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Groundwater chemical kinetics and fr...
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Li, Cangsong.
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Groundwater chemical kinetics and fractal characteristics of karst tunnel
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Groundwater chemical kinetics and fractal characteristics of karst tunnel/ by Cangsong Li ... [et al.].
其他作者:
Li, Cangsong.
出版者:
Singapore :Springer Singapore : : 2020.,
面頁冊數:
xxiii, 245 p. :ill. (some col.), digital ;24 cm.
內容註:
Introduction -- Analysis of Environmental Factors Influencing the Karst Dynamics System of Tunnel in Typical Area -- Dynamic Characteristics of Groundwater and Hydrochemical Dynamics in Karst Tunnel -- Karst Morphology and Its Fractal Characteristics Revealed by Tunnel Excavation -- Experimental Study on the Dissolution Mechanism of Rock under the Condition of Tunnel Excavation -- Correlation between Fractal Characteristics of Karst Morphology and Hydrochemical Dynamics -- Hydrochemical Kinetics-Fractal Index Evaluation of Karst Development Degree.
Contained By:
Springer eBooks
標題:
Hydrology, Karst. -
電子資源:
https://doi.org/10.1007/978-981-13-9953-4
ISBN:
9789811399534
Groundwater chemical kinetics and fractal characteristics of karst tunnel
Groundwater chemical kinetics and fractal characteristics of karst tunnel
[electronic resource] /by Cangsong Li ... [et al.]. - Singapore :Springer Singapore :2020. - xxiii, 245 p. :ill. (some col.), digital ;24 cm.
Introduction -- Analysis of Environmental Factors Influencing the Karst Dynamics System of Tunnel in Typical Area -- Dynamic Characteristics of Groundwater and Hydrochemical Dynamics in Karst Tunnel -- Karst Morphology and Its Fractal Characteristics Revealed by Tunnel Excavation -- Experimental Study on the Dissolution Mechanism of Rock under the Condition of Tunnel Excavation -- Correlation between Fractal Characteristics of Karst Morphology and Hydrochemical Dynamics -- Hydrochemical Kinetics-Fractal Index Evaluation of Karst Development Degree.
The key to the solution of geological hazards such as Karst water inrush and mud burst in tunnel lies in the accurate prediction or detection of Karst and groundwater. By means of on-site monitoring, theoretical analysis and indoor simulation experiments, the authors conduct in-depth research on the characteristics of water-bearing media and their mechanism of action, and explored the relevance of "Karst morphology", "Karst groundwater" and "fractal characteristics". An evaluation model of Karst development degree based on hydrochemical kinetic parameters and fractal index of Karst morphology is established. Based on the combination of Karst groundwater dynamics, hydrochemistry, water-rock interaction theory and fractal theory, the hydrochemical Kinetics and fractal index evaluation technique for Karst development is proposed. It provides a new theory and method for improving the accuracy of Karst and groundwater forecasting. The research results are of practical and guiding significance to the construction, Karst geological disasters prevention and management of various underground projects in Karst areas. Engineers and technicians, hydrogeological engineering geologists, and college students engaged in tunnel and underground engineering will find it valuable.
ISBN: 9789811399534
Standard No.: 10.1007/978-981-13-9953-4doiSubjects--Topical Terms:
549950
Hydrology, Karst.
LC Class. No.: GB843
Dewey Class. No.: 551.49
Groundwater chemical kinetics and fractal characteristics of karst tunnel
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Introduction -- Analysis of Environmental Factors Influencing the Karst Dynamics System of Tunnel in Typical Area -- Dynamic Characteristics of Groundwater and Hydrochemical Dynamics in Karst Tunnel -- Karst Morphology and Its Fractal Characteristics Revealed by Tunnel Excavation -- Experimental Study on the Dissolution Mechanism of Rock under the Condition of Tunnel Excavation -- Correlation between Fractal Characteristics of Karst Morphology and Hydrochemical Dynamics -- Hydrochemical Kinetics-Fractal Index Evaluation of Karst Development Degree.
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The key to the solution of geological hazards such as Karst water inrush and mud burst in tunnel lies in the accurate prediction or detection of Karst and groundwater. By means of on-site monitoring, theoretical analysis and indoor simulation experiments, the authors conduct in-depth research on the characteristics of water-bearing media and their mechanism of action, and explored the relevance of "Karst morphology", "Karst groundwater" and "fractal characteristics". An evaluation model of Karst development degree based on hydrochemical kinetic parameters and fractal index of Karst morphology is established. Based on the combination of Karst groundwater dynamics, hydrochemistry, water-rock interaction theory and fractal theory, the hydrochemical Kinetics and fractal index evaluation technique for Karst development is proposed. It provides a new theory and method for improving the accuracy of Karst and groundwater forecasting. The research results are of practical and guiding significance to the construction, Karst geological disasters prevention and management of various underground projects in Karst areas. Engineers and technicians, hydrogeological engineering geologists, and college students engaged in tunnel and underground engineering will find it valuable.
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