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Creep effect and prediction method of dynamic disaster of surrounding rock
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
Creep effect and prediction method of dynamic disaster of surrounding rock/ by Zhijie Wen ... [et al.].
其他作者:
Wen, Zhijie.
出版者:
Singapore :Springer Nature Singapore : : 2025.,
面頁冊數:
xvi, 341 p. :ill., digital ; : 24 cm.;
Contained By:
Springer Nature eBook
標題:
Geoengineering. -
電子資源:
https://doi.org/10.1007/978-981-96-7738-2
ISBN:
9789819677382
Creep effect and prediction method of dynamic disaster of surrounding rock
Creep effect and prediction method of dynamic disaster of surrounding rock
[electronic resource] /by Zhijie Wen ... [et al.]. - Singapore :Springer Nature Singapore :2025. - xvi, 341 p. :ill., digital ;24 cm.
Principles and Prediction of Creep Instability in Coal-Rock Masses -- Principles and Prediction of Creep in Roadway Surrounding Rock -- Principles and Prediction of Large-Scale Roof Weighting in Mining Faces -- Principles of Creep in Overlying Strata of Goaf and Mine Seismic Prediction -- Principles and Prediction of Coal-Rock Burst -- Principles and Prediction Methods for Coal Seam Gas Outbursts -- Principles of Roof Weighting and Creep Instability in Fully Mechanized Mining Faces -- Energy Principle Analysis of Coal-Rock Masses -- Mine Pressure Monitoring Technology and Applications -- Principles and Applications of Acoustic Wave Monitoring in Coal-Rock Masses.
Open access.
This open access book provides a comprehensive overview of the author's in-depth insights into the theory, prediction methods, and developmental trends of creep instability and failure in coal-rock masses within mining stopes. The content primarily covers topics such as creep instability of coal-rock masses in stopes, creep instability of surrounding rock in roadways, large-scale roof creep instability, creep instability of overlying strata in goaf, rockburst, gas outburst, and principles and prediction of roof creep instability in fully mechanized mining faces. Additionally, it explores theoretical advancements in analyzing the energy principles of coal-rock masses and acoustic wave monitoring of coal-rock systems. This book serves as a valuable reference for professionals and researchers in mining engineering, mine construction, underground space engineering, and geotechnical engineering, as well as for faculty and students in related fields.
ISBN: 9789819677382
Standard No.: 10.1007/978-981-96-7738-2doiSubjects--Topical Terms:
1365755
Geoengineering.
LC Class. No.: TN803
Dewey Class. No.: 622.334
Creep effect and prediction method of dynamic disaster of surrounding rock
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Principles and Prediction of Creep Instability in Coal-Rock Masses -- Principles and Prediction of Creep in Roadway Surrounding Rock -- Principles and Prediction of Large-Scale Roof Weighting in Mining Faces -- Principles of Creep in Overlying Strata of Goaf and Mine Seismic Prediction -- Principles and Prediction of Coal-Rock Burst -- Principles and Prediction Methods for Coal Seam Gas Outbursts -- Principles of Roof Weighting and Creep Instability in Fully Mechanized Mining Faces -- Energy Principle Analysis of Coal-Rock Masses -- Mine Pressure Monitoring Technology and Applications -- Principles and Applications of Acoustic Wave Monitoring in Coal-Rock Masses.
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This open access book provides a comprehensive overview of the author's in-depth insights into the theory, prediction methods, and developmental trends of creep instability and failure in coal-rock masses within mining stopes. The content primarily covers topics such as creep instability of coal-rock masses in stopes, creep instability of surrounding rock in roadways, large-scale roof creep instability, creep instability of overlying strata in goaf, rockburst, gas outburst, and principles and prediction of roof creep instability in fully mechanized mining faces. Additionally, it explores theoretical advancements in analyzing the energy principles of coal-rock masses and acoustic wave monitoring of coal-rock systems. This book serves as a valuable reference for professionals and researchers in mining engineering, mine construction, underground space engineering, and geotechnical engineering, as well as for faculty and students in related fields.
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