Internal Erosion in Earthdams, Dikes and Levees - Proceedings
Internal Erosion in Earthdams, Dikes and Levees - Proceedings
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In this review of Internal Erosion in Earthdams, Dikes and Levees, the proceedings from the EWG-IE 26th Annual Meeting, the book is recommended for engineers and researchers who need a focused, peer-reviewed roundup of contemporary work on soil internal erosion. The single biggest reason to buy is its collection of technical papers that combine laboratory findings, modelling approaches and field assessment methods in one volume, making it a practical reference for design and investigation of water-retaining earth structures.
Key Features
- Peer-reviewed proceedings: Brings together vetted contributions from the 2018 EWG-IE meeting for reliable, research-based content useful in practice.
- Laboratory techniques and findings: Presents experimental methods and results that help readers compare and adopt test procedures in their own investigations.
- Modelling and design criteria: Includes modelling approaches that inform design decisions and numerical assessments for internal erosion scenarios.
- Prevention and mitigation measures: Discusses practical prevention strategies and design adaptations aimed at reducing internal erosion risk in embankments and levees.
- Field assessment cases: Offers examples and field assessment insights that help translate laboratory and modelling work to real-world projects.
Who It's For
This volume is best for civil and geotechnical engineers, academic researchers and graduate students focused on dam safety, levee stability and soil erosion mechanisms, who will value the conference-based, peer-reviewed papers and the mix of lab, modelling and field material. Practitioners involved in assessment, inspection and rehabilitation of earthdams and dikes will find actionable techniques and references to current research.
It is less suitable for casual readers or generalists seeking a broad textbook introduction; the content assumes some technical background and is oriented to specialists who need detailed, up-to-date research rather than an elementary primer.
Pros & Cons
Pros
- Consolidates recent, peer-reviewed work from a focused specialist meeting into one reference volume.
- Balances laboratory, modelling and field content to support both research and applied engineering decision making.
- Useful as a current snapshot of methods and prevention measures for internal erosion practitioners.
Cons
- The conference-proceedings format means coverage can be uneven across topics and assumes technical prior knowledge.
Specifications
| Title | Internal Erosion in Earthdams, Dikes and Levees: Proceedings of EWGIE 26th Annual Meeting 2018 |
| Series | Lecture Notes in Civil Engineering, 17 |
| Editors / Brand | Stephane Bonelli, Cristina Jommi, Donatella Sterpi |
| Event | EWG-IE 26th Annual Meeting, Milano, 10-13 September 2018 |
| Content focus | Laboratory techniques, modelling, prevention measures and field assessment |
| Audience | Scientists, practitioners, and graduate-level engineers |
Our Verdict
For specialists in geotechnical and dam engineering, this proceedings volume offers concentrated, peer-reviewed coverage of internal erosion topics that is both current and practically oriented. It represents good value as a reference book when one needs a compilation of experimental methods, modelling guidance and field assessment examples rooted in a recognized specialist meeting.
Frequently Asked Questions
Is this book peer reviewed?
Yes, the contributions are peer-reviewed papers presented at the 2018 EWG-IE annual meeting.
Who edited the volume?
The book is edited by Stephane Bonelli, Cristina Jommi and Donatella Sterpi.
Does it cover practical mitigation measures?
Yes, several papers address prevention strategies and mitigation measures alongside laboratory and modelling studies.
Editor's Take
This proceedings volume collects peer-reviewed papers from the EWG-IE 2018 meeting and is a valuable, practical reference for geotechnical engineers and researchers needing current laboratory methods, modelling guidance and field assessment examples for internal erosion in earth structures.

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