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Rockburst evolutionary process and e...
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Song, Dazhao.
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Rockburst evolutionary process and energy dissipation characteristics
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Rockburst evolutionary process and energy dissipation characteristics/ by Dazhao Song ... [et al.].
其他作者:
Song, Dazhao.
出版者:
Singapore :Springer Singapore : : 2020.,
面頁冊數:
xiv, 248 p. :ill., digital ;24 cm.
內容註:
Introduction -- Deformation and failure mechanism and energy conversion of coal/rock -- Time domain characteristics of energy dissipation of coal/rock in its damage process -- Spatiotemperal evolution of RADS based on energy dissipation of coal/rock -- Model for dynamic-pressure-typed rock burst evolution of RADS -- Evolution of stress field and energy field of MRADS through pressure-relief by water jet cutting -- Field verification of stress and energy fields evolutions in MRADS during pressure relief by water jet cutting -- Summary and prospect of the book.
Contained By:
Springer eBooks
標題:
Rock bursts - Forecasting. -
電子資源:
https://doi.org/10.1007/978-981-13-6279-8
ISBN:
9789811362798
Rockburst evolutionary process and energy dissipation characteristics
Rockburst evolutionary process and energy dissipation characteristics
[electronic resource] /by Dazhao Song ... [et al.]. - Singapore :Springer Singapore :2020. - xiv, 248 p. :ill., digital ;24 cm.
Introduction -- Deformation and failure mechanism and energy conversion of coal/rock -- Time domain characteristics of energy dissipation of coal/rock in its damage process -- Spatiotemperal evolution of RADS based on energy dissipation of coal/rock -- Model for dynamic-pressure-typed rock burst evolution of RADS -- Evolution of stress field and energy field of MRADS through pressure-relief by water jet cutting -- Field verification of stress and energy fields evolutions in MRADS during pressure relief by water jet cutting -- Summary and prospect of the book.
This book investigates the evolution process of rockburst based on the energy dissipation theory and proposes appropriate active prevention and control technologies. It discusses the electromagnetic radiation (EMR) generated by coal rock fractures as a measurement of the amount of dissipated energy, and the use of EMR to experimentally observe the time domain characteristics of energy dissipation during coal rock failure processes. It then proposes the concept of the rockburst activity domain system (RADS), establishes a dynamic pressure model of rockburst, and describes the energy criterion for rockburst instability. Lastly, it presents two waterjet cutting-based cases of pressure relief and rockburst prevention. The book serves as a reference resource for mine safety workers, engineering technicians, scientists, graduate students and undergraduates engaged in research on dynamic hazards such as rockburst.
ISBN: 9789811362798
Standard No.: 10.1007/978-981-13-6279-8doiSubjects--Topical Terms:
3442545
Rock bursts
--Forecasting.
LC Class. No.: TN317
Dewey Class. No.: 622.28
Rockburst evolutionary process and energy dissipation characteristics
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Introduction -- Deformation and failure mechanism and energy conversion of coal/rock -- Time domain characteristics of energy dissipation of coal/rock in its damage process -- Spatiotemperal evolution of RADS based on energy dissipation of coal/rock -- Model for dynamic-pressure-typed rock burst evolution of RADS -- Evolution of stress field and energy field of MRADS through pressure-relief by water jet cutting -- Field verification of stress and energy fields evolutions in MRADS during pressure relief by water jet cutting -- Summary and prospect of the book.
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This book investigates the evolution process of rockburst based on the energy dissipation theory and proposes appropriate active prevention and control technologies. It discusses the electromagnetic radiation (EMR) generated by coal rock fractures as a measurement of the amount of dissipated energy, and the use of EMR to experimentally observe the time domain characteristics of energy dissipation during coal rock failure processes. It then proposes the concept of the rockburst activity domain system (RADS), establishes a dynamic pressure model of rockburst, and describes the energy criterion for rockburst instability. Lastly, it presents two waterjet cutting-based cases of pressure relief and rockburst prevention. The book serves as a reference resource for mine safety workers, engineering technicians, scientists, graduate students and undergraduates engaged in research on dynamic hazards such as rockburst.
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