The Seismic Behavior of Existing Unreinforced Masonry (URM Building)

The Seismic Behavior of Existing Unreinforced Masonry (URM Building) PDF Author: Ali A. Alassadi
Publisher:
ISBN:
Category : Civil engineering
Languages : en
Pages : 216

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The Seismic Behavior of Existing Unreinforced Masonry (URM Building)

The Seismic Behavior of Existing Unreinforced Masonry (URM Building) PDF Author: Ali A. Alassadi
Publisher:
ISBN:
Category : Civil engineering
Languages : en
Pages : 216

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The ShakeOut Scenario Supplemental Study: Unreinforced Masonry (URM) Buildings

The ShakeOut Scenario Supplemental Study: Unreinforced Masonry (URM) Buildings PDF Author:
Publisher: SPA Risk LLC
ISBN:
Category :
Languages : en
Pages : 16

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Seismic Technology of Existing Unreinforced Masonry (URM) Buildings

Seismic Technology of Existing Unreinforced Masonry (URM) Buildings PDF Author: Abdollah Parsa
Publisher:
ISBN:
Category : Buildings
Languages : en
Pages : 278

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Seismic Strengthening of Unreinforced Masonry Buildings

Seismic Strengthening of Unreinforced Masonry Buildings PDF Author: Kit M. Wong
Publisher:
ISBN:
Category : Buildings
Languages : en
Pages : 132

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A Performance-based Approach to Retrofitting Unreinforced Masonry Structures for Seismic Loads

A Performance-based Approach to Retrofitting Unreinforced Masonry Structures for Seismic Loads PDF Author: Keith Michael Bouchard
Publisher:
ISBN:
Category :
Languages : en
Pages : 118

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The structural inadequacy of existing unreinforced masonry (URM) buildings to resist possible seismic loading is a serious problem in many parts of the United States, including the Northeast and Midwest. The fact that many of these buildings are deemed historic structures or house critical facilities, like firehouses, emphasizes the need for an effective retrofitting program. The Federal Emergency Management Agency published a performance-based design code - FEMA 356 - in 2000 to use for analyzing and retrofitting existing structures. This code includes procedures for URM buildings. This paper applies these performance-based analysis procedures to a URM shear wall and compares the results to a modified analysis proposed by researchers. The wall is then rehabilitated using two common retrofit methods and again analyzed using the code. Recommendations are made for practicing engineers when evaluating URM structures for seismic loads.

Masonry Construction in Active Seismic Regions

Masonry Construction in Active Seismic Regions PDF Author: Rajesh Rupakhety
Publisher: Woodhead Publishing
ISBN: 0128231963
Category : Architecture
Languages : en
Pages : 482

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Book Description
During earthquakes, masonry buildings are the most affected, and consequently, damage to these buildings leads to massive loss of life and property. Masonry buildings comprise probably the greatest share of overall housing stock, and in turn, understanding their performance during earthquakes is a pivotal problem in seismic regions. Masonry Construction in Active Seismic Regions presents details on the kinds of masonry building found in seismic regions of the world. The title describes interventions, such as retrofitted solutions, dynamic identification, and improved construction after earthquakes, that are equally applicable to regions of moderate and high seismicity. The book covers representative masonry buildings from active seismic regions, the material properties of masonry construction, numerical modelling techniques and computational advances, seismic performance of non-engineered masonry buildings, resilience in typical construction, retrofitting, and the cultural values and structural characterization of heritage masonry buildings in active seismic regions. This book is unique in its global and systematic coverage of masonry construction in seismic regions. Identifies the material properties of masonry construction from a seismic perspective Covers representative masonry buildings from active seismic regions, providing a benchmark to understand existing building stocks Provides numerical modelling techniques and reviews computational advances, including a large test database Details the seismic performance of non-engineered masonry buildings, as well as the cultural values and structural characterisation of heritage masonry constructions Analyses typical or vernacular constructions which have earthquake resilient features, such as Dhajji-Dewari, Borbone, Pombalino, and Himis

Seismic Evaluation of Existing Stone Unreinforced Masonry Walls Using Predictive Parameters for Strengthening Interventions

Seismic Evaluation of Existing Stone Unreinforced Masonry Walls Using Predictive Parameters for Strengthening Interventions PDF Author: Hassan Ayoubi
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

