,杨氏模量场和泊松比场的平均反演误差均在10%以下,在整个试件模型中误差小于15%的单元比例占比超过86%。与传统测量方法相比,采用DF - PF反演方法计算得到的宏观杨氏模量和宏观泊松比的误差分别小于2.8%和9.07%。基于杨氏模量场和泊松比场的统计分析,在室内试验中还可得到参数的均匀性以及细观参数与主应变之间的定量函数关系。DF - PF反演方法为复杂应力状态下岩石杨氏模量场和泊松比场的测试提供了一种新的有效方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa7d/9369481/dfe98fbf2789/materials-15-05463-g001.jpg

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