Optimization of Prestressed Concrete Segmental Bridges

Optimization of Prestressed Concrete Segmental Bridges
Author: Aldo F. Colandrea
Publisher:
Total Pages: 382
Release: 1981
Genre: Concrete bridges
ISBN:

This research has studied the applicability of optimization techniques to the analysis and design of incrementally launched bridges. The ultimate strength and serviceability requirements of applicable bridge codes have been utilized to develop constraint criteria for the mathematical model. Optimization techniques such as geometric, linear, polynomial and dynamic programming have been investigated. A heuristic analysis of a linear programming model was selected since it provided the advantages of low computer costs and simple constraint formulations. The cost of the superstructure materials comprised the objective function. An exhaustive search over the permissible ranges of the assumed variables was considered in order to obtain the global optimum. A computer program was developed for this operation. An existing incrementally launched bridge was modeled and a minimum cost design was found. A cost comparison between the existing and optimal designs was extrapolated. A sensitivity analysis was also performed on the mathematical model of the global optimum and suboptimal conditions.

Prestressed Concrete Bridges

Prestressed Concrete Bridges
Author: Nigel R. Hewson
Publisher: Thomas Telford
Total Pages: 412
Release: 2003
Genre: Technology & Engineering
ISBN: 9780727732231

Prestressed concrete decks are commonly used for bridges with spans between 25m and 450m and provide economic, durable and aesthetic solutions in most situations where bridges are needed. Concrete remains the most common material for bridge construction around the world, and prestressed concrete is frequently the material of choice. Extensively illustrated throughout, this invaluable book brings together all aspects of designing prestressed concrete bridge decks into one comprehensive volume. The book clearly explains the principles behind both the design and construction of prestressed concrete bridges, illustrating the interaction between the two. It covers all the different types of deck arrangement and the construction techniques used, ranging from in-situ slabs and precast beams; segmental construction and launched bridges; and cable-stayed structures. Included throughout the book are many examples of the different types of prestressed concrete decks used, with the design aspects of each discussed along with the general analysis and design process. Detailed descriptions of the prestressing components and systems used are also included. Prestressed Concrete Bridges is an essential reference book for both the experienced engineer and graduate who want to learn more about the subject.

Optimization of the Prestressing Force in Continuous Concrete Bridges

Optimization of the Prestressing Force in Continuous Concrete Bridges
Author: Eduardo Rene Raudales Valladares
Publisher:
Total Pages: 71
Release: 2016
Genre: Prestressed concrete bridges
ISBN:

Most engineers may agree that an optimum design of a particular structure is a proposal that minimizes costs without compromising resistance, serviceability and aesthetics. Additionally to these conditions, the theory and application of the method that produces such an efficient design must be easy and fast to apply at the structural engineering offices. A considerable amount of studies have been conducted for the past four decades. Most researchers have used constraints and tried to minimize the cost of the structure by reducing the weight of it [8]. Although this approach may be true for steel structures, it is not accurate for composite structures such as reinforced and prestressed concrete. Maximizing the amount of reinforcing steel to minimize the weight of the overall structure can produce an increase of the cost if the price of steel is too high compared to concrete [8]. A better approach is to reduce the total cost of the structure instead of weight. However, some structures such as Prestressed Concrete AASHTO Girders have been standardized with the purpose of simplifying production, design and construction. Optimizing a bridge girder requires good judgment at an early stage of the design and some studies have provided guides for preliminary design that will generate a final economical solution [17] [18]. Therefore, no calculations or optimization procedure is required to select the appropriate Standard AASHTO Girder. This simplifies the optimization problem of a bridge girder to reducing the amount of prestressing and mild steel only. This study will address the problem of optimizing the prestressing force of a PC AASHTO girder by using linear programming and feasibility domain of working stresses. A computer program will be presented to apply the optimization technique effectively.

Prestressed Concrete Bridges

Prestressed Concrete Bridges
Author: Christian Menn
Publisher: Birkhäuser
Total Pages: 546
Release: 2012-12-06
Genre: Technology & Engineering
ISBN: 3034891318

This book was written to make the material presented in my book, Stahlbetonbrucken, accessible to a larger number of engineers throughout the world. A work in English, the logical choice for this task, had been contemplated as Stahlbetonbrucken was still in its earliest stages of preparation. The early success of Stahlbetonbrucken provided significant impetus for the writing of Prestressed Concrete Bridges, which began soon after the publication of its predecessor. The present work is more than a mere translation of Stahlbetonbrucken. Errors in Stahlbetonbrucken that were detected after publication have been corrected. New material on the relation between cracking in concrete and corrosion of reinforce ment, prestressing with unbonded tendons, skew-girder bridges, and cable-stayed bridges has been added. Most importantly, however, the presentation of the material has been extensively reworked to improve clarity and consistency. Prestressed Concrete Bridges can thus be regarded as a thoroughly new and improved edition of its predecessor.