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ISBN: 9789048169214

Civil infrastructure systems are generally the most expensive assets in any country, and these systems are deteriorating at an alarming rate. In addition, these systems have a long servic… Meer...

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Sensing Issues in Civil Structural Health Monitoring - pocketboek

2010, ISBN: 9048169216

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Softcover reprint of hardcover 1st ed. 2005 Kartoniert / Broschiert Wissenschaftliche Standards, Normung usw., Bauingenieur-, Vermessungs- und Bauwesen, Hochbau und Baustoffe, Klimatech… Meer...

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Sensing Issues in Civil Structural Health Monitoring - pocketboek

2010

ISBN: 9789048169214

Springer, Taschenbuch, Auflage: Softcover reprint of hardcover 1st ed. 2005, 548 Seiten, Publiziert: 2010-10-19T00:00:01Z, Produktgruppe: Buch, 1.91 kg, Maschinenbau, Ingenieurwissenschaf… Meer...

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Sensing Issues in Civil Structural Health Monitoring - pocketboek

2010, ISBN: 9789048169214

Springer, Taschenbuch, Auflage: Softcover reprint of hardcover 1st ed. 2005, 548 Seiten, Publiziert: 2010-10-19T00:00:01Z, Produktgruppe: Buch, 1.91 kg, Maschinenbau, Ingenieurwissenschaf… Meer...

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Farhad Ansari:
Sensing Issues in Civil Structural Health Monitoring - pocketboek

ISBN: 9789048169214

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Bijzonderheden over het boek
Sensing Issues in Civil Structural Health Monitoring

This book provides information about the application of Structural Health Monitoring technologies to civil engineering structures including buildings, bridges, tunnels, dams, and pavements. The book is unique as it covers application of a broad spectrum of sensors for monitoring of cracks, deformations, loads, and other types of structural anomalies. The range of sensors covered includes conventional as well as novel sensors such as resistance type strain gauges, PZT, magnetic, fiber optics and smart materials. The book describes post earthquake structural health monitoring of historic structures such as masonry towers, real time monitoring of modem cable stayed structures and various construction materials including steel, concrete, and fiber reinforced polymer composites (FRP). It covers distributed and multiplexing schemes for monitoring of large structures, data acquisition and processing as well as techniques for interpretation of data. A specific section is dedicated to issues concerning sensor and instrumentation reliability and durability during sensor placement in harsh construction environment, adverse exposure conditions, and long term performance.

Gedetalleerde informatie over het boek. - Sensing Issues in Civil Structural Health Monitoring


EAN (ISBN-13): 9789048169214
ISBN (ISBN-10): 9048169216
Gebonden uitgave
pocket book
Verschijningsjaar: 2010
Uitgever: Ansari, Farhad, Springer
548 Bladzijden
Gewicht: 0,863 kg
Taal: eng/Englisch

Boek bevindt zich in het datenbestand sinds 2012-02-12T00:58:01+01:00 (Amsterdam)
Detailpagina laatst gewijzigd op 2021-10-10T22:52:23+02:00 (Amsterdam)
ISBN/EAN: 9789048169214

ISBN - alternatieve schrijfwijzen:
90-481-6921-6, 978-90-481-6921-4


Gegevens van de uitgever

Auteur: Farhad Ansari
Titel: Sensing Issues in Civil Structural Health Monitoring
Uitgeverij: Springer; Springer Netherland
527 Bladzijden
Verschijningsjaar: 2010-10-19
Dordrecht; NL
Gedrukt / Gemaakt in
Gewicht: 0,865 kg
Taal: Engels
229,99 € (DE)
236,43 € (AT)
253,50 CHF (CH)
POD

BC; Previously published in hardcover; Hardcover, Softcover / Technik/Bautechnik, Umwelttechnik; Bauingenieur-, Vermessungs- und Bauwesen; Verstehen; Stab; Tower; beam; concrete; girder; prestressed concrete; reinforced concrete; structure; C; Civil Engineering; Building Construction and Design; Measurement Science and Instrumentation; Vibration, Dynamical Systems, Control; Building Materials; Building Repair and Maintenance; Civil Engineering; Building Construction and Design; Measurement Science and Instrumentation; Multibody Systems and Mechanical Vibrations; Building Materials; Building Repair and Maintenance; Engineering; Hochbau und Baustoffe; Klimatechnik, Lichttechnik; Wissenschaftliche Standards, Normung usw. Maschinenbau: Festkörpermechanik; Hochbau und Baustoffe; Erhaltung von Gebäuden und Baustoffen (Denkmalpflege); BB

