New Experimental Capabilities and Loading Protocols for Seismic Fragility and Qualification of Nonstructural Components

New Experimental Capabilities and Loading Protocols for Seismic Fragility and Qualification of Nonstructural Components

Author: Rodrigo Retamales

Publisher:

Published: 2008

Total Pages: 374

ISBN-13:

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The seismic vulnerability of nonstructural components and equipment with their expensive recovery and/or replacement costs has been demonstrated during past earthquakes. The limited data collected from past earthquakes and the relatively scarce research in this field are not sufficient to completely characterize the seismic behavior of nonstructural components and develop effective mitigation measures. This is a serious deficiency considering that the investment in nonstructural components and building contents is far greater compared to structural components and framing. In order to address these deficiencies and to better understand the seismic behavior of nonstructural components, the University at Buffalo Nonstructural Component Simulator (UB-NCS), composed of a two-level testing frame, has been commissioned to subject nonstructural components to realistic full-scale floor motions. The UB-NCS testing platform can subject nonstructural systems to 3g acceleration, 100 in/s velocity and " 40 in displacement amplitudes. This new equipment provides improved experimental capabilities for more realistic qualification testing and fragility assessment of nonstructural systems. Full-scale, anchored or self-supported equipment and building contents, with attachment points at one or two consecutive building levels can be tested. Most important, equipment and combined nonstructural systems that may be sensitive to both accelerations and/or interstory drifts can be rigorously evaluated under realistic loading conditions to evaluate interdependencies among nonstructural components and the interaction with the primary structural system. The actual testing capabilities and limitations of the UB-NCS were evaluated through an extensive series of tests. The fidelity of the testing facility to reproduce, under controlled laboratory conditions, full-scale seismic floor motions expected in multistory buildings, and other random and harmonic motions was demonstrated. In order to archive a satisfactory equipment performance, an off-line compensation procedure was developed and recommended for testing of full-scale nonstructural specimens. In order to more broadly assess the seismic performance of nonstructural components, systems and equipment, independent of building or ground motion, an innovative set of testing protocols taking full advantage of the UB-NCS testing capabilities is proposed. The proposed protocols complement, and in some cases extend, the capabilities of current nonstructural qualification procedures such as the AC156 seismic qualification protocol and the fragility testing methodologies proposed in FEMA 461. In particular, new capabilities are provided for testing nonstructural systems with multiple attachment points that may be displacement and/or acceleration sensitive by simultaneously applying interstory drifts and absolute floor accelerations. The unique testing capabilities of the UB-NCS are demonstrated through a series of experiments assessing the seismic performance of a full-scale composite hospital emergency room containing typical nonstructural components such as architectural finishes, piping systems and life support medical equipment. In these tests, the seismic performance of individual nonstructural components and medical equipment was evaluated as well as the dynamic interactions and interdependencies between nonstructural systems and contents. The seismic behavior of displacement sensitive partition walls and acceleration sensitive wall mounted patient monitors were closely examined. The input motions for these tests included the loading protocol developed as part of this dissertation and simulated building floor motions.


Façade Design

Façade Design

Author:

Publisher: BoD – Books on Demand

Published: 2024-01-24

Total Pages: 158

ISBN-13: 0850141869

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Façade design is a challenging task, in which multidisciplinary issues and aspects should be optimally considered and addressed. This is especially the case of building façades exposed to seismic events, impacts, or fire. Special attention and major efforts are required for the detection and application of new technologies in the generation of modern, adaptive façade systems. This book presents a selection of research contributions to provide a comprehensive overview of façade design. It discusses the experimental analysis and numerical investigation of existing or traditional façades, as well as the development and optimal application of new technologies for modern adaptive façades and building envelopes.


Encyclopedia of Earthquake Engineering

Encyclopedia of Earthquake Engineering

Author: Michael Beer

Publisher: Springer

Published: 2016-01-30

Total Pages: 3953

ISBN-13: 9783642353437

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The Encyclopedia of Earthquake Engineering is designed to be the authoritative and comprehensive reference covering all major aspects of the science of earthquake engineering, specifically focusing on the interaction between earthquakes and infrastructure. The encyclopedia comprises approximately 300 contributions. Since earthquake engineering deals with the interaction between earthquake disturbances and the built infrastructure, the emphasis is on basic design processes important to both non-specialists and engineers so that readers become suitably well informed without needing to deal with the details of specialist understanding. The encyclopedia’s content provides technically-inclined and informed readers about the ways in which earthquakes can affect our infrastructure and how engineers would go about designing against, mitigating and remediating these effects. The coverage ranges from buildings, foundations, underground construction, lifelines and bridges, roads, embankments and slopes. The encyclopedia also aims to provide cross-disciplinary and cross-domain information to domain-experts. This is the first single reference encyclopedia of this breadth and scope that brings together the science, engineering and technological aspects of earthquakes and structures.


Performance-based Seismic Bridge Design

Performance-based Seismic Bridge Design

Author: M. Lee Marsh

Publisher: Transportation Research Board

Published: 2013

Total Pages: 138

ISBN-13: 0309223806

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"TRB's National Cooperative Highway Research Program (NCHRP) Synthesis 440, Performance-Based Seismic Bridge Design (PBSD) summarizes the current state of knowledge and practice for PBSD. PBSD is the process that links decision making for facility design with seismic input, facility response, and potential facility damage. The goal of PBSD is to provide decision makers and stakeholders with data that will enable them to allocate resources for construction based on levels of desired seismic performance"--Publisher's description.


Building for the Future: Durable, Sustainable, Resilient

Building for the Future: Durable, Sustainable, Resilient

Author: Alper Ilki

Publisher: Springer Nature

Published: 2023-07-04

Total Pages: 1808

ISBN-13: 3031325117

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This book presents the proceedings of the fib Symposium “Building for the future: Durable, Sustainable, Resilient”, held in Istanbul, Turkey, on 5–7 June 2023. The book covers topics such as concrete and innovative materials, structural performance and design, construction methods and management, and outstanding structures. fib (The International Federation for Structural Concrete) is a not-for-profit association whose mission is to develop at an international level the study of scientific and practical matters capable of advancing the technical, economic, aesthetic, and environmental performance of concrete construction.