Performance-based Seismic Retrofit of Soft-story Woodframe Buildings Using Energy-dissipation Systems

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Release : 2014
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Performance-based Seismic Retrofit of Soft-story Woodframe Buildings Using Energy-dissipation Systems - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Performance-based Seismic Retrofit of Soft-story Woodframe Buildings Using Energy-dissipation Systems write by Jingjing Tian. This book was released on 2014. Performance-based Seismic Retrofit of Soft-story Woodframe Buildings Using Energy-dissipation Systems available in PDF, EPUB and Kindle.

Performance-Based Analytics-Driven Seismic Retrofit of Woodframe Buildings

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Release : 2020
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Performance-Based Analytics-Driven Seismic Retrofit of Woodframe Buildings - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Performance-Based Analytics-Driven Seismic Retrofit of Woodframe Buildings write by Zhengxiang Yi. This book was released on 2020. Performance-Based Analytics-Driven Seismic Retrofit of Woodframe Buildings available in PDF, EPUB and Kindle. Woodframe construction is commonly used for single and multifamily residential buildings in the United States. In many parts of California, multifamily woodframe residential buildings are constructed with open first stories, which have much less strength and stiffness compared to the ones above. In older single-family residences, the "crawl space" is constructed with unbraced and unbolted cripple walls. Both these conditions lead to a soft-story response during seismic loading, resulting significant damage, economic losses and even collapse. This type of vulnerability is often addressed through seismic retrofits, which can be mandated by local jurisdictions (e.g., the Los Angeles Soft-Story Ordinance) or incentivized by state or local entities (e.g., the California Earthquake Authority Brace and Bolt Program). A key challenge in implementing these retrofit programs (mandated or incentivized) is quantifying the improvements in performance at the individual and portfolio scale and creating design procedures that maximize the overall benefit. This research integrates nonlinear structural modeling, performance-based assessments and advanced statistical and machine learning techniques to quantify the benefit of soft-story woodframe building retrofit and develop optimal design solutions that maximize regional performance. The considered construction types include single-family houses with unbraced cripple walls developed as part of the recently completed Pacific Earthquake Engineering Research Institute (PEER) and California Earthquake Authority (CEA) project and multi-family residences with soft, weak and open front wall lines (SWOF). An end-to-end computational platform is developed to automate the construction and analysis of archetype numerical models in OpenSees and conduct seismic evaluations based on the PEER performance-based earthquake engineering framework. The performance of existing and retrofitted buildings is assessed in terms of collapse safety and direct (due to earthquake damage) economic losses. The effect of retrofit and various structural characteristics is illuminated for the single-family cripple wall houses. 2^k full factorial experiment design combined with hypothesis testing is used to identify the most influential structural properties. Two story buildings performed worse than their one-story counterparts and pre-1945 buildings performed better than pre-1955 construction. Building performance is found to be positively correlated with cripple wall heights and cripple wall retrofits provided significant overall improvements. Surrogate models are developed as a compact statistical link between key structural characteristics and seismic performance. Several machine learning algorithms are investigated for predicting the building median collapse intensity and expected annual loss using the cripple wall height, seismic weight, damping ratio and material properties as features. The XGBoost algorithm provides the most accurate prediction and on average, limits the prediction error to less than 10%. Using the well-developed machine learning models, additional sensitivity analyses are conducted and the effect of model uncertainty on collapse safety and expected annual losses is quantified using Monte Carlo simulation. For the SWOF buildings, a multi-scale cost-benefit analysis of the Los Angeles Soft-Story Ordinance Retrofit is performed. Individual buildings take an average of four to five years for the reduced earthquake losses to exceed the one-time retrofit cost. At the portfolio-scale, the average cost-benefit ratio is found to be 0.32 for the hypothetical M 7.1 Puente Hills scenario earthquake. A stochastic event-set cost-benefit assessment is also performed, where all events (approximately 8,000) that are significant to the region are considered. From this assessment, it is determined that the probability of achieving a desirable cost-benefit ratio (value between 0.0 and 1.0) within a 50-year period is approximately 0.9. Lastly, a retrofit design optimization framework is proposed with the goal of maximizing performance-based benefits at the regional scale. The methodology relies a machine learning-based surrogate model to predict seismic performances of retrofitted buildings given the design parameters. Then, a stochastic optimization algorithm is implemented to find the retrofit designs that maximize the improvement in seismic performance for the entire portfolio under a set of pre-defined constraints. The algorithmic retrofit leads to collapse losses that are comparable to the Los Angeles Ordinance guidelines while using only 60% of the resources. The performance-oriented framework is shown to address the inefficiency of conventional strength-based retrofit policies.

Seismic Design with Supplemental Energy Dissipation Devices

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Release : 2001
Genre : Technology & Engineering
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Seismic Design with Supplemental Energy Dissipation Devices - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Seismic Design with Supplemental Energy Dissipation Devices write by Robert D. Hanson. This book was released on 2001. Seismic Design with Supplemental Energy Dissipation Devices available in PDF, EPUB and Kindle. The purpose of this monograph is to impart basic concepts of the supplemental energy dissipation technology to design engineers, architects, and building officials so they can understand its benefits and limitations in structural applications. The approach is introductory. References are cited throughout the monograph for readers who wish to study the subject in more depth.Supplemental energy dissipation systems are recent innovations to improve earthquake building performance. Research has led to a better understanding of the effects of supplemental energy dissipation on the earthquake response of buildings. Over the last 20 years, significant progress has been made in developing manufactured systems. They are being reliably designed and installed in new as well as existing buildings.Development of design codes and standards for energy dissipation systems has progressed slowly. This monograph summarizes information on their use in designing new earthquake-resistant buildings and upgrading the seismic performance of existing buildings. The following areas are covered:? The physical consequences of adding energy dissipation systems to a structure for various types of input motion? Summary of generic energy dissipation device characteristics? Summary of pros and cons of specific device characteristics in meeting selected design objectives? Seismic design limits for selecting energy dissipation systems? Design approaches for the limits of elastic or inelastic response

Reinforcement of Timber Elements in Existing Structures

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Release : 2021-04-30
Genre : Technology & Engineering
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Book Rating : 94X/5 ( reviews)

Reinforcement of Timber Elements in Existing Structures - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Reinforcement of Timber Elements in Existing Structures write by Jorge Branco. This book was released on 2021-04-30. Reinforcement of Timber Elements in Existing Structures available in PDF, EPUB and Kindle. By presenting the work of the RILEM Technical Committee 245-RTE, the book provides an overview of the existing techniques for the reinforcement of timber elements, joints and structures. It consists of two parts: part I examines state-of-the-art information on reinforcement techniques, summarizes the current status of standardization, and covers STS, GiR, FRP and nanotechnology. In part II several applications of reinforcement are discussed: these include traditional structures, traditional timber frame walls, light-frame shear walls, roofs, floors, and carpentry joints. The book will benefit academics, practitioners, industry and standardization committees interested in the reinforcement of existing timber elements, joints and structures.

Evaluation of Seismic Energy Dissipation Systems for Application to Narrow Wall Piers in Soft-story Wood-frame Structures

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Release : 2015
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Evaluation of Seismic Energy Dissipation Systems for Application to Narrow Wall Piers in Soft-story Wood-frame Structures - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Evaluation of Seismic Energy Dissipation Systems for Application to Narrow Wall Piers in Soft-story Wood-frame Structures write by Steve Minsoo Yang. This book was released on 2015. Evaluation of Seismic Energy Dissipation Systems for Application to Narrow Wall Piers in Soft-story Wood-frame Structures available in PDF, EPUB and Kindle.