Let the Water Do the Work

Let the Water Do the Work

Author: Bill Zeedyk

Publisher: Chelsea Green Publishing

Published: 2014

Total Pages: 274

ISBN-13: 1603585699

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Let the Water Do the Work is an important contribution to riparian restoration. By "thinking like a creek," one can harness the regenerative power of floods to reshape stream banks and rebuild floodplains along gullied stream channels. Induced Meandering is an artful blend of the natural sciences - geomorphology, hydrology and ecology - which govern channel forming processes. Induced Meandering directly challenges the dominant paradigm of river and creek stabilization by promoting the intentional erosion of selected banks while fostering deposition of eroded materials on an evolving floodplain. The river self-heals as the growth of native riparian vegetation accelerates the meandering process. Not all stream channel types are appropriate for Induced Meandering, yet the Induced Meandering philosophy of "going with the flow" can inform all stream restoration projects. Induced meandering strives to understand rivers as timeless entities governed by immutable rules serving their watersheds, setting their own timetables, and coping with their own realities as they carry mountains grain by grain to the sea. Anyone with an interest in natural resource management in these uncertain times should read this book and put these ideas to work.


An Introduction to Flood Channel Stability Evaluation

An Introduction to Flood Channel Stability Evaluation

Author: J. Paul Guyer, P.E., R.A.

Publisher: Guyer Partners

Published: 2018-01-02

Total Pages: 43

ISBN-13:

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Introductory technical guidance for civil engineers and flood protection professionals interested in flood channel stability evaluation. Here is what is discussed: 1. GENERAL 2. LEVELS OF DETAIL 3. TECHNICAL APPROACHES AND THEIR APPLICATION 4. ALLOWABLE VELOCITY AND SHEAR STRESS 5. EMPIRICAL RELATIONSHIPS FOR CHANNEL PROPERTIES 6. ANALYTICAL RELATIONSHIPS FOR CHANNEL PROPERTIES 7. SEDIMENT TRANSPORT AND SEDIMENT BUDGET 8. SLOPE STABILITY 9. MEANDER GEOMETRY 10. BASINWIDE EVALUATION FOR SYSTEM REHABILITATION 11. GENERAL STEPWISE APPROACH 12. CHECKLIST OF ITEMS TO CONSIDER 13. EXAMPLE OF QUALITATIVE EVALUATIONS.


An Introduction to Flood Channel Stability Evaluation for Professional Engineers

An Introduction to Flood Channel Stability Evaluation for Professional Engineers

Author: J. Paul Guyer

Publisher: Guyer Partners

Published: 2023-05-31

Total Pages: 41

ISBN-13:

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Introductory technical guidance for civil engineers interested in flood protection engineering. Here is what is discussed: 1. GENERAL, 2. LEVELS OF DETAIL, 3. TECHNICAL APPROACHES AND THEIR APPLICATION, 4. ALLOWABLE VELOCITY AND SHEAR STRESS, 5. EMPIRICAL RELATIONSHIPS FOR CHANNEL PROPERTIES, 6. ANALYTICAL RELATIONSHIPS FOR CHANNEL PROPERTIES, 7. SEDIMENT TRANSPORT AND SEDIMENT BUDGET, 8. SLOPE STABILITY, 9. MEANDER GEOMETRY, 10. BASINWIDE EVALUATION FOR SYSTEM REHABILITATION, 11. GENERAL STEPWISE APPROACH, 12. CHECKLIST OF ITEMS TO CONSIDER, 13. EXAMPLE OF QUALITATIVE EVALUATIONS.


Robotic Systems: Concepts, Methodologies, Tools, and Applications

Robotic Systems: Concepts, Methodologies, Tools, and Applications

Author: Management Association, Information Resources

Publisher: IGI Global

Published: 2020-01-03

Total Pages: 2075

ISBN-13: 1799817555

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Through expanded intelligence, the use of robotics has fundamentally transformed a variety of fields, including manufacturing, aerospace, medicine, social services, and agriculture. Continued research on robotic design is critical to solving various dynamic obstacles individuals, enterprises, and humanity at large face on a daily basis. Robotic Systems: Concepts, Methodologies, Tools, and Applications is a vital reference source that delves into the current issues, methodologies, and trends relating to advanced robotic technology in the modern world. Highlighting a range of topics such as mechatronics, cybernetics, and human-computer interaction, this multi-volume book is ideally designed for robotics engineers, mechanical engineers, robotics technicians, operators, software engineers, designers, programmers, industry professionals, researchers, students, academicians, and computer practitioners seeking current research on developing innovative ideas for intelligent and autonomous robotics systems.