Volume II: Mining Innovation

Contemporary exploitation of natural raw materials by borehole, opencast, underground, seabed, and anthropogenic deposits is closely related to, among others, geomechanics, automation, computer science, and numerical methods. More and more often, individual fields of science coexist and complement e...

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collection Directory of Open Access Books
description Contemporary exploitation of natural raw materials by borehole, opencast, underground, seabed, and anthropogenic deposits is closely related to, among others, geomechanics, automation, computer science, and numerical methods. More and more often, individual fields of science coexist and complement each other, contributing to lowering exploitation costs, increasing production, and reduction of the time needed to prepare and exploit the deposit. The continuous development of national economies is related to the increasing demand for energy, metal, rock, and chemical resources. Very often, exploitation is carried out in complex geological and mining conditions, which are accompanied by natural hazards such as rock bursts, methane, coal dust explosion, spontaneous combustion, water, gas, and temperature. In order to conduct a safe and economically justified operation, modern construction materials are being used more and more often in mining to support excavations, both under static and dynamic loads. The individual production stages are supported by specialized computer programs for cutting the deposit as well as for modeling the behavior of the rock mass after excavation in it. Currently, the automation and monitoring of the mining works play a very important role, which will significantly contribute to the improvement of safety conditions. In this Special Issue of Energies, we focus on innovative laboratory, numerical, and industrial research that has a positive impact on the development of safety and exploitation in mining.
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publishDateRange 2022
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spelling doab-20.500.12854ir-937732024-04-11T15:11:09Z Volume II: Mining Innovation Skrzypkowski, Krzysztof strainburst local mine stiffness yielding rockbolt numerical modeling distinct element method underground mining rock properties cutting conical picks abrasive wear coal adsorption water vapour methanol vapour saturated hydrocarbons unsaturated hydrocarbons coal mining transport and assembly manipulator stability safety work ergonomics arch yielding support fault minimal section method RS3 hard rock mine sill pillar recovery upper bench level ground settlement tangential stress criteria burst potential index (BPI) simplification fitting discharge capacity window type draining well empirical formula back-calculation in geomechanics rock mechanics room and pillar mining system non-linear regression COVID-19 pandemic mining company epidemic emergency prevention good practices adjacent working face abandoned roadway stress evolution numerical simulation field monitoring rock mass stability copper ore mining hydrogen storage active carbon reliability fault diagnosis predictive maintenance machine learning lifetime distributions impact hammers industrial robotics autonomous mining blasting explosives detonation velocity artificial intelligence (AI) computational fluid dynamics (CFD) underground coal mines methane prediction real-time time series prediction modified long short-term memory energy transformation Green Deal InnoEnergy innovative education initiatives European Institute of Innovation and Technology (EIT) thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TT Other technologies and applied sciences::TTU Mining technology and engineering Contemporary exploitation of natural raw materials by borehole, opencast, underground, seabed, and anthropogenic deposits is closely related to, among others, geomechanics, automation, computer science, and numerical methods. More and more often, individual fields of science coexist and complement each other, contributing to lowering exploitation costs, increasing production, and reduction of the time needed to prepare and exploit the deposit. The continuous development of national economies is related to the increasing demand for energy, metal, rock, and chemical resources. Very often, exploitation is carried out in complex geological and mining conditions, which are accompanied by natural hazards such as rock bursts, methane, coal dust explosion, spontaneous combustion, water, gas, and temperature. In order to conduct a safe and economically justified operation, modern construction materials are being used more and more often in mining to support excavations, both under static and dynamic loads. The individual production stages are supported by specialized computer programs for cutting the deposit as well as for modeling the behavior of the rock mass after excavation in it. Currently, the automation and monitoring of the mining works play a very important role, which will significantly contribute to the improvement of safety conditions. In this Special Issue of Energies, we focus on innovative laboratory, numerical, and industrial research that has a positive impact on the development of safety and exploitation in mining. 2022-11-17T16:23:34Z 2022-11-17T16:23:34Z 2022 book ONIX_20221117_9783036555362_30 9783036555362 9783036555355 https://directory.doabooks.org/handle/20.500.12854/93773 eng image/jpeg Attribution 4.0 International https://mdpi.com/books/pdfview/book/6201 https://mdpi.com/books/pdfview/book/6201 MDPI - Multidisciplinary Digital Publishing Institute 10.3390/books978-3-0365-5536-2 10.3390/books978-3-0365-5536-2 46cabcaa-dd94-4bfe-87b4-55023c1b36d0 9783036555362 9783036555355 334 Basel open access
