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This book summarizes the advances in mine hydrogeology in terms of
the development of new technologies and sustainable mining to
prevent water inrush disasters during coal-mine construction and
production in China. It presents holistic topics that balance safe
coal mining and the minimization of impacts on the environment and
human beings. Systematically describing the methods and techniques
used in China's coal mines to predict, prevent and mitigate water
inrushes, it includes nine case studies to illustrate the practical
engineering solutions using state-of-art methods and technologies
under various conditions. It also discusses how the approaches
could help solve the world's water problems, not only in mining,
but also in tunneling, disposing of nuclear waste, storing natural
gas, and sequestering CO2, as well as their impact on mining
industries and related fields around the world. The book intended
for students, researchers and practitioners working in the mining
industries.
This book summarizes the advances in mine hydrogeology in terms of
the development of new technologies and sustainable mining to
prevent water inrush disasters during coal-mine construction and
production in China. It presents holistic topics that balance safe
coal mining and the minimization of impacts on the environment and
human beings. Systematically describing the methods and techniques
used in China's coal mines to predict, prevent and mitigate water
inrushes, it includes nine case studies to illustrate the practical
engineering solutions using state-of-art methods and technologies
under various conditions. It also discusses how the approaches
could help solve the world's water problems, not only in mining,
but also in tunneling, disposing of nuclear waste, storing natural
gas, and sequestering CO2, as well as their impact on mining
industries and related fields around the world. The book intended
for students, researchers and practitioners working in the mining
industries.
Arid-semiarid regions have suffered from sharp conflicts among
water resource utilization, mining, and the environmental
protection. Sustainable development in these regions requires a
close coordination between economy, society and the environment.
Based on systematic hydrogeological investigations, laboratory and
in-situ tests, and application of innovative methodologies
including theoretical analysis modeling and prediction to study
water resource distribution (including surface water, groundwater,
mine water and coal mine domestic water) in mining areas, this
dissertation provides detailed analysis of the current situation
and trend of water uses in domestic supply, agriculture and
industry. It evaluates the status development and utilization,
evolution trend, exploitation and utilization potential of water
resources in Shen-Dong Coal Mine area, one of China's extra-large
coal bases. Incorporated with the long and intermediate terms'
development strategies of this area, the dissertation lays out a
scientific allocation scheme of water resources in different
hydrological years and proposes a planning mode of water resources
development and utilization and a technical scheme for
comprehensive water resources utilization to provide technical
supports for the optimal allocation, rational exploitation,
comprehensive utilization and scientific management of water
resources. This dissertation is one of the best in Chang'an
University because of the volume of reliable data, defensible
scientific analysis, and world significance of the research
results.
Arid-semiarid regions have suffered from sharp conflicts among
water resource utilization, mining, and the environmental
protection. Sustainable development in these regions requires a
close coordination between economy, society and the environment.
Based on systematic hydrogeological investigations, laboratory and
in-situ tests, and application of innovative methodologies
including theoretical analysis modeling and prediction to study
water resource distribution (including surface water, groundwater,
mine water and coal mine domestic water) in mining areas, this
dissertation provides detailed analysis of the current situation
and trend of water uses in domestic supply, agriculture and
industry. It evaluates the status development and utilization,
evolution trend, exploitation and utilization potential of water
resources in Shen-Dong Coal Mine area, one of China's extra-large
coal bases. Incorporated with the long and intermediate terms'
development strategies of this area, the dissertation lays out a
scientific allocation scheme of water resources in different
hydrological years and proposes a planning mode of water resources
development and utilization and a technical scheme for
comprehensive water resources utilization to provide technical
supports for the optimal allocation, rational exploitation,
comprehensive utilization and scientific management of water
resources. This dissertation is one of the best in Chang'an
University because of the volume of reliable data, defensible
scientific analysis, and world significance of the research
results.
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