Structural health monitoring (SHM) can be characterized as the integration of sensing and intelligence to enable the potential damage to be monitored, analyzed, localized, and predicted in real time and in a nondestructive manner. Over the past two decades, extensive research has demonstrated that fiber-optic sensors (FOSs) are well suited for SHM sensing requirements in infrastructure systems.
In this book, a brief overview of SHM and the application of FOS are presented. The book focuses on advanced techniques that utilize fiber-optic long-gauge sensing and overcome the limitations of traditional sensing and fulfill the requirements of infrastructure systems. The long-gauge FOSs have the merit of revealing both micro- and macrolevel information. Subsequently, a new approach, areawise distributed monitoring, is thoroughly discussed and its superior performance in SHM demonstrated. Finally, the application of areawise distributed monitoring, combined with the aforementioned long-gauge sensing technique, is presented for groups and networks of complex infrastructure systems.
"Sinopsis" puede pertenecer a otra edición de este libro.
Zhishen Wu is a professor at Southeast University, China and Ibaraki University, Japan. He is the president of the International Society for Structural Health Monitoring of Intelligent Infrastructure and the chief editor of the International Journal of Sustainable Materials and Structural Systems. He is a member of the Engineering Academy of Japan and a fellow of ASCE, JSCE, ISHMII, and IIFC.
Jian Zhang is a professor at Southeast University. He is a recognized researcher in structural health monitoring of bridges. He serves on the editorial board of the Structural Control and Health Monitoring Journal and is a recipient of the 1000 Program Distinguished Expert Young Scholar and Jiangsu Science Fund for Outstanding Young Scholars.
Mohammad Noori, a recognized researcher in AI techniques for structural health monitoring, and random vibrations, is an ASME Fellow and professor of mechanical engineering, at California Polytechnic State University. He has also been a distinguished visiting professor at Southeast University, in China and a recipient of Japan Society for Promotion of Science fellowship.
"Sobre este título" puede pertenecer a otra edición de este libro.
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Condición: Como nuevo. : Este libro presenta una visión general de la monitorización de la salud estructural (SHM) y la aplicación de sensores de fibra óptica (FOS). Se centra en técnicas avanzadas que utilizan la detección de galgas largas de fibra óptica y superan las limitaciones de la detección tradicional, cumpliendo con los requisitos de los sistemas de infraestructura. La técnica de detección de galgas largas FOS tiene el mérito de revelar información tanto a nivel micro como macro. Además, se analiza a fondo un nuevo enfoque, la monitorización distribuida por áreas, y se demuestra su rendimiento superior en SHM. Finalmente, se presenta la aplicación de la monitorización distribuida por áreas, combinada con la técnica de detección de galgas largas mencionada anteriormente, para grupos y redes de sistemas de infraestructura complejos. EAN: 9781945612244 Tipo: Libros Categoría: Tecnología|Ciencias Título: Fiber-Optic Sensors For Infrastructure Health Monitoring, Volume I Autor: Zhishen Wu| Jian Zhang| Mohammad Noori Editorial: Momentum Press Idioma: en Páginas: 186 Formato: tapa blanda. Nº de ref. del artículo: Happ-2025-01-17-256ac563
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Taschenbuch. Condición: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -Structural health monitoring (SHM) can be characterized as the integration of sensing and intelligence to enable the potential damage to be monitored, analyzed, localized, and predicted in real time and in a nondestructive manner. Over the past two decades, extensive research has demonstrated that fiber-optic sensors (FOSs) are well suited for SHM sensing requirements in infrastructure systems.In this book, a brief overview of SHM and the application of FOS are presented. The book focuses on advanced techniques that utilize fiber-optic long-gauge sensing and overcome the limitations of traditional sensing and fulfill the requirements of infrastructure systems. The long-gauge FOSs have the merit of revealing both micro- and macrolevel information. Subsequently, a new approach, areawise distributed monitoring, is thoroughly discussed and its superior performance in SHM demonstrated. Finally, the application of areawise distributed monitoring, combined with the aforementioned long-gauge sensing technique, is presented for groups and networks of complex infrastructure systems. 186 pp. Englisch. Nº de ref. del artículo: 9781945612244
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