Seismic Design Guidelines for Upgrading Existing Buildings

Seismic Design Guidelines for Upgrading Existing Buildings
Author: Anonim
Publsiher: Unknown
Total Pages: 158
Release: 1988
Genre: Architecture
ISBN: MINN:20000004747792

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Guidelines for Seismic Retrofit of Existing Buildings

Guidelines for Seismic Retrofit of Existing Buildings
Author: Anonim
Publsiher: Unknown
Total Pages: 74
Release: 2001
Genre: Juvenile Nonfiction
ISBN: UOM:39015055199536

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This renamed version of the former Uniform code for building conservation guidelines for retrofitting unreinforced masonry bearing wall buildings, reinforced concrete and reinforced masonry buildings, wood frame residential buildings, and concrete with masonry infill buildings.

Tentative Provisions for the Development of Seismic Regulations for Buildings

Tentative Provisions for the Development of Seismic Regulations for Buildings
Author: Applied Technology Council
Publsiher: Unknown
Total Pages: 536
Release: 1978
Genre: Buildings
ISBN: UOM:39015007555488

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Reducing Seismic Hazards of Existing Buildings

Reducing Seismic Hazards of Existing Buildings
Author: Roger E. Scholl
Publsiher: DIANE Publishing
Total Pages: 224
Release: 1993-07
Genre: Electronic Book
ISBN: 1568065736

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Includes drawings.

Strengthening and Retrofitting of Existing Structures

Strengthening and Retrofitting of Existing Structures
Author: Anonim
Publsiher: Unknown
Total Pages: 375
Release: 2018-05
Genre: Electronic Book
ISBN: 1642241814

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Seismic retrofitting is the modification of existing structures to make them more resistant to seismic activity, ground motion, or soil failure due to earthquakes. The planning of changes to existing buildings differs from new planning through an important condition; the existing construction must be taken as the basis of all planning and building actions. The need for seismic retrofitting of an existing building can arise due to several reasons like: building not designed to code, subsequent updating of code and design practice, subsequent upgrading of seismic zone, deterioration of strength and aging, modification of existing structure, change in use of the building, etc. Seismic retrofit is primarily applied to achieve public safety, with various levels of structure and material survivability determined by economic considerations. In recent years, an increased urgency has been felt to strengthen the deficient buildings, as part of active disaster mitigation, and to work out the modifications that may be made to an existing structure to improve the structural performance during an earthquake. Seismic retrofitting schemes can be either global or local, based on how many members of the structures they are used for. Global Retrofit methods include conventional methods (increase seismic resistance of existing structures) or non-conventional methods (reduction of seismic demand). Strengthening and Retrofitting of Existing Structures is a compendium of cutting-edge trends of the research and existing practices in strengthening and retrofitting of structural elements, as well as the findings of a research endeavor initiated by the authors to investigate and develop a robust structural retrofitting scheme by utilizing elastomeric polymers to enhance the resistance of reinforced concrete (RC) structures. It addresses in detail specific techniques for the strengthening of traditional constructions, reinforced concrete buildings, bridges and their foundations. It also presents insight into the key issues relevant to seismic retrofit of concrete frame buildings. Many guidelines are reviewed regarding seismic rehabilitation of school, office, hospital and apartment buildings.

Guidelines for Seismic Evaluation of Existing Buildings

Guidelines for Seismic Evaluation of Existing Buildings
Author: Allen, D. E. (David E.),Institute for Research in Construction (Canada)
Publsiher: Institute for Research in Construction
Total Pages: 150
Release: 1993
Genre: Buildings
ISBN: 0660153823

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Seismic Assessment and Retrofit of Reinforced Concrete Buildings

Seismic Assessment and Retrofit of Reinforced Concrete Buildings
Author: fib Fédération internationale du béton
Publsiher: fib Fédération internationale du béton
Total Pages: 322
Release: 2003-08-01
Genre: Technology & Engineering
ISBN: 2883940649

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In most parts of the developed world, the building stock and the civil infrastructure are ageing and in constant need of maintenance, repair and upgrading. Moreover, in the light of our current knowledge and of modern codes, the majority of buildings stock and other types of structures in many parts of the world are substandard and deficient. This is especially so in earthquake-prone regions, as, even there, seismic design of structures is relatively recent. In those regions the major part of the seismic threat to human life and property comes from old buildings. Due to the infrastructure's increasing decay, frequently combined with the need for structural upgrading to meet more stringent design requirements (especially against seismic loads), structural retrofitting is becoming more and more important and receives today considerable emphasis throughout the world. In response to this need, a major part of the fib Model Code 2005, currently under development, is being devoted to structural conservation and maintenance. More importantly, in recognition of the importance of the seismic threat arising from existing substandard buildings, the first standards for structural upgrading to be promoted by the international engineering community and by regulatory authorities alike are for seismic rehabilitation of buildings. This is the case, for example, of Part 3: Strengthening and Repair of Buildings of Eurocode 8 (i. e. of the draft European Standard for earthquake-resistant design), and which is the only one among the current (2003) set of 58 Eurocodes attempting to address the problem of structural upgrading. It is also the case of the recent (2001) ASCE draft standard on Seismic evaluation of existing buildings and of the 1996 Law for promotion of seismic strengthening of existing reinforced concrete structures in Japan. As noted in Chapter 1 of this Bulletin, fib - as CEB and FIP did before - has placed considerable emphasis on assessment and rehabilitation of existing structures. The present Bulletin is a culmination of this effort in the special but very important field of seismic assessment and rehabilitation. It has been elaborated over a period of 4 years by Task Group 7.1 Assessment and retrofit of existing structures of fib Commission 7 Seismic design, a truly international team of experts, representing the expertise and experience of all the important seismic regions of the world. In the course of its work the team had six plenary two-day meetings: in January 1999 in Pavia, Italy; in August 1999 in Raleigh, North Carolina; in February 2000 in Queenstown, New Zealand; in July 2000 in Patras, Greece; in March 2001 in Lausanne, Switzerland; and in August 2001 in Seattle, Washington. In October 2002 the final draft of the Bulletin was presented to public during the 1st fib Congress in Osaka. It was also there that it was approved by fib Commission 7 Seismic Design. The contents is structured into main chapters as follows: 1 Introduction - 2 Performance objectives and system considerations - 3 Review of seismic assessment procedures - 4 Strength and deformation capacity of non-seismically detailed components - 5 Seismic retrofitting techniques - 6 Probabilistic concepts and methods - 7 Case studies

Seismic Evaluation of Existing Buildings

Seismic Evaluation of Existing Buildings
Author: Anonim
Publsiher: DIANE Publishing
Total Pages: 186
Release: 1993-07
Genre: Electronic Book
ISBN: 1568069928

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Provides design professionals & local building officials with a standard methodology to evaluate buildings of different types & occupancies in areas of different seismicity throughout the U.S.