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Drystone Retaining Walls

Design, Construction and Assessment
Book Hero Magic crafted this summary to help describe this book. While it's new and still learning, it may not be perfect - your feedback is welcome! Summary
Drystone Retaining Walls explores the practice of constructing retaining walls using drystone techniques, which efficiently employ local materials and harmonise with the surrounding landscape. The book explains the complex engineering behaviour of these walls, including their unique ductility and adaptability to environmental changes. It offers practical guidance on design, construction, and assessment, providing theoretical frameworks, construction rules, sizing charts, and considerations of sustainability. Suitable for those without prior civil engineering knowledge, it also supplies professional engineers with reliable methods and insights to confidently design and evaluate drystone retaining walls that are both functional and aesthetically pleasing.
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Format: Hardback
$34100
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This book is ideal for engineers, designers, and practitioners interested in sustainable construction and heritage preservation, as well as readers seeking a detailed understanding of drystone retaining wall engineering without requiring advanced prior knowledge.

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Book Hero Magic formatted this description to make it easier to read. While it's new and still learning, it may not be perfect - your feedback is welcome! Description

Take a Detailed Look at the Practice of Drystone Retaining Wall Construction

Drystone retaining walls make very efficient use of local materials and sit comfortably in their environment. They make an important contribution to heritage and to the character of the landscape, and are loved by many people who value the skill and ingenuity that has gone into their construction, as well as simply how they look.

And yet, in engineering terms, they are complex. They can deform significantly as their loading changes and their constituent stones weather. This gives them ductilityโ€”they deal with changes by adapting to them. In some ways, they behave like conventional concrete retaining walls, but in many ways, they are better. They cannot be designed or assessed correctly unless these differences are understood.

Implementing concepts that require no prior knowledge of civil engineering, the authors:

  • Explain the behaviour of earth retaining structures
  • Provide a theoretical framework for modelling the mechanical stability of a drystone retaining wall
  • Outline reliable rules for constructing a drystone retaining wall
  • Include charts to support the preliminary sizing of drystone retaining walls
  • Examine the relevance of drystone in terms of sustainability
  • Describe more advanced methods of analysis

Drystone Retaining Walls: Design, Construction and Assessment draws on theoretical work and full-scale practical testing to explain how these structures work, without presuming that the reader has received an engineering education. The book goes on to give enough detail to give the professional engineer confidence in the methods used in design and assessment, and insight into what matters most in the way in which drystone retaining walls are built.

It shows how to design new or replacement drystone retaining walls that are efficient, sustainable, attractive, and in keeping with the character of the area where they are built, and demonstrates how to make fair assessments of existing walls.

Series: Applied Geotechnics

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Book Details

INFORMATION

ISBN: 9781482250886

Publisher: Taylor & Francis Inc

Format: Hardback

Date Published: 25 September 2015

Country: United States

Imprint: CRC Press Inc

Illustration: 7 Tables, black and white; 126 Illustrations, black and white

Audience: Tertiary education, Professional and scholarly

DIMENSIONS

Width: 156.0mm

Height: 234.0mm

Weight: 460g

Pages: 170

About the Author

Paul F. McCombie graduated with a BA in engineering from Cambridge University in 1981. He then worked for a consulting engineer and studied for an M.Sc in soil mechanics at Imperial College, London. After three years with Netlon Limited, in 1990 he moved to the University of Bath, where he served as director of studies for civil engineering and head of civil engineering. He has been deputy head of department since 2009. In 2010, he was awarded the Institution of Civil Engineers John Mitchell Medal for his research on dry stone retaining walls within the BRE Centre for Innovative Construction Materials (BRE CICM).


Jean-Claude Morel

was director of research (equivalent to professor) at ร‰cole Nationale des Travaux Publics de lโ€™ร‰tat (ENTPE) in France. He is now professor of low impact buildings at Coventry University. He gained his Ph.D in 1996 from the University Joseph Fourier of Grenoble. In 1998, following an invitation from the architect Patrick Cohen, he initiated a series of research projects on drystone walls, at first with Boris Villemus, and later with Denis Garnier, Anne-Sophie Colas, and then Eric Vincens. He has carried out major research work on low-impact building materials, including a series of testing campaigns on full-scale dry stone retaining structures, on which he has published extensively.

Denis Garnier

gained his Ph.D in soil mechanics in the prestigious ร‰cole Nationale des Ponts et Chaussรฉes (Paris, France), where he is now senior lecturer and teaches the course on continuum mechanics. He is also professor at ENTPE (member of the University of Lyons, France), where he teaches the course of yield design analysis theories. He started his research in the team of Jean Salenรงon with Patrick de Buhan. He has carried out major research work on rock engineering and the stability modelling of drystone structures, mainly based on homogenization theories. He collaborates with Jean-Claude Morel of ENTPE in 3D modelling and full-scale experiments of dry stone masonries.

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