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This book gathers the peer-reviewed papers presented at the 13th International Conference on Structural Analysis of Historical Constructions (SAHC), held in Kyoto, Japan, on September 12-15, 2023. It highlights the latest advances and innovations in the field of conservation and restoration of historical and heritage structures. The conference topics encompass history of construction and building technology, theory and practice of conservation, inspection methods, non-destructive techniques and laboratory testing, numerical modeling and structural analysis, management of heritage structures and conservation strategies, structural health monitoring, repair and strengthening strategies and techniques, vernacular constructions, seismic analysis and retrofit, vulnerability and risk analysis, resilience of historic areas to climate change and hazard events, durability, and sustainability. As such the book represents an invaluable, up-to-the-minute tool, providing an essential overview of conservation of historical constructions, and offers an important platform to engineers, architects, archeologists, and geophysicists. Chapter Guidelines for Seismic Retrofitting of Earthen Historic Buildings in Peru and Latin America is available open access under a Creative Commons Attribution 4.0 International License via link.springer.com.
This book presents the work done by the RILEM Technical Committee 274-TCE. It focuses on the estimation of the parameters which are necessary to properly design earthen constructions. It provides a compilation of the value classically obtained for the key parameters of earthen materials, a pedagogical presentation of the main testing procedures for earthen materials, their advantage and their drawback and an overview of most standards on earthen materials, whatever their origin and their language.The book is divided into eight chapters. After a general introduction on earthen materials and constructions, the state of the art on the material characterisation technics, the assessment of hygrothermal performance, the mechanical behaviour, seismic resistance and the durability will be presented, each in a dedicated chapter. On the basis of these last chapters, a critical review of the standards which are used for earthen material will be presented in the last chapter. The last chapter is dedicated to the analysis of the environmental potential of earth-based building materials.
This publication summarizes and describes the conclusions of more than 300 experimental tests carried out from 2011 to 2014 as part of the Seismic Retrofitting Project (SRP), and characterizes the material properties and structural behavior of the components of the four building prototypes selected for this project. The SRP aims to design and test easy-to-implement seismic retrofitting techniques, both traditional and state-of-the art, as well as maintenance programs that improve the structural performance of earthen historic buildings in Peru and other countries in Latin America. The performed tests were developed and carried out by the Escuela de Ciencias de Ingeniería of the Pontificia Universidad Católica del Perú (PUCP) in collaboration with the Getty and SRP consultants. Some of these tests were performed for the first time on earthen materials and/or structural components, providing valuable information to the field. Therefore, this publication is of significant value to engineers and conservation architects working in seismic areas. Partial results of this testing program have been published in the proceedings of several international conferences. However, this publication provides a more comprehensive overview and a deeper understanding of the mechanical behavior of materials and structural components of historic earthen buildings in Peru. The performed tests also provided valuable information to the numerical models that have been developed by TecMinho, University of Minho, Portugal to analyze the seismic capacity of each of the building prototypes. The results of this modeling phase are the subject of the SRP publications: Recommendations for Advanced Modeling of Historic Earthen Sites; Modeling of Prototype Buildings; and, Simplified Calculations for the Structural Analysis of Earthen Historic Sites.
Structural Analysis of Historical Constructions. Anamnesis, diagnosis, therapy, controls contains the papers presented at the 10th International Conference on Structural Analysis of Historical Constructions (SAHC2016, Leuven, Belgium, 13-15 September 2016). The main theme of the book is “Anamnesis, Diagnosis, Therapy, Controls”, which emphasizes the importance of all steps of a restoration process in order to obtain a thorough understanding of the structural behaviour of built cultural heritage. The contributions cover every aspect of the structural analysis of historical constructions, such as material characterization, structural modelling, static and dynamic monitoring, non-destructive techniques for on-site investigation, seismic behaviour, rehabilitation, traditional and innovative repair techniques, and case studies. A special focus has been put on six specific themes: - Innovation and heritage - Preventive conservation - Computational strategies for heritage structures - Sustainable strengthening of masonry with composites - Values and sustainability, and - Subsoil interaction The knowledge, insights and ideas in Structural Analysis of Historical Constructions. Anamnesis, diagnosis, therapy, controls make this book of abstracts and the corresponding, digital full-colour conference proceedings containing the full papers must-have literature for researchers and practitioners involved in the structural analysis of historical constructions.
