Long-wavelength P-wave and S-wave propagation in jointed rock masses

Author:

Cha Minsu12,Cho Gye-Chun12,Santamarina J. Carlos12

Affiliation:

1. Korea Advanced Institute of Science and Technology (KAIST), Daejeon, Republic of Korea. .

2. Georgia Institute of Technology, School of Civil and Environmental Engineering, Atlanta, Georgia, U.S.A. .

Abstract

Field data suggest that stress level and joint condition affect shear-wave propagation in jointed rock masses. However, the study of long-wavelength propagation in a jointed rock mass is challenging in the laboratory, and limited data are available under controlled test conditions. Long-wavelength P-wave and S-wave propagation normal to joints, using an axially loaded jointed column device, reproduces a range of joint conditions. The effects of the normal stress, loading history, joint spacing, matched surface topography (i.e., joint roughness), joint cementation (e.g., after grouting), joint opening, and plasticity of the joint filling on the P-wave and S-wave velocities and on S-wave attenuation are notable. The ratio [Formula: see text] in jointed rock masses differs from that found in homogeneous continua. The concept of Poisson’s ratio as a function of [Formula: see text] is unwarranted, and [Formula: see text] can be interpreted in terms of jointed characteristics. Analytic models that consider stress-dependent stiffness and frictional loss in joints as well as stress-independent properties of intact rocks can model experimental observations properly and extract joint properties from rock-mass test data. Thus, joint properties and normal stress have a prevalent role in propagation velocity and attenuation in jointed rock masses.

Publisher

Society of Exploration Geophysicists

Subject

Geochemistry and Petrology,Geophysics

Reference29 articles.

1. The shear strength of rock joints in theory and practice

2. Fractured rock mass characterization parameters and seismic properties: Analytical studies

3. Effects of fractures on seismic-wave velocity and attenuation

4. Brady, B. H. G. , and E. T. Brown, 1995, Rock mechanics: For underground mining: Chapman and Hall.

5. Brillouin, L., 1946, Wave propagation in periodic structures: McGraw-Hill Book Co.

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