4.6 Article

Stress Wave Propagation through Rock Joints Filled with Viscoelastic Medium Considering Different Water Contents

Journal

APPLIED SCIENCES-BASEL
Volume 10, Issue 14, Pages -

Publisher

MDPI
DOI: 10.3390/app10144797

Keywords

rock mass; filled joint; seismic response; viscoelastic filling; water content; propagator matrix method; thin-layer medium model

Funding

  1. Second Tibetan Plateau Scientific Expedition and Research Program (STEP) [2019QZKK0904]
  2. National Key Research and Development Plan of China [2019YFC1509701]
  3. National Natural Science Foundation of China [41807273, 41825018, 41941018, 41672307, 41902289]
  4. Key Deployment Program of the Chinese Academy of Sciences [KFZD-SW-422]
  5. Key Research Program of the Institute of Geology and Geophysics, CAS [IGGCAS-201903402]
  6. Science Foundation of Key Laboratory of Shale Gas and Geoengineering, Institute of Geology and Geophysics
  7. Chinese Academy of Sciences [KLSG201702]

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A rock mass often contains joints filled with a viscoelastic medium of which seismic response is significant to geophysical exploration and seismic engineering design. Using the propagator matrix method, an analytical model was established to characterize the seismic response of viscoelastic filled joints. Stress wave propagation through a single joint highly depended on the water content and thickness of the filling as well as the frequency and incident angle of the incident wave. The increase in the water content enhanced the viscosity (depicted by quality factor) of the filled joint, which could promote equivalent joint stiffness and energy dissipation with double effects on stress wave propagation. There existed multiple reflections when the stress wave propagated through a set of filled joints. The dimensionless joint spacing was the main controlling factor in the seismic response of the multiple filled joints. As it increased, the transmission coefficient first increased, then it decreased instead, and at last it basically kept invariant. The effect of multiple reflections was weakened by increasing the water content, which further influenced the variation of the transmission coefficient. The water content of the joint filling should be paid more attention in practical applications.

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