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Berolinensien

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The copyright and related rights status of this record has not been evaluated or is not clear. Please refer to the organization that has made the Item available for more information.

Bibliographic data

cmsPage: Berolinensien

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Copyright

The copyright and related rights status of this record has not been evaluated or is not clear. Please refer to the organization that has made the Item available for more information.

Periodical

Title:
Applied rheology
Publication:
Berlin: De Gruyter
Note:
Gesehen am 08.04.2019
Fortsetzung der Druckausgabe
Open Access
8.1998 nicht ersch.
Namensnennung 4.0 International
Scope:
Online-Ressource
ISSN:
1617-8106
ZDB-ID:
2047249-3 ZDB
VÖBB-Katalog:
35278155
Keywords:
Rheologie ; Zeitschrift ; Zeitschrift
Classification:
Naturwissenschaften
Collection:
Naturwissenschaften
Copyright:
Rights reserved
Accessibility:
Free Access

Article

Author:
Gao, Yijun
Zhu, Zongjie
Liu, Zhiming
Huang, Gang
Title:
Study on precursor information and disaster mechanism of sudden change of seepage in mining rock mass
Publication:
Berlin: De Gruyter, 2024
Language:
English
Information:
Abstract: Changes in the stress field and seepage field of mining unloading are one of the important causes of deformation and destabilization of the rock body of the bottom slab. With the increase of mining intensity and depth, the disaster of water influx on the bottom plate under the dual action of mining unloading and pressurized water has become one of the main problems restricting the efficient and safe mining of coal. Based on the research background of confined water inrush from Ordovician limestone floor in North China Coalfield, the numerical analysis revealed that mining unloading concentrates stresses, increases deformation, and increases the plastic zone and permeability range. Based on laboratory acoustic emission and mechanical tests, it is found that the peak of acoustic emission ringing number can be one of the precursor information of limestone seepage mutation. This study reveals the evolution law of rock body deformation and permeability under the unloading path, and the research obtains the unloading seepage and water gushing disaster mechanism of the subgrade rock body.
Scope:
Online-Ressource
Note:
Open Access
Archivierung/Langzeitarchivierung gewährleistet
Keywords:
seepage ; rock unloading ; characteristics of surrounding rock destabilization ; acoustic emission test ; water-surge mechanism
Classification:
Naturwissenschaften
Sonstiges
URN:
urn:nbn:de:101:1-2024022913022531488708
Collection:
Naturwissenschaften
Sonstiges
Copyright:
CC BY
Accessibility:
Free Access

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