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Статті в журналах з теми "Hard rock pillar"
Jessu, Kashi, Anthony Spearing, and Mostafa Sharifzadeh. "A Parametric Study of Blast Damage on Hard Rock Pillar Strength." Energies 11, no. 7 (July 20, 2018): 1901. http://dx.doi.org/10.3390/en11071901.
Повний текст джерелаKamran, Muhammad, Waseem Chaudhry, Blessing Olamide Taiwo, Shahab Hosseini, and Hafeezur Rehman. "Decision Intelligence-Based Predictive Modelling of Hard Rock Pillar Stability Using K-Nearest Neighbour Coupled with Grey Wolf Optimization Algorithm." Processes 12, no. 4 (April 13, 2024): 783. http://dx.doi.org/10.3390/pr12040783.
Повний текст джерелаXie, Xuebin, and Huaxi Zhang. "Research on Hard Rock Pillar Stability Prediction Based on SABO-LSSVM Model." Applied Sciences 14, no. 17 (September 2, 2024): 7733. http://dx.doi.org/10.3390/app14177733.
Повний текст джерелаKorzeniowski, W. "Rheological model of hard rock pillar." Rock Mechanics and Rock Engineering 24, no. 3 (1991): 155–66. http://dx.doi.org/10.1007/bf01042859.
Повний текст джерелаXu, Huawei, Derek B. Apel, Jun Wang, Chong Wei, and Krzysztof Skrzypkowski. "Investigation and Stability Assessment of Three Sill Pillar Recovery Schemes in a Hard Rock Mine." Energies 15, no. 10 (May 21, 2022): 3797. http://dx.doi.org/10.3390/en15103797.
Повний текст джерелаMa, Hai Tao, and Jin An Wang. "Dynamic Simulation Method for Hard-Rock Pillar Failure in Open-Stope Goaf." Applied Mechanics and Materials 556-562 (May 2014): 4055–60. http://dx.doi.org/10.4028/www.scientific.net/amm.556-562.4055.
Повний текст джерелаIle, D., and D. F. Malan. "A study of backfill confinement to reinforce pillars in bord-and-pillar layouts." Journal of the Southern African Institute of Mining and Metallurgy 123, no. 5 (July 13, 2023): 223–33. http://dx.doi.org/10.17159/2411-9717/2452/2023.
Повний текст джерелаNapier, J. A. L., and D. F. Malan. "Numerical simulation of large-scale pillar-layouts." Journal of the Southern African Institute of Mining and Metallurgy 123, no. 5 (July 13, 2023): 203–10. http://dx.doi.org/10.17159/2411-9717/2451/2023.
Повний текст джерелаLiu, Jiangwei, Changyou Liu, and Xuehua Li. "Determination of fracture location of double-sided directional fracturing pressure relief for hard roof of large upper goaf-side coal pillars." Energy Exploration & Exploitation 38, no. 1 (November 4, 2019): 111–36. http://dx.doi.org/10.1177/0144598719884701.
Повний текст джерелаLiang, Weizhang, Suizhi Luo, Guoyan Zhao, and Hao Wu. "Predicting Hard Rock Pillar Stability Using GBDT, XGBoost, and LightGBM Algorithms." Mathematics 8, no. 5 (May 11, 2020): 765. http://dx.doi.org/10.3390/math8050765.
Повний текст джерелаДисертації з теми "Hard rock pillar"
Li, Chuanqi. "Caractérisation automatique et semi-automatique des discontinuités des piliers de roche dure." Electronic Thesis or Diss., Université Grenoble Alpes, 2024. http://www.theses.fr/2024GRALI045.
Повний текст джерелаThe hard rock pillar is a unique rock structure that plays an ever-increasing role in maintaining underground space stability in metal mines. However, collapse, rock burst, local large area caving, and other adverse engineering disasters are frequently observed on the pillar with unknown discontinuity information. Therefore, the research on the characterization of discontinuities to improve mining safety is worth carrying out. On the other hand, with the popularization and application of artificial intelligence in mining, it is necessary to realize the automatic characterization of pillar discontinuous information.This dissertation aims to characterize the discontinuities of hard rock pillars using automatic or semi-automatic methods. The codes of the main algorithms are written in MATLAB, Python, and C++ languages, respectively. First, a non-contact measurement technique named the photogrammetry-based SfM is utilized to obtain discontinuity information represented by images. Then, a 3D pillar model is reconstructed to export point cloud data for detecting discontinuity sets and the corresponding planes and calculating discontinuity orientation using an automatic method. Next, the image data is adopted to establish deep learning models for extracting fracture traces. The skeletonization, quantitative description, and approximation are used to quantify trace length, dip angle, density, and intensity. Finally, the fracture trace spacing is characterized using a semi-automatic method. The extracted fracture traces are disconnected using an angle threshold algorithm and classified using a novel grouping algorithm. Three spacing indices can be calculated using scanlines set by users. The presented work first investigates discontinuous parameters of hard rock pillars, thus it provides real data for pillars’ support design, stability evaluation, and failure simulation analysis
Maybee, William Gregory. "Pillar design in hard brittle rocks." Thesis, National Library of Canada = Bibliothèque nationale du Canada, 2000. http://www.collectionscanada.ca/obj/s4/f2/dsk1/tape4/PQDD_0011/MQ61284.pdf.
