Riveiro / Solla | Non-Destructive Techniques for the Evaluation of Structures and Infrastructure | E-Book | sack.de
E-Book

E-Book, Englisch, 444 Seiten

Reihe: Structures and Infrastructures

Riveiro / Solla Non-Destructive Techniques for the Evaluation of Structures and Infrastructure


Erscheinungsjahr 2016
ISBN: 978-1-315-68515-1
Verlag: Taylor & Francis
Format: PDF
Kopierschutz: Adobe DRM (»Systemvoraussetzungen)

E-Book, Englisch, 444 Seiten

Reihe: Structures and Infrastructures

ISBN: 978-1-315-68515-1
Verlag: Taylor & Francis
Format: PDF
Kopierschutz: Adobe DRM (»Systemvoraussetzungen)



Non-destructive technologies have gained popularity in recent years related to the tasks involving characterization and diagnosis of constructions. The application of geomatics in construction engineering arises from the necessity of using real geometry in several phases of the construction and evaluation processes. This book provides an overview and up-to-date synthesis of the previously mentioned techniques to the field of civil engineering and includes topics relating to infrastructure and structures. Literature devoted to theory, basic fundamentals, and applications of these technologies has been compiled to show the potential of such methods.

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Weitere Infos & Material


An Overview of Non-Destructive Techniques. Introduction. Laser Scanning Technology: Fundamentals, Principles and Applications in Infrastructure. Close Range Photogrammetry: Fundamentals, Principles and Applications in Infrastructure. Geophysics. Fundamentals and Applications in Structures and Infrastructure. Ground Penetrating Radar: Fundamentals, Methodologies and Applications in Structures and Infrastructure. Infrared Thermography. Fundamentals, Principles and Applications in Infrastructure. Multispectral Imaging: Fundamentals, Principles and Applications to Damage Assessment in Constructions. Geographic Information Systems: Fundaments and Applications in Infrastructure Management. Applications in Structures and Infrastructure. Non-Destructive Testing of Tunnels: Application of LiDAR and GPR Technologies. Breakwaters Monitoring using Geomatic and Hydrographic Technologies. The Use of Geophysics for the Condition Assessment of Rail Infrastructure. Applications of the GPR Method for Road Inspection. Thermographic 3D Modelling of Existing Constructions. Practical Use of Multispectral Techniques for the Detection of Pathologies in Cultural Heritage Façades. Non-Destructive Techniques Applied to Ancient Masonry Arch Bridges Assessment: Structural Diagnosis and Geometric Modeling. Providing Geometry for the Automatic Creation of Structural Models. Metallic Structures in Industrial Factories. As-Built and Structural. New Management Tools and Intelligent Modelling. Infrastructure Management Systems Based on Non-Destructive Techniques: Roads and Bridges. Advanced Computational Approaches for GPR Processing and Interpretation. New Challenges in Laser Scanning Data Processing: Automatic Processing of Data and Object Recognition. BIM as Management Tool for Existing Buildings.


Dr. Belén Riveiro is an Assistant Professor of Structural Engineering at University of Vigo. She has been an Associate Professor at the School of Civil Engineering and Geosciences of Newcastle University in 2011-12 (UK) and visiting researcher at several research and academic institutions: the Institute for Applied Photogrammetry and Geoinformatics, Oldenburg (Germany, 2009), the Department of Civil Engineering of the New Mexico State University (USA, 2010) and at the Department of Civil Engineering of the University of Minho (Portugal, 2012-2013 and 2014). She got her PhD in the field of Civil Engineering where she tested different geomatic techniques, such as photogrammetry and laser scanning, towards their implementation in structural evaluation processes. Her postdoctoral research focuses on automating LiDAR data processing to implement its products into the field of structural engineering and smart cities. She has published 35 scientific papers in prestigious international journals (JCR) (h-index 8), 28 papers in international conferences, and is co-inventor of 4 patents. During her research career she has been participating as co-investigator in more than 35 national and international projects. Since 2012 she teaches courses of Mechanics of Materials and Stress Analysis, Structural analysis and Construction at the School of Industrial Engineering of the University of Vigo.

Dr. Mercedes Solla is an Assistant Professor of Mechanical Engineering, and mainly in Surveying and Construction, at the Defense Centre University (Spanish Naval Academy). Previously to this position, she has taught courses on Surveying and Construction, Non-Destructive Evaluation, Structural Analysis and Construction, and Mechanics of Materials and Stress Analysis at the School of Industrial Engineering at the University of Vigo. She received the PhD degree in the field of Civil Engineering, focusing on the Ground Penetrating Radar (GPR) method. She was a visiting researcher at the School of Engineering, Institute for Infrastructure and Environment at the University of Edinburgh, and she collaborated with the Edinburgh Parallel Computing Centre (EPCC) for the development of advanced FDTD numerical modeling. The purpose was to simulate the propagation of the GPR signal considering more realistic environments that are modeled from data obtained by other complementary geomatic techniques. Her postdoctoral research deals with the development of efficient and automated GPR data processing to structures and infrastructures. Since 2009, she has been collaborating with the Spanish National Research Council (CSIC) and she is an active member of the Transport and Urban Development COST Action TU1208 “Civil Engineering Applications of Ground Penetrating Radar” (Management Committee Member representing Spain and Vice-Chair of Working Group 4 -Different Applications of Ground Penetrating Radar and other Non-Destructive Testing Technologies in Civil Engineering-). She has published 30 scientific papers in prestigious international journals (JCR) (h-index 8), 40 papers in international conferences, and she is co-inventor of 1 patent. Since 2007, she has participated in more than 40 national and international projects.



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