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  5. Experimental study on energy and damage evolution of dry and water-saturated dolomite from a deep mine

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Article
en
2024

Experimental study on energy and damage evolution of dry and water-saturated dolomite from a deep mine

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0 Files

en
2024
DOI: 10.1177/10567895241277948

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Diyuan Li
Diyuan Li

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Pingkuang Luo
Diyuan Li
Jinyin Ma
+2 more

Abstract

The deformation and failure of a rock is closely related to the strain energy consumption during the load process of rock. To investigate the effect of water on energy evolution and damage characteristics of dolomite samples from a deep mine, the uniaxial compression tests were carried out on dry and water-saturated dolomite samples at different burial depths (900 m–1200 m). The effects of water on the evolution characteristics of elastic and dissipative energy ratios ( U e / U and U d / U) during rock deformation and failure was analyzed. Based on the variation rate of damage factor ( D f ), a new brittleness index is proposed, which can effectively characterize the brittleness characteristics of water-bearing dolomite. The results show that the uniaxial compressive strength and elastic modulus of the water-saturated dolomite are significantly reduced compared to dry sample. The energy and damage evolution process of dolomite can be divided into four stages: initial damage stage, stable damage stage, pre-peak accelerated damage stage and post-damage stage. The variation rate of damage factor of the rock samples in the stable damage stage and the pre-peak accelerated damage stage appeared to increase significantly after water saturation treatment. Compared with water-saturated samples, more pronounced energy hardening characteristics and brittleness characteristics were observed in dry samples. In addition, the possible impact on the stability of deep rock engineering after the deterioration of rock mechanical properties and energy storage properties caused by water was analyzed. Groundwater can somewhat reduce rock burst proneness. However, it also has the potential to lead to greater rock engineering destabilization and failure hazards.

How to cite this publication

Pingkuang Luo, Diyuan Li, Jinyin Ma, Junjie Zhao, Abdul Jabbar (2024). Experimental study on energy and damage evolution of dry and water-saturated dolomite from a deep mine. , DOI: https://doi.org/10.1177/10567895241277948.

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Publication Details

Type

Article

Year

2024

Authors

5

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1177/10567895241277948

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