spellingShingle strainburst
local mine stiffness
yielding rockbolt
numerical modeling
distinct element method
underground mining
rock properties
cutting
conical picks
abrasive wear
coal
adsorption
water vapour
methanol vapour
saturated hydrocarbons
unsaturated hydrocarbons
coal mining
transport and assembly manipulator
stability
safety
work ergonomics
arch yielding support
fault
minimal section method
RS3
hard rock mine
sill pillar recovery
upper bench level
ground settlement
tangential stress criteria
burst potential index (BPI)
simplification fitting
discharge capacity
window type
draining well
empirical formula
back-calculation in geomechanics
rock mechanics
room and pillar mining system
non-linear regression
COVID-19
pandemic
mining company
epidemic emergency
prevention
good practices
adjacent working face
abandoned roadway
stress evolution
numerical simulation
field monitoring
rock mass stability
copper ore mining
hydrogen
storage
active carbon
reliability
fault diagnosis
predictive maintenance
machine learning
lifetime distributions
impact hammers
industrial robotics
autonomous mining
blasting
explosives
detonation velocity
artificial intelligence (AI)
computational fluid dynamics (CFD)
underground coal mines
methane prediction
real-time
time series prediction
modified long short-term memory
energy transformation
Green Deal
InnoEnergy
innovative education initiatives
European Institute of Innovation and Technology (EIT)
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TT Other technologies and applied sciences::TTU Mining technology and engineering
Volume II: Mining Innovation
title Volume II: Mining Innovation
title_full Volume II: Mining Innovation
title_fullStr Volume II: Mining Innovation
title_full_unstemmed Volume II: Mining Innovation
title_short Volume II: Mining Innovation
title_sort volume ii mining innovation
topic strainburst
local mine stiffness
yielding rockbolt
numerical modeling
distinct element method
underground mining
rock properties
cutting
conical picks
abrasive wear
coal
adsorption
water vapour
methanol vapour
saturated hydrocarbons
unsaturated hydrocarbons
coal mining
transport and assembly manipulator
stability
safety
work ergonomics
arch yielding support
fault
minimal section method
RS3
hard rock mine
sill pillar recovery
upper bench level
ground settlement
tangential stress criteria
burst potential index (BPI)
simplification fitting
discharge capacity
window type
draining well
empirical formula
back-calculation in geomechanics
rock mechanics
room and pillar mining system
non-linear regression
COVID-19
pandemic
mining company
epidemic emergency
prevention
good practices
adjacent working face
abandoned roadway
stress evolution
numerical simulation
field monitoring
rock mass stability
copper ore mining
hydrogen
storage
active carbon
reliability
fault diagnosis
predictive maintenance
machine learning
lifetime distributions
impact hammers
industrial robotics
autonomous mining
blasting
explosives
detonation velocity
artificial intelligence (AI)
computational fluid dynamics (CFD)
underground coal mines
methane prediction
real-time
time series prediction
modified long short-term memory
energy transformation
Green Deal
InnoEnergy
innovative education initiatives
European Institute of Innovation and Technology (EIT)
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TT Other technologies and applied sciences::TTU Mining technology and engineering
topic_facet strainburst
local mine stiffness
yielding rockbolt
numerical modeling
distinct element method
underground mining
rock properties
cutting
conical picks
abrasive wear
coal
adsorption
water vapour
methanol vapour
saturated hydrocarbons
unsaturated hydrocarbons
coal mining
transport and assembly manipulator
stability
safety
work ergonomics
arch yielding support
fault
minimal section method
RS3
hard rock mine
sill pillar recovery
upper bench level
ground settlement
tangential stress criteria
burst potential index (BPI)
simplification fitting
discharge capacity
window type
draining well
empirical formula
back-calculation in geomechanics
rock mechanics
room and pillar mining system
non-linear regression
COVID-19
pandemic
mining company
epidemic emergency
prevention
good practices
adjacent working face
abandoned roadway
stress evolution
numerical simulation
field monitoring
rock mass stability
copper ore mining
hydrogen
storage
active carbon
reliability
fault diagnosis
predictive maintenance
machine learning
lifetime distributions
impact hammers
industrial robotics
autonomous mining
blasting
explosives
detonation velocity
artificial intelligence (AI)
computational fluid dynamics (CFD)
underground coal mines
methane prediction
real-time
time series prediction
modified long short-term memory
energy transformation
Green Deal
InnoEnergy
innovative education initiatives
European Institute of Innovation and Technology (EIT)
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TT Other technologies and applied sciences::TTU Mining technology and engineering
url ONIX_20221117_9783036555362_30