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周创兵, 陈益峰, 姜清辉. 岩体表征单元体与岩体力学参数[J]. 岩土工程学报, 2007, 29(8): 1135-1142.
引用本文: 周创兵, 陈益峰, 姜清辉. 岩体表征单元体与岩体力学参数[J]. 岩土工程学报, 2007, 29(8): 1135-1142.
ZHOU Chuangbing, CHEN Yifeng, JIANG Qinghui. Representative elementary volume and mechanical parameters of fractured rock masses[J]. Chinese Journal of Geotechnical Engineering, 2007, 29(8): 1135-1142.
Citation: ZHOU Chuangbing, CHEN Yifeng, JIANG Qinghui. Representative elementary volume and mechanical parameters of fractured rock masses[J]. Chinese Journal of Geotechnical Engineering, 2007, 29(8): 1135-1142.

岩体表征单元体与岩体力学参数

Representative elementary volume and mechanical parameters of fractured rock masses

  • 摘要: 在岩体多场耦合分析中,许多采用岩体表征单元体(REV)讨论岩体的渗透特性。事实上,岩体REV是岩石力学的一个基本科学问题,它是选取岩体力学模型以及确定岩体力学参数的基础。从REV的基本概念出发,阐述岩体REV的力学意义;根据岩石及岩体的结构和地质特征,定义了岩石力学中常见的6个尺度,并分析了REV与其它尺度的关系;归纳总结并提出了岩体REV的3种确定方法:能量叠加法,地质统计法,数值模拟法;讨论了岩体REV与岩体力学模型及岩体力学参数取值之间的关系;提出了岩体力学参数的"5S"相关性和岩体力学参数场的概念和分析方法。

     

    Abstract: Representative elementary volume(REV) is usually adopted to discuss the variation of permeability with volume of fractured rock masses in multi-field coupling analysis.In fact,REV,as a fundamental conception in rock mechanics,is the basis for choosing rock mechanical model and determining rock mechanical parameters.The purpose of this paper was to present a comprehensive description of the REV of fractured rock masses.Based on the knowledge of rock matrix and rock fractures,six scales were defined to describe the size effects encountered in rock mechanics.Three methods,called Energy superposition method(ESM),geological statistic method(GSM) and numerical simulation method(NSM) were proposed to estimate the REV sizes of fractured rock masses.Mechanical model was discussed according to the relationship between REV and rock,and it was suggested that REV should be regarded as a quantitative criterion for choosing equivalent continuum approach or discrete approach.New conceptions of REV-based and 5S-related mechanical parameters and parameter fields were proposed to reflect the structure,size,stress,strain and seepage effects of mechanical properties of fractured rock masses.

     

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