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Seismic Design Aids for Nonlinear Pushover Analysis of Reinforced Concrete and Steel Bridges

collapse sequence of damaged bridges when subjected to major earthquakes. Seismic Design Aids for Nonlinear Pushover Analysis of Reinforced;

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Seismic Design Aids for Nonlinear Analysis of Reinforced Concrete Structures

Nonlinear analysis methods such as static pushover or limit analysis until collapse are globally considered reliable tools for seismic and;

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Seismic Design Aids for Nonlinear Analysis of Reinforced Concrete Structures

Nonlinear analysis methods such as static pushover or limit analysis until collapse are globally considered reliable tools for seismic and;

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Earthquake Engineering

up-to-date details on the design and construction of earthquake-resistant steel and reinforced concrete buildings, bridges, and isolated;

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Nonlinear Seismic Analysis and Design of Reinforced Concrete Buildings

Forty scientists working in 13 different countries detail in this work the most recent advances in seismic design and performance;

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Finite Element Analysis and Design of Steel and Steel-Concrete Composite Bridges

element analysis for composite bridges Contains extensive case studies on finite element analysis and the design of steel-concrete;

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Design of Steel-Concrete Composite Bridges to Eurocodes

loads on bridges and their combinations, proposes software supported analysis models, and outlines the required verifications for sections and;

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Design of Steel-Concrete Composite Bridges to Eurocodes

loads on bridges and their combinations, proposes software supported analysis models, and outlines the required verifications for sections and;

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Finite Element Analysis and Design of Steel and Steel-Concrete Composite Bridges

>Finite Element Analysis and Design of Steel and Steel-Concrete Composite Bridges provides structural engineers and researchers with detailed;

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Recommendations for Seismic Design of Hybrid Coupled Wall Systems

helpful recommendations for engineers and practitioners involved with seismic analysis and design of HCW systems. This book offers two methods for;

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Non-Linear Mechanics of Reinforced Concrete

This book describes the application of nonlinear static and dynamic analysis for the design, maintenance and seismic strengthening;

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Non-Linear Mechanics of Reinforced Concrete

This book describes the application of nonlinear static and dynamic analysis for the design, maintenance and seismic strengthening;

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Seismic Design of Reinforced Concrete Buildings

seismic engineering expert, this authoritative resource discusses the theory and practice for the design and evaluation of earthquake resisting;

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Seismic Design of Steel Structures

Providing real world applications for different structural types and seismic characteristics, Seismic Design of Steel Structures combines;

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Seismic Design of Steel Structures

for structural engineers involved in seismic design, as well as researchers and graduate students of seismic structural analysis and design.;

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Mechanics of Structures and Materials

; Concrete design; Steel design and welding; Dynamic, fire and seismic loading; Finite element analysis and optimisation; Stability in structures;

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Basic Earthquake Engineering: From Seismology to Analysis and Design

analysis and presents the concept of a seismic hazard map for use in seismic design. Subsequent chapters cover key aspects of the response analysis;

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Seismic Design Of Rc Buildings

for seismic design such as material properties, damping, ductility, stiffness and strength. The subject coverage commences with simple;

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Seismic Design of Reinforced Concrete and Masonry Buildings

Emphasizes actual structural design, not analysis, of multistory buildings for seismic resistance. Strong emphasis is placed on specific;

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Computer Aided Seismic and Fire Retrofitting Analysis of Existing High Rise Reinforced Concrete Buildings

This book details the analysis and design of high rise buildings for gravity and seismic analysis. It provides the knowledge structural;

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Concrete Buildings in Seismic Regions

practice. It combines current approaches to seismic analysis and design, with a particular focus on reinforced concrete structures, and includes;

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Innovative Bridge Design Handbook

, research, and construction. The handbook begins with an analysis of the history and development of bridge aesthetics and design; various types;

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Bridge Engineering Handbook

chapters: Seismic Random Response Analysis, Displacement-Based Seismic Design of Bridges, Seismic Design of Thin-Walled Steel and CFT Piers;

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Bridge Engineering Handbook

, High Speed Railway Bridges, Concrete Design, Steel Design, Structural Performance Indicators for Bridges, High Performance Steel, and Design;

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Tall Building Design

, seismic isolation, blast-resistant design, and progressive collapse. The final chapters explain gravity and lateral systems for steel, concrete;

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Assessment of the Seismic Behavior structures by Fragility Curves

models must be able to model reinforced concrete elements and provide correct analyzing of their nonlinear function. Hysteric behavior;

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Modeling of Inelastic Behavior of RC Structures Under Seismic Loads

to simulate and understand the inelastic behavior of reinforced concrete structures, and design issues that can improve the seismic;

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