Повний текст джерелаJessu, Kashi Vishwanath. "Investigating the Performance of Hard Rock Pillars with Different Width to Height Ratios and the Effects of Inclination, a Discontinuity and Blasting." Thesis, Curtin University, 2018. http://hdl.handle.net/20.500.11937/75347.
Повний текст джерелаLunder, Per John. "Hard rock pillar strength estimation an applied empirical approach." Thesis, 1994. http://hdl.handle.net/2429/5391.
Повний текст джерелаMandingaisa, Omberai. "Quantification of the impacts of rock mass quality on stope width control and pillar stability in a hard rock narrow reef mine." Thesis, 2018. https://hdl.handle.net/10539/26770.
Повний текст джерелаIn bord and pillar mining, pillar stability is a key element of the mining process. This is usually underpinned by successful adherence to planned mining stope width. Stope width control is the backbone to the grade control process in platinum mines on the great Dyke of Zimbabwe. Poor rock mass has always been used to explain the failures by mining personnel to meet the requisite stoping width. A quantification process for this risk in monetary terms is tested and proves that geotechnical risk at times does less damage to the business value stream than malpractices. A review process followed in this research shows the vital path to value preservation and reduction of unnecessary dilution of the ore. A robust pillar support system is critical in a bord and pillar setup in shallow mines. These pillars are designed not to yield nor crush. Despite meeting design criteria, however, pillars are still found to fail. A tool to quantify this risk in monetary terms is an unparalleled advantage. A classical case is presented in this research illustrating the critical steps that can be followed to scientifically provide management with the financial information on which to base decisions. Poor rock mass conditions will always require to be adequately supported for sustainability of the mining business. This normally requires the installation of longer tendons, a time-consuming process. A slightly more expensive support product (the Flexibolt) was tested in this research to optimise the support process resulting in great value addition to the business. A case study is presented in this research report. Proposals for inclusion of a geotechnical risk quantification process to assist management to make value-based mining layout and operational decisions are also presented in this report.
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Книги з теми "Hard rock pillar"
Maybee, William Gregory. Pillar design in hard brittle rocks. Sudbury, Ont: Mineral Resources Engineering, Laurentian University, 2000.
Знайти повний текст джерелаЧастини книг з теми "Hard rock pillar"
Spasojević, S., and K. Skrobic. "Examination of rock reinforcement and stability of the hard rock pillars due to the over-break and blast damage." In Expanding Underground - Knowledge and Passion to Make a Positive Impact on the World, 958–66. London: CRC Press, 2023. http://dx.doi.org/10.1201/9781003348030-115.
Повний текст джерелаHamediazad, Farzaneh, and Navid Bahrani. "Stability Analysis of Hard Rock Pillars Under Compressive and Shear Loading Conditions Using 2D and 3D Numerical Modeling." In Atlantis Highlights in Engineering, 859–69. Dordrecht: Atlantis Press International BV, 2023. http://dx.doi.org/10.2991/978-94-6463-258-3_80.
Повний текст джерелаJeremic, M. L. "Mine pillar structures." In Ground Mechanics in Hard Rock Mining, 211–56. CRC Press, 2020. http://dx.doi.org/10.1201/9781003079217-8.
Повний текст джерелаAndersson, Christer, Mikael Rinne, Isabella Staub, and Toivo Wanne. "The On-Going Pillar Stability Experiment at the Äspö Hard Rock Laboratory, Sweden." In Coupled Thermo-Hydro-Mechanical-Chemical Processes in Geo-Systems - Fundamentals, Modelling, Experiments and Applications, 389–94. Elsevier, 2004. http://dx.doi.org/10.1016/s1571-9960(04)80072-7.
Повний текст джерелаChing, Barbara. "Dying hard: Hard country at the finish line?" In Wrong’s What I do Best, 119–34. Oxford University PressNew York, NY, 2001. http://dx.doi.org/10.1093/oso/9780195108354.003.0006.