This richly illustrated guide is acknowledged as the best source for expert, field-tested information on the care and maintenance of historic adobe buildings--from small vernacular structures to the great Spanish Colonial missions. As a true "how-to" manual, it presents a user-friendly and straightforward approach to the assessment, maintenance, preservation and restoration of earthen buildings based on time-tested techniques. Subjects include: architectural styles and materials; tools and equipment; materials and supplies; emergency shoring; moisture testing in adobe walls; material selection, mixing and testing; making adobe bricks; repairing and rebuilding adobe walls; repairing cracks in adobe walls; mud and lime plastering; earthen and lime finishes; removing contra paredes; repairing corbels; inspecting vigas and corbels; splicing vigas; compliance with State and Federal cultural resource protection legislation; glossary of terms; and bibliography. Cornerstones Community Partnerships in Santa Fe, New Mexico is devoted to the preservation of the architectural heritage and community traditions in New Mexico and the American Southwest. Through its nationally honored technical assistance, applied learning and traditional building skills programs, Cornerstones has assisted more than 300 rural Hispanic and Native American communities with the preservation of historic and culturally significant earthen buildings. Cornerstones has developed and utilized the techniques in this book throughout the American Southwest since 1986.
This present book describes the different construction systems and structural materials and elements within the main buildings typologies, and it analyses the particularities of each of them, including, at the end, general aspects concerning laboratory and in-situ testing, numerical modeling, vulnerability assessment and construction maintenance.
This handbook addresses three areas of concern for the museum administrator concerning the protection of historic buildings, monuments, and archaeological sites located in seismic areas. It proposes pre-disaster measures such as taking accurate and complete documentation (photogrammetry is discussed in one of the 13 appendixes), risk awareness, planning, maintenance and inspections, etc. Second, when an earthquake strikes, the immediate emergency steps necessary to protect life and property are indicated; and after the earthquake, the strengthening of valuable cultural property (based on the Modified Mercalli Intensity Scale, also in an appendix) should be included in the general program of prevention maintenance along with the repairs discussed in detail applicable to each architectural element, and to the site as a whole.
On October 14-19, 1990, the 6th International Conference on the Conservation of Earthen Architecture was held in Las Cruces, New Mexico. Sponsored by the GCI, the Museum of New Mexico State Monuments, ICCROM, CRATerre-EAG, and the National Park Service, under the aegis of US/ICOMOS, the event was organized to promote the exchange of ideas, techniques, and research findings on the conservation of earthen architecture. Presentations at the conference covered a diversity of subjects, including the historic traditions of earthen architecture, conservation and restoration, site preservation, studies in consolidation and seismic mitigation, and examinations of moisture problems, clay chemistry, and microstructures. In discussions that focused on the future, the application of modern technologies and materials to site conservation was urged, as was using scientific knowledge of existing structures in the creation of new, low-cost, earthen architecture housing.
Adobe, or mud brick, has been widely used as a building material in the American Southwest, including California. The vulnerability of many original adobe structures to damage or destruction from earthquakes has been of great concern. The guidelines presented here address the practical aspects of this problem and represent the culmination of 12 years of research and testing on the seismic retrofitting of adobe buildings. These guidelines can assist in the planning of seismic retrofitting projects consistent with both conservation principles and established public policy.
This book describes tests performed on model adobe buildings to evaluate seismic damage mitigation techniques applicable to the retrofitting of historic and culturally significant adobe structures. Part of the Getty Seismic Adobe Project (GSAP), the three-year program outlined in this volume was designed to develop and test minimally invasive, inexpensive, and easily implemented methods of protecting such structures from severe earthquake damage. Small- and large-scale models were tested on computer-controlled shaking tables at Stanford University and at the IIZIS Earthquake Engineering Laboratory in the Republic of Macedonia, respectively. The authors identify typical failure modes of adobe structures and describe specific retrofit techniques to help minimize such failures. Extensive photographic documentation is included.