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Damage and failure of rock triggered by dynamic disturbance
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
Damage and failure of rock triggered by dynamic disturbance/ by Xu Chen.
作者:
Chen, Xu.
出版者:
Singapore :Springer Nature Singapore : : 2025.,
面頁冊數:
xiv, 172 p. :ill., digital ; : 24 cm.;
Contained By:
Springer Nature eBook
標題:
Rock mechanics. -
電子資源:
https://doi.org/10.1007/978-981-96-9486-0
ISBN:
9789819694860
Damage and failure of rock triggered by dynamic disturbance
Chen, Xu.
Damage and failure of rock triggered by dynamic disturbance
[electronic resource] /by Xu Chen. - Singapore :Springer Nature Singapore :2025. - xiv, 172 p. :ill., digital ;24 cm.
Introduction -- Modifications to Rock Triaxial Test System for Dynamic Disturbance -- Description of Rock Samples and Their Basic Physical and Mechanical Properties -- Experimental Study on the Influence of Dynamic Disturbance on Progressive Damage and Failure of Rock -- Effect of Confining Pressure on Damage Evolution and Failure Behaviors of Intact Sandstone Samples during Cyclic Dynamic Disturbance -- Mechanism of Damage and Failure of Rock Triggered by Cyclic Dynamic Disturbance -- Numerical Model of Progressive Damage and Failure of Rock Triggered by Cyclic Dynamic Disturbance -- Concluding Remarks and Prospects.
Open access.
This open access book provides a detailed exploration of how dynamic disturbances, such as those caused by blasting or seismic activity, affect the damage and failure mechanisms of rocks. When excavation is carried out under high stress environment, the external disturbance will change the stress field of the rock, which may lead to potential engineering damage such as large deformation and large displacement of the free surfaces of the engineering surrounding rock, and even cause instability damage, rockburst, and other engineering disasters. From 1960s onward, the subject of progressive damage and failure of rock materials has been extensively investigated to prevent and control geological disasters and engineering accidents. However, the existing researches usually did not take the effects of low-frequency dynamic disturbances on the mechanical properties of rock into consideration. Rock mechanics researchers, such as graduate students, doctoral students, or academics, need to understand the complex interactions between dynamic disturbances and rock integrity. They require up-to-date knowledge of the latest research findings and models to predict rock behaviors accurately.
ISBN: 9789819694860
Standard No.: 10.1007/978-981-96-9486-0doiSubjects--Topical Terms:
566979
Rock mechanics.
LC Class. No.: TA706
Dewey Class. No.: 624.15132
Damage and failure of rock triggered by dynamic disturbance
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Introduction -- Modifications to Rock Triaxial Test System for Dynamic Disturbance -- Description of Rock Samples and Their Basic Physical and Mechanical Properties -- Experimental Study on the Influence of Dynamic Disturbance on Progressive Damage and Failure of Rock -- Effect of Confining Pressure on Damage Evolution and Failure Behaviors of Intact Sandstone Samples during Cyclic Dynamic Disturbance -- Mechanism of Damage and Failure of Rock Triggered by Cyclic Dynamic Disturbance -- Numerical Model of Progressive Damage and Failure of Rock Triggered by Cyclic Dynamic Disturbance -- Concluding Remarks and Prospects.
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This open access book provides a detailed exploration of how dynamic disturbances, such as those caused by blasting or seismic activity, affect the damage and failure mechanisms of rocks. When excavation is carried out under high stress environment, the external disturbance will change the stress field of the rock, which may lead to potential engineering damage such as large deformation and large displacement of the free surfaces of the engineering surrounding rock, and even cause instability damage, rockburst, and other engineering disasters. From 1960s onward, the subject of progressive damage and failure of rock materials has been extensively investigated to prevent and control geological disasters and engineering accidents. However, the existing researches usually did not take the effects of low-frequency dynamic disturbances on the mechanical properties of rock into consideration. Rock mechanics researchers, such as graduate students, doctoral students, or academics, need to understand the complex interactions between dynamic disturbances and rock integrity. They require up-to-date knowledge of the latest research findings and models to predict rock behaviors accurately.
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