Analytical and Experimental Methods in Mechanical and Civil Engineering

Analytical and Experimental Methods in Mechanical and Civil Engineering
Contributions of the 1st Olympiad in Engineering Science (OES 2023)
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Artikel-Nr:
9783031497223
Veröffentl:
2024
Einband:
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Erscheinungsdatum:
01.02.2024
Seiten:
600
Autor:
Dimitrios Pavlou
Gewicht:
1057 g
Format:
241x160x38 mm
Serie:
28, Structural Integrity
Sprache:
Englisch
Beschreibung:

Dimitrios Pavlou is Professor of Mechanics at University of Stavanger in Norway, and Elected Academician of the Norwegian Academy of Technological Sciences. He has had over twenty-five years of teaching and research experience in the fields of Theoretical and Applied Mechanics, Fracture Mechanics, Finite and Boundary Elements, Structural Dynamics, Anisotropic Materials, and their applications in Engineering Structures. He is the recipient of the 2022 Hojjat Adeli Award for Innovation in Computing, the most prestigious award in computational mechanics. He is also associate editor of five high-impact journals in civil and aerospace engineering and member of the editorial board of seven more ones. His research goal is to improve the structural safety and reliability of large structures using advanced numerical methods and algorithms. 

Dr. José A.F.O. Correia is a Researcher of CONSTRUCT (Institute of R&D in Structures and Construction) and INEGI (Institute ofScience and Innovation in Mechanical and Industrial Engineering) of the University of Porto (Portugal), and a Guest Teacher at the Engineering Structures Department of the Civil Engineering and Geosciences Faculty of the Delft University of Technology (Netherlands). Additionally, José A.F.O. Correia has some honorary positions attributed by institutions of world reference: - Adjunct Professor at the Xi'an Jiaotong University (China); - Guest Professor at São Paulo State University (Brazil); among others. His research interests are on structural integrity, fatigue and fracture of engineering materials and structures.

Tiago Fazeres-Ferradosa is an Assistant Professor at the Faculty of Engineering of the University of Porto (Dept. of Civil Eng.) and researcher of the Interdisciplinary Centre of Marine and Environmental Research (CIIMAR). He is currently responsible for the R&D unit Offshore Structures & Foundations at the Research Group of Hydraulic Structures and Marine Energy. His research portfolio includes several R&D projects related to offshore engineering and marine renewable energy research. He is also the President of the Specialized Commission Water and Energy of APRH, member at the Leadership Team of IAHR's Europe Division and an awarded researcher in the domains of Civil Engineering, Hydraulics, Offshore and Maritime Engineering and marine renewable energy research. He is also the President of the Specialized Commission Water and Energy of APRH and member at the Leadership Team of IAHR's Europe Division.

Ove Tobias Gudmestad is Professor Emeritus of Marine Technology at University of Stavanger, Adjunct Professor Emeritus of Cold Climate Engineering at UiT The Arctic University of Norway, Tromsø and Adjunct Professor of Maritime Technology at Western Norway University of Applied Science, Haugesund, Norway. He is an Elected Academician of the Norwegian Academy of Technological Sciences and of the Norwegian Scientific Academy of Polar Research. Prior to (and in parallel with) his academic career, he worked as technology advisor in the maritime industry. Through his career he has been involved in the development of national and international standards. His research interests are related to safe offshore structures and the effects of cold climate on engineered facilities. He has supervised more than 250 Master thesis and more than 35 PhD students (as main or co- advisor). 

Sudath C. Siriwardane is a Professor of Structural Engineering at the University of Stavanger in Norway. With approximately thirteen years of teaching experience, he specializes in lecturing on topics such as steel structures, plasticity theory, nonlinear analysis, and structural design. His primary research focus revolves around the fatigue behavior of steel structures, structural integrity, and the buckling of thin-walled structures. He has authored more than 75 papers in international journals and conf

This book publishes contributions of the 1st Olympiad in Engineering Science (OES 2023), an international congress and contest aiming to disseminate and evaluate the recent advances in Engineering Science. The book is divided in several parts. In 'Materials Science,' readers delve into nanostructural correlations in thermochromic VO2 thin films for smart windows, as well as microstructural observations of super duplex stainless steel. The 'Marine Technology' part explores riverbed scour, wave reflection, and innovative nature-based solutions for coastal protection. 'Additive Manufacturing and Welding Technology' delves into studies on carbon fiber-reinforced polymers and fatigue properties of 3D-printed specimens. 'Structural Integrity and Structural Health Monitoring' offers insights into offshore pipeline fatigue life prediction and risk-informed decision-making for existing structures. The 'Non-destructive Testing and Evaluation' part encompasses stress monitoring, rail profile measurement, and health-monitoring approaches for debonding diagnosis. 'Dynamics and Vibrations' ventures into investigations on combined viscous and Coulomb damped systems and seismic signal analysis for landslides. 'Materials Engineering' delves into strengthening reinforced concrete members and dynamic properties of carbon fiber-reinforced polymers. 'Building Materials and Concrete Structures' cover topics like minibar reinforced concrete, impact response of reinforced columns, and residual strength of cement-based composites. 'Electronic Sensors and Intelligent Systems' showcase simulations under high voltage transmission lines, synthesis of BaxSr(1-x)TiO3, and antenna catheter modeling. 'Asset Integrity' discusses analytical and experimental analyses of buckling in aluminum columns and I-beams, lateral-torsional buckling capacity, and modulation of fluid streams. Finally, 'Climate Change and Circular Economy' addresses climate-adaptive design, circular economy integration, and eco-innovative concrete applications with recycled materials. This book provides a comprehensive overview of cutting-edge research and advancements in mechanical and civil engineering, offering valuable insights for researchers, practitioners, and enthusiasts in the field.

Civil Engineering Structures.- Offshore and Marine Structures.- Pipelines and Risers.- Building Information Technology (BIM).-Bridges, Tunnels, Highrise Buildings.- Subsea Technology.- Offshore Field Development.- Autonomous submarines.- Pipelines Materials Science.- Corrosion and Corrosion Protection.- Non-Destructive Evaluation.- Magnetic Materials.- Thermoelectric Materials.- Nanomaterials.- Electron Microscopy.- Building Physics.- Sustainable Cities.- Green Energy Transition.- Biomechanics and Bioengineering.

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