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Study on the property of apparent resistivity changes of rock samples by in situ shear and friction test
Authors:Feng Chen  Da-Yuan Chen  Qi-Ping Cao  Shu-Jun Yu  Dong-Jun Xu  Cong-Xin Chen  Yu-Liang Yu and Jian-Hao Sheng
Institution:(1) Geophysics Department, Peking University, 100871 Beijing, China;(2) Institute of Rock and Soil Mechanics, Academia Sinica, 430070 Wuhan, China
Abstract:In the strip limestone mine in Guiding county, Guizhou Province the shear and frictionin situ tests of rock body were made for the three typical inclined weak bands C 3 1 /C 3 1 , C 3 1 /C 2 2 and C 2 2 /C 2 1 . The tests were made according to the second scheme of cuneate sample of the standards on rock mechanics test of Water Conservancy and Electricity Ministry. The changes of the resistivity in the weak band and the acoustic speed across the weak band were measured in the same time. The apparent resistivity data, obtained for 8 samples on 27 measure lines in 38 cycle tests, show that the apparent resistivity changes have rather obvious characters as follows: 1. At shear and friction stage, the change of the apparent resistivity accelerates after the yield point, and reaches the maximum of change rate and change amplitude near fracture point (except the lines with resistivity invariant); 2. On the same sample, the resistivity changes are different on the various lines and related to the location settled the lines, there are some “sensitive” location; 3. At the stage of preloading normal stress before shearing, the resistivity decreases on most lines, but on a few lines the resistivity does not changes; 4. After unloading shear stress, the resistivity could not recover completely and the hysteresis of resistiviity takes place on a few lines. The Chinese version of this paper appeared in the Chinese edition ofActa Seismologica Sinica,15, 217–223, 1993. Support for this research was received from Guiding strip limestone mine, Guizhou Organic Chemistry Factory. This research is supported by the Chinese Joint Seismological Science Foundation.
Keywords:in situ            weak band  yield point  fracture point  sensitivity
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