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Book Description
The seismic evaluation of existing unreinforced masonry (URM) structures is deemed essential due to their historical value and the vulnerability they present when subjected to earthquake shaking. Most of these buildings, constructed in the last century, do not comply with the current seismic codes and masonry standard. This study focusses on the assessment of URM walls subjected to lateral loading and more in detail to the behaviour of structural components such as the piers and spandrels. The behavior of structural elements, comprising the shear and bending failure modes, are investigated; these failure modes can be detected through the crack propagation initiated in building's masonry walls. Then, a parametric study on a series of capacity formulations of piers and spandrels is performed and each failure mode is investigated independently in the aim of assessing the accuracy in capturing their strength. Three experimental test data are used to validate the efficiency of formulations for diagonal shear and data from five testing programs are used to validate the proposed formulations used to predict the maximum shear force resulting from flexural behavior of piers. Subsequently, a deterministic model for piers is built using an open-source software to generate data required to build a linear relationship between different parameters and the performance criteria expressed in terms of strength and ductility. A case study comprising an URM facade wall of an existing 2-storey school building in Montreal is also conducted and certain strengthening interventions are presented. Further, the generated data is used to build probabilistic models that operates on Bayesian Networks. Nonlinear analysis using the target and the predictive variables are carried out. Machine learning algorithms are applied to acquire the entropy reduction factors which helps determining the most predictive variables used to assess the performance of piers.

Characterisation and Seismic Assessment of Unreinforced Masonry Buildings

Characterisation and Seismic Assessment of Unreinforced Masonry Buildings PDF Author: Alistair Peter Russell
Publisher:
ISBN:
Category : Brick walls
Languages : en
Pages : 316

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Seismic Analysis of Multi-Story Unreinforced Masonry Buildings with Flexible Diaphragms

Seismic Analysis of Multi-Story Unreinforced Masonry Buildings with Flexible Diaphragms PDF Author: Juan Aleman Hernandez
Publisher:
ISBN:
Category :
Languages : en
Pages : 374

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Book Description
Studies regarding the regional seismicity of New York City (NYC) indicate that earthquakes of magnitude greater than or equal to 5 have a 20-40% probability of occurring in a 50 year period. Considering that more than 50% of the large population of the region (19.1 million) is living in an area where 80% of the buildings are of old Unreinforced Masonry (URM) construction, it is likely that even a moderate earthquake could have critical consequences on public safety and the economy of this area. The main goal of this study was to develop simulation capabilities supported by experimental testing to evaluate the seismic performance of typical unreinforced masonry buildings with flexible diaphragms located in NYC. Simplified nonlinear macro-models of wood diaphragms, masonry walls and floor-to-wall connections were developed and validated individually using data from past experiments. The models are implemented in both commercial and research software to demonstrate their practical use. In particular, a new approach for modeling flexible diaphragms is proposed that is shown to provide similar accuracy to detailed finite element models at a fraction of the computation cost. The models developed were also validated as at the system level, through shake table testing of two full-scale specimens conducted as part of this study. The specimens were designed and constructed to represent the expected loading conditions of a central portion of a one-story URM building and constructed of materials representative of older masonry construction. The tests provide a unique data set that captures the interaction between flexible floors, out-of-plane walls and their connections at, full scale.The validated macro-models can be used for performance-based seismic assessment of unreinforced masonry building in NYC and elsewhere. To demonstrate their use, preliminary studies were conducted to develop out-of-plane URM fragility curves, a building-specific collapse fragility function, and estimate the seismic response of the building when subjected to a ground shaking intensity similar to the 2011 Virginia Earthquake. The probabilistic framework and new performance definitions provided by the FEMA P58 project were used to conduct a performance-based seismic assessment for an archetype unreinforced masonry building in New York City with an emphasis on out-of-plane behavior. This preliminary study served to demonstrate the applicability of the proposed models for applications in performance-based design.

Seismic Assessment of Unreinforced Masonry Buildings In Canada

Seismic Assessment of Unreinforced Masonry Buildings In Canada PDF Author: Gilbert BĂ©lec
Publisher:
ISBN:
Category :
Languages : en
Pages :

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