Books on the topic 'Mining Geomechanics'

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1

Brown, E. T. Block caving geomechanics. Indooroopilly, Qld: Julius Kruttschnitt Mineral Research Centre, The University of Queensland, 2003.

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2

Sevi, Adam, Jose Neves, and Honghua Zhao, eds. Enhancements in Applied Geomechanics, Mining, and Excavation Simulation and Analysis. Cham: Springer International Publishing, 2019. http://dx.doi.org/10.1007/978-3-319-95645-9.

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3

Bureau of Mines Technology Transfer Seminar (1986 Pittsburgh, Pa.). Eastern coal mine geomechanics: Proceedings, Bureau of Mines Technology Transfer Seminar, Pittsburgh, PA, November 19, 1986. [Pittsburgh, Pa.]: U.S. Dept. of the Interior, Bureau of Mines, 1987.

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4

International Bureau of Strata Mechanics. Plenary Scientific Session. Effect of geomechanics on mine design: Proceedings of the 12th Plenary Scientific Session of the International Bureau of Strata Mechanics/World Mining Congress, Leeds, 8-13 July 1991. Rotterdam: A.A. Balkema, 1992.

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5

Kidybinski. Effect Geomechanics on Mine Design. Taylor & Francis, 1992.

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6

Bondarenko, Volodymyr, Iryna Kovalevska, H. Symanovych, M. Barabash, and O. Vivcharenko. Geomechanics of Mine Workings Support Systems. Taylor & Francis Group, 2018.

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7

Bondarenko, Volodymyr, Iryna Kovalevska, Hennadiy Symanovych, Mykhaylo Barabash, and Oleksandr Vivcharenko. Geomechanics of Mine Workings Support Systems. Taylor & Francis Group, 2018.

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8

Zoback, Mark D., and Arjun H. Kohli. Unconventional Reservoir Geomechanics: Shale Gas, Tight Oil, and Induced Seismicity. Cambridge University Press, 2019.

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9

Zoback, Mark D., and Arjun H. Kohli. Unconventional Reservoir Geomechanics: Shale Gas, Tight Oil, and Induced Seismicity. Cambridge University Press, 2019.

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10

Sevi, Adam, Jose Neves, and Honghua Zhao. Enhancements in Applied Geomechanics, Mining, and Excavation Simulation and Analysis. Springer, 2018.

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11

Geomechanics and Geodynamics of Rock Masses. Taylor & Francis Group, 2018.

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12

Litvinenko, Vladimir. Geomechanics and Geodynamics of Rock Masses: Proceedings of the 2018 European Rock Mechanics Symposium. Taylor & Francis Group, 2018.

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13

Litvinenko, Vladimir. Geomechanics and Geodynamics of Rock Masses: Proceedings of the 2018 European Rock Mechanics Symposium. Taylor & Francis Group, 2018.

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14

Litvinenko, Vladimir. Geomechanics and Geodynamics of Rock Masses: Selected Papers from the 2018 European Rock Mechanics Symposium. Taylor & Francis Group, 2018.

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15

Litvinenko, Vladimir. Geomechanics and Geodynamics of Rock Masses: Selected Papers from the 2018 European Rock Mechanics Symposium. Taylor & Francis Group, 2018.

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16

Bondarenko, Volodymyr, Iryna Kovalevs'ka, Mykhaylo Illiashov, and Genadiy Pivnyak, eds. Geomechanical Processes during Underground Mining. CRC Press, 2012. http://dx.doi.org/10.1201/b13157.

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17

Kovalevs'ka, Iryna, Volodymyr Bondarenko, Genadiy Pivnyak, and Mykhaylo Illiashov. Geomechanical Processes During Underground Mining. Taylor & Francis Group, 2019.

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18

Kovalevs'ka, Iryna, Volodymyr Bondarenko, Genadiy Pivnyak, and Mykhaylo Illiashov. Geomechanical Processes During Underground Mining: School of Underground Mining 2012. Taylor & Francis Group, 2012.

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19

Kovalevs'ka, Iryna, Volodymyr Bondarenko, Genadiy Pivnyak, and Mykhaylo Illiashov. Geomechanical Processes During Underground Mining: School of Underground Mining 2012. Taylor & Francis Group, 2012.

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20

Bondarenko, Volodymyr. Geomechanical Processes During Underground Mining: School of Underground Mining 2012. Taylor & Francis Group, 2012.

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21

Kovalevs'ka, Iryna, Volodymyr Bondarenko, Genadiy Pivnyak, and Mykhaylo Illiashov. Geomechanical Processes During Underground Mining: School of Underground Mining 2012. Taylor & Francis Group, 2012.

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22

Kovalevs'ka, Iryna, Volodymyr Bondarenko, Genadiy Pivnyak, and Mykhaylo Illiashov. Geomechanical Processes During Underground Mining: School of Underground Mining 2012. Taylor & Francis Group, 2012.

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23

Kovalevs'ka, Iryna, Volodymyr Bondarenko, Genadiy Pivnyak, and Mykhaylo Illiashov. Geomechanical Processes During Underground Mining: School of Underground Mining 2012. Taylor & Francis Group, 2012.

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24

Yu, Wang. Geomechanical Behaviors of Bimrocks. Taylor & Francis Group, 2021.

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25

Yu, Wang. Geomechanical Behaviors of Bimrocks. Taylor & Francis Group, 2021.

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26

Yu, Wang. Geomechanical Behaviors of Bimrocks. Taylor & Francis Group, 2021.

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27

Geomechanical Processes During Underground Mining Proceedings Of The School Of Underground Mining Dnipropetrovkyalta Ukraine 2428 September 2012. CRC Press, 2012.

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28

Wybrane problemy geomechaniki i budownictwa górniczego na dużych głębokościach: III sympozjum. Gliwice: Dział Wydawnictw Politechniki Śląskiej, 1988.

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29

Aydan, Ömer. Continuum and Computational Mechanics for Geomechanical Engineers. Taylor & Francis Group, 2021.

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30

Aydan, Ömer. Continuum and Computational Mechanics for Geomechanical Engineers. Taylor & Francis Group, 2021.

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31

Read, John, and Peter Stacey. Guidelines for Open Pit Slope Design. CSIRO Publishing, 2009. http://dx.doi.org/10.1071/9780643101104.

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Guidelines for Open Pit Slope Design is a comprehensive account of the open pit slope design process. Created as an outcome of the Large Open Pit (LOP) project, an international research and technology transfer project on rock slope stability in open pit mines, this book provides an up-to-date compendium of knowledge of the slope design processes that should be followed and the tools that are available to aid slope design practitioners. This book links innovative mining geomechanics research into the strength of closely jointed rock masses with the most recent advances in numerical modelling, creating more effective ways for predicting rock slope stability and reliability in open pit mines. It sets out the key elements of slope design, the required levels of effort and the acceptance criteria that are needed to satisfy best practice with respect to pit slope investigation, design, implementation and performance monitoring. Guidelines for Open Pit Slope Design comprises 14 chapters that directly follow the life of mine sequence from project commencement through to closure. It includes: information on gathering all of the field data that is required to create a 3D model of the geotechnical conditions at a mine site; how data is collated and used to design the walls of the open pit; how the design is implemented; up-to-date procedures for wall control and performance assessment, including limits blasting, scaling, slope support and slope monitoring; and how formal risk management procedures can be applied to each stage of the process. This book will assist in meeting stakeholder requirements for pit slopes that are stable, in regards to safety, ore recovery and financial return, for the required life of the mine.
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