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Planning, Design, and Analysis of Tailings Dams Vick, Steven G.
Abstract
The disposal of mine waste, chiefly tailings, has of late assumed an importance that transcends even the massive volumes of materials produced annually by mining operations. From an engineering standpoint, some tailings embankments class among the largest earth structures in the world. Aside from their significance in strictly engineering terms, tailings impoundments receive intense regulatory attention and public scrutiny. Because of the land areas they disturb and the varying toxicities of the mine wastes they retain, tailings impoundments are often the lightning rod for public opposition to mining projects. Historically, tailings disposal began as the practice of dumping tailings into nearby streams and progressed to empirical design of impoundments by mine operators based on less than satisfactory principles of trial and error. Only within about the past 20 years have the principles of geotechnical engineering been applied to tailings embankments, ordinarily in the context of design practices for water-retention dams. Now, however, planning and design of tailings impoundments has become a multidisciplinary enterprise, one that requires a broader background in many diverse fields extending beyond the traditional application of geotechnical knowledge. This book is intended to provide a bridge between the various technical disciplines involved in tailings disposal and to illustrate the application of these fields to tailings disposal planning and design. In addition, the intent is to provide the reader with access to key sources of literature applying to tailings that heretofore have been scattered among various conferences, symposia, and journals in a wide range of technical fields.
Item Metadata
Title |
Planning, Design, and Analysis of Tailings Dams
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Creator | |
Publisher |
BiTech Publishers Ltd.
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Date Issued |
1990
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Description |
The disposal of mine waste, chiefly tailings, has of late assumed an importance that transcends even the massive volumes of materials produced annually by mining operations. From an engineering standpoint, some tailings embankments class among the largest earth structures in the world. Aside from their significance in strictly engineering terms, tailings impoundments receive intense regulatory attention and public scrutiny. Because of the land areas they disturb and the varying toxicities of the mine wastes they retain, tailings impoundments are often the lightning rod for public opposition to mining projects. Historically, tailings disposal began as the practice of dumping tailings into nearby streams and progressed to empirical design of impoundments by mine operators based on less than satisfactory principles of trial and error. Only within about the past 20 years have the principles of geotechnical engineering been applied to tailings embankments, ordinarily in the context of design practices for water-retention dams. Now, however, planning and design of tailings impoundments has become a multidisciplinary enterprise, one that requires a broader background in many diverse fields extending beyond the traditional application of geotechnical knowledge. This book is intended to provide a bridge between the various technical disciplines involved in tailings disposal and to illustrate the application of these fields to tailings disposal planning and design. In addition, the intent is to provide the reader with access to key sources of literature applying to tailings that heretofore have been scattered among various conferences, symposia, and journals in a wide range of technical fields.
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Genre | |
Type | |
Language |
eng
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Date Available |
2020-11-04
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Provider |
Vancouver : University of British Columbia Library
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Rights |
Attribution-NonCommercial-NoDerivatives 4.0 International
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DOI |
10.14288/1.0394902
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URI | |
Affiliation | |
Peer Review Status |
Unreviewed
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Scholarly Level |
Researcher
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Copyright Holder |
Steven G. Vick
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Rights URI | |
Aggregated Source Repository |
DSpace
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Item Media
Item Citations and Data
Rights
Attribution-NonCommercial-NoDerivatives 4.0 International