Повний текст джерелаDjerassi, Carl. "A softer chemist." In This Man’s Pill, 188–213. Oxford University PressOxford, 2001. http://dx.doi.org/10.1093/oso/9780198508724.003.0009.
Повний текст джерелаReddy, M. N., R. Venugopala Rao, S. Naik, and R. N. Gupta. "Novel approach to optimise the dimensions of pillars in underground hard rock mine." In Geoecology and Computers, 451–59. Routledge, 2018. http://dx.doi.org/10.1201/9780203753620-77.
Повний текст джерелаPytel, Witold, Bogumila Palac-Walko, and Piotr Mertuszka. "Geomechanical safety aspects in hard rocks mining based on room-and-pillar and longwall mining systems." In Minefill 2020-2021, 288–304. CRC Press, 2021. http://dx.doi.org/10.1201/9781003205906-26.
Повний текст джерелаClarke, Katherine. "Geographical and Historiographical Traditions." In Between Geography and History, 1–76. Oxford University PressOxford, 2000. http://dx.doi.org/10.1093/oso/9780199240036.003.0001.
Повний текст джерелаGratzer, Walter. "Dr Pincus’s pill." In Eurekas and euphorias, 252–53. Oxford University PressNew York, NY, 2002. http://dx.doi.org/10.1093/oso/9780192804037.003.0154.
Повний текст джерелаТези доповідей конференцій з теми "Hard rock pillar"
Dzimunya, N. Z., and Y. Fujii. "A Proposed Framework to Estimate Pillar Strength in Room-And-Pillar Hard Rock Mines." In 58th U.S. Rock Mechanics/Geomechanics Symposium. ARMA, 2024. http://dx.doi.org/10.56952/arma-2024-0116.
Повний текст джерелаWedding, Z., Z. Agioutantis, and J. Calnan. "Preliminary Laboratory Results of Irregularly Shaped Specimens Modeled After Irregularly Shaped Stone Pillars." In 57th U.S. Rock Mechanics/Geomechanics Symposium. ARMA, 2023. http://dx.doi.org/10.56952/arma-2023-0145.
Повний текст джерелаMoyo, S., T. Chikande, T. Zvarivadza, R. T. Masethe, A. C. Adoko, M. Onifade, and A. A. Firoozi. "Investigation into the Rock Mass Response to Pillar Extraction in a Hard Rock Tabular Mine." In 58th U.S. Rock Mechanics/Geomechanics Symposium. ARMA, 2024. http://dx.doi.org/10.56952/arma-2024-1011.
Повний текст джерелаLadinig, T., H. Wagner, and M. Grynienko. "Need and Design of a Field Test to Improve the Knowledge on Strength and Behavior of Massive Hard-Rock Pillars in Deep Mines." In 57th U.S. Rock Mechanics/Geomechanics Symposium. ARMA, 2023. http://dx.doi.org/10.56952/arma-2023-0400.
Повний текст джерелаBelzer, B. E., and N. Gupta. "Three-Dimensional Salt-Pillar Equations and Their Applications to Industry." In 57th U.S. Rock Mechanics/Geomechanics Symposium. ARMA, 2023. http://dx.doi.org/10.56952/arma-2023-0566.
Повний текст джерелаDeng, Jian. "The induced mechanism of pillar rockbursts in deep hard rock mines." In Seventh International Conference on Deep and High Stress Mining. Australian Centre for Geomechanics, Perth, 2014. http://dx.doi.org/10.36487/acg_rep/1410_49_deng.
Повний текст джерелаBahrani, Navid, Soheil Sanipour, and Farzaneh Hamediazad. "The strength of massive to moderately jointed hard rock masses for tunnel and pillar designs." In Deep Mining 2024: Proceedings of the 10th International Conference on Deep and High Stress Mining, 1123–34. , Perth, 2024. http://dx.doi.org/10.36487/acg_repo/2465_73.
Повний текст джерелаYao, M., and D. Landry. "Seismic Risk Management Practices at Vale's Sudbury Operations." In 58th U.S. Rock Mechanics/Geomechanics Symposium. ARMA, 2024. http://dx.doi.org/10.56952/arma-2024-0616.
Повний текст джерелаPutra, F., Hasan R. Meiharriko, and J. P. E. Hamman. "The Geotechnical Aspects of a Pillar Recovery Project in the DOZ Cave Mine." In 57th U.S. Rock Mechanics/Geomechanics Symposium. ARMA, 2023. http://dx.doi.org/10.56952/arma-2023-0292.
Повний текст джерелаRylance, Martin. "Optimist, Pessimist or Engineer - Conductivity Based on Need Not Fashion." In SPE International Hydraulic Fracturing Technology Conference & Exhibition. SPE, 2022. http://dx.doi.org/10.2118/205286-ms.
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