Foreword; Preface; Chapter I: Global perspectives on structural health monitoring of civil structures. Are civil structural engineers 'risk averse'? Can civionics help?, A.A. Mufti, B. Bakht, G. Tadros, A.T. Horosko, and G. Sparks; Monitoring technologies for maintenance and management of urban highways in Japan, Y. Adachi; The role of sensing and measurement in achieving FHWA’s strategic vision for highway infrastructure, S.B.Chase; Recent development of bridge health monitoring system in Korea, H.M. Koh, S. Kim, and J.F. Choo; A strategy to implement structural health monitoring on bridges, C. Sikorsky; Sensors — not just for research anymore, N.P. Vitillo; Investigation of the dynamic properties of the Brooklyn Bridge, Q. Ye, G. Fanjiang, and B. Yanev; Chapter II: Monitoring issues in ancient and modern structures. Distributed sensing technologies for monitoring frpstrengthened structures, Z.S. Wu and C.Q. Yang; Problems and perspectives in monitoring of ancient masonry structures, A. De Stefano and R. Ceravolo; Monitoring and response of CFRP prestressed concrete bridge, N.F. Grace; Design of temporary and permanent arrays to assess dynamic parameters in historical and monumental buildings, P. Clemente and D. Rinaldis; FRP-Strengthened structures: Monitoring issues from Québec applications, P. Labossière, P. Rochette, K.W. Neale, and M. Demers; Structural and material monitoring of historical objects, M. Drdáck; Chapter III: Sensing of structural parameters and extreme events. Internal and external sensing for post-earthquake evaluation of bridges, M. Saud Saudi, R. Nelson, and P. Laplace; Application of em stress sensors in large steel cables, M.L.Wang, G. Wang, and Y. Zhao; Enhancing durability of structures by monitoring strain and cracking behavior, B. Hillemeier, H. Scheel, and W. Habel; Development of an earthquake damage detection system for bridge structures, H. Kobayashi andS. Unjoh; Determination of rebar forces based on the exterior crack opening displacement measurement of reinforced concrete, T. Matsumoto and M.N. Islam; Monitoring system based on optical fiber sensing technology for tunnel structures and other infrastructure, K. Fujihashi, K. Kurihara, K. Hirayama, and S. Toyoda; Development of FBG sensors for structural health monitoring in civil infrastructures, Z. Zhou and J. Ou; Chapter IV: Smart sensors, imaging and NDT of civil structures. Monitoring of a smart concrete beam, Q.B. Li, L. Li, and F. Zhang; Fiber optic nerve systems with optical correlation domain technique for smart structures and smart materials, K. Hotate; Use of active sensors for health monitoring of transportation infrastructure, S. Nazarian; Health monitoring of concrete structures using self-diagnosis materials, H. Inada, Y. Okuhara, and H. Kumagai; Application of image analysis to steel structural engineering, K. Tateishi and T. Hanji; Shape memory alloy based smart civil structures with self-sensing and repairing capabilities, H. Li, C. Mao, Z. Liu, and J. Ou; Smart sensors and integrated SHM system for offshore structures, Z. Duan, J. Ou, Z. Zhou, and X. Zhao; Chapter V: Sensor system design, data quality, processing, and interpretation. Design considerations for sensing systems to ensure data quality, R. Zhang and E. Aktan; Practical implementations of intelligent monitoring systems in HIT, J.Ou; Health monitoring, damage prognosis and service-life prediction — issues related to implementation, V.M. Karbhari; Adaptive event detection for shm system monitoring, D.K. McNeill and L. Card; A note on interpretation of shm data for bridges, B. Bakht; Chapter VI: Sensor and instrumentation performance and reliability instrumentation performance during long-term bridge monitoring, I.N. Robertson, G.P. Johnson, and S. Wang; Stability and reliability of fiber-optic measurement systems —

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