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Introductory technical guidance for civil engineers, geotechnical engineers and construction managers interested in dewatering systems for groundwater control. Here is what is discussed: 1. PURPOSES OF DEWATERING SYSTEMS, 2. METHODS OF DEWATERING AND SOIL STABILIZATION, 3. FIELD INVESTIGATION FOR DEWATERING SYSTEMS, 4. DESIGN OF DEWATERING SYSTEM, 5. DESIGN OF WELL POINTS AND SIMILAR DEWATERING SYSTEMS, 6. MONITORING, 7. INSTALLATION OF DEWATERING WELLS AND WELL POINTS, 8. PUMPS FOR DEWATERING SYSTEMS, 9. ARTIFICIAL GROUND-WATER BARRIERS.
The most up-to-date guide to construction dewatering and groundwater control In the past dozen years, the methods of analyzing and treating groundwater conditions have vastly improved. The Third Edition of Construction Dewatering and Groundwater Control, reflecting the most current technology and practices, is a timely and much-needed overview of this rapidly changing field. Illustrated with hundreds of new figures and photographs and including numerous detailed case histories, the Third Edition of Construction Dewatering and Groundwater Control is a comprehensive and valuable reference for both students and practicing engineers alike. Drawing on real-world experience, the authors lead the reader through all facets of the theory and practice of this fascinating and often complex engineering discipline. Discussion includes: Dozens of case histories demonstrating various groundwater control practices and lessons learned in groundwater control and work performed Detailed methods of controlling groundwater by use of conventional dewatering methods as well as vertical barrier, grouted cutoff, and frozen ground techniques Contracting practices and conflict resolution methods that will help minimize disputes Alternatives and effective practices for handling and treating contaminated groundwater Innovations in equipment and materials that improve the performance and efficiency of groundwater control systems Practices and procedures for success in artificial recharge Groundwater modeling to simulate and plan dewatering projects Inclusion of dual U.S. customary and metric units throughout Construction Dewatering and Groundwater Control is an indispensable tool for all engineering and construction professionals searching for the most up-to-date coverage of groundwater control for various purposes, the modern ways to identify and analyze site-specific situations, and the modern tools available to control them.
A practical guide to problems of ground water control. Starts with a theoretical discussion based on soil mechanics, hydrology, geology, and fluid mechanics. Covers all practical aspects including costs, specifications, and contracts. Thoroughly illustrated with reference tables and charts.
Linking theory and application in a way that is clear and understandable, Groundwater Lowering in Construction: A Practical Guide to Dewatering, Second Edition uses the authors’ extensive engineering experience to offer practical guidance on the planning, design, and implementation of groundwater control systems under real conditions. Discover engineering methods that can help you improve working conditions, increase project viability, and reduce excavation costs. In the decade since publication of this book’s first edition, groundwater lowering and dewatering activities have been increasingly integrated into the wider ground engineering schemes on major excavations to help provide stable and workable conditions for construction below groundwater level. Consequently, many engineering ventures now require a more in-depth assessment of potential environmental impacts of dewatering and groundwater control, and this book details the latest best practices to evaluate and address them. Includes New Chapters Covering: Cutoff methods used for groundwater exclusion Issues associated with permanent or long-term groundwater control systems Groundwater control technologies used on contaminated sites Methods needed to understand, predict, and mitigate potential environmental impacts of groundwater control works Updated to reflect the crucial technological and application advances shaping construction processes, this book contains valuable direction that can give you a true competitive advantage in the planning and execution of temporary and permanent dewatering works. The authors cover cutting-edge methods and key subjects, such as the history of dewatering, working on contaminated sites, site investigation techniques, and operation and maintenance issues, including health, safety, and legal aspects. Written for practising engineers and geologists as well as postgraduate engineering students, this updated manual on design and practice provides numerous case histories and extensive references to enhance understanding.
Introductory technical guidance for civil engineers and construction managers interested in dewatering and groundwater control. Here is what is discussed: 1. PLANNING 2. FIELD PUMPING TEST 3. DESIGN 4. INSTALLATION AND OPERATION 5. CONTRACT SPECIFICATIONS.
Introductory technical guidance for civil engineers and other professional engineers and construction managers interested in dewatering systems for construction sites and other applications. Here is what is discussed: 1. INTRODUCTION, 2. METHODS FOR DEWATERING, PRESSURE RELIEF AND SEEPAGE CUTOFF, 3. GEOLOGIC, SOIL, AND GROUNDWATER INVESTIGATIONS.
Introductory technical guidance for civil and geotechnical engineers interested in specifications for dewatering and groundwater control.
This publication provides introductory technical guidance for civil engineers, geotechnical engineers, and other professional engineers and construction managers interested in dewatering systems typically associated with construction of foundations for buildings and other infrastructure. Here is what is discussed: 1. ANALYSIS OF GROUNDWATER FLOW, 2. MATHEMATICAL AND MODEL ANALYSES, 3. FLOW NET ANALYSES, 4. ELECTRICAL ANALOGY SEEPAGE MODELS, 5. NUMERICAL ANALYSES, 6. WELLPOINTS, WELLS, AND FILTERS, 7. PUMPS, HEADERS, AND DISCHARGE PIPES, 8. FACTORS OF SAFETY, 9. DEWATERING OPEN EXCAVATIONS, 10. DEWATERING SHAFTS AND TUNNELS, 11. PERMANENT PRESSURE RELIEF SYSTEMS, 12. FREEZING, 13. CONTROL OF SURFACE WATER.
Guidelines for Open Pit Slope Design is a comprehensive account of the open pit slope design process. Created as an outcome of the Large Open Pit (LOP) project, an international research and technology transfer project on rock slope stability in open pit mines, this book provides an up-to-date compendium of knowledge of the slope design processes that should be followed and the tools that are available to aid slope design practitioners. This book links innovative mining geomechanics research into the strength of closely jointed rock masses with the most recent advances in numerical modelling, creating more effective ways for predicting rock slope stability and reliability in open pit mines. It sets out the key elements of slope design, the required levels of effort and the acceptance criteria that are needed to satisfy best practice with respect to pit slope investigation, design, implementation and performance monitoring. Guidelines for Open Pit Slope Design comprises 14 chapters that directly follow the life of mine sequence from project commencement through to closure. It includes: information on gathering all of the field data that is required to create a 3D model of the geotechnical conditions at a mine site; how data is collated and used to design the walls of the open pit; how the design is implemented; up-to-date procedures for wall control and performance assessment, including limits blasting, scaling, slope support and slope monitoring; and how formal risk management procedures can be applied to each stage of the process. This book will assist in meeting stakeholder requirements for pit slopes that are stable, in regards to safety, ore recovery and financial return, for the required life of the mine.
This publication provides information and guidance on pumping methods used to control groundwater as part of the temporary works for construction projects.