ACI SP-304-2015 Sustainable Performance of Concrete Bridges and Elements Subjected to Aggressive Environments Monitoring Evaluation and Rehabilitation.pdf
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1、An ACI Technical Publication SYMPOSIUM VOLUME SP-304 Sustainable Performance of Concrete Bridges and Elements Subjected to Aggressive Environments: Monitoring, Evaluation, and Rehabilitation Editors: Yail J. Kim Baolin Wan Isamu YoshitakeSustainable Performance of Concrete Bridges and Elements Subje
2、cted to Aggressive Environments: Monitoring, Evaluation, and Rehabilitation SP-304 Editors: Yail J. Kim Baolin Wan Isamu Yoshitake Discussion is welcomed for all materials published in this issue and will appear ten months from this journals date if the discussion is received within four months of t
3、he papers print publication. Discussion of material received after specified dates will be considered individually for publication or private response. ACI Standards published in ACI Journals for public comment have discussion due dates printed with the Standard. The Institute is not responsible for
4、 the statements or opinions expressed in its publications. Institute publications are not able to, nor intended to, supplant individual training, responsibility, or judgment of the user, or the supplier, of the information presented. The papers in this volume have been reviewed under Institute publi
5、cation procedures by individuals expert in the subject areas of the papers. Copyright 2015 AMERICAN CONCRETE INSTITUTE 38800 Country Club Dr. Farmington Hills, Michigan 48331 All rights reserved, including rights of reproduction and use in any form or by any means, including the making of copies by
6、any photo process, or by any electronic or mechanical device, printed or written or oral, or recording for sound or visual reproduction or for use in any knowledge or retrieval system or device, unless permission in writing is obtained from the copyright proprietors. Printed in the United States of
7、America Editorial production: Ryan Jay ISBN-13: 978-1-942727-47-7 First printing, October 2015Preface Since the major milestones of sustainability, such as the Hannover Principle in 1991 and the Kyoto Protocol in 1997, the concept of sustainability has been broadly adopted by various disciplines. Ne
8、w construction consumes considerable amounts of energy and materials, and CO 2emission in 2020 is expected to increase by 100%, compared with that of today. Technical communities are responsible for improving the sustainability of the built-environment by using more durable and highly efficient mate
9、rials to reduce the need for replacement, maintenance, or repair. When subjected to aggressive environments, the performance of constructed concrete bridges and their elements is of interest from socioeconomic perspectives. Advances in a variety of aspects are required to achieve such a goal, includ
10、ing the durability of concrete members, performance monitoring technologies, evaluation methodologies, damage assessment, and structural rehabilitation. This Special Publication (SP) includes 10 papers selected from the three special sessions held at the ACI Fall convention in Washington, DC, Octobe
11、r 2014. Each submitted manuscript has been rigorously reviewed and evaluated by at least two experts. The editors wish to thank all contributing authors and anonymous reviewers for their endeavors. Yail J. Kim, Baolin Wan, and Isamu Yoshitake Editors University of Colorado Denver,Marquette Universit
12、y, and Yamaguchi UniversityTABLE OF CONTENTS SP-3041 Response Surface Metamodel-based Performance Reliability Reinforced for Concrete Beams Strengthened with FRP sheets 1 Authors: Junwon Seo, Yail J. Kim, and Shadi Zandyavari SP-3042 Reducing Deck Cracking in Composite Bridges by Controlling Long Te
13、rm Properties 21 Authors: Fatmir Menkulasi, Doug Nelson, Carin L. Roberts Wollmann, and Thomas E. Cousins SP-3043 Monitoring of the 205-ft long Pretensioned Precast Super Girders of the Alaskan Way Viaduct, Seattle, WA 41 Authors: Sameh S. Badie, David Chapman, Anthony Mizumori, Yu Jiang, Stephen J.
14、 Seguirant, and Bijan Khaleghi SP-3044 Using GFRP Reinforcing as a cost effective solution to extending the service life of bridge decks: A case study of the Kansas Department of Transportation I-635 Bridges over State Ave in Kansas City, KS 53 Authors: Ryan Koch and Jon Karst SP-3045 Analytical Mod
15、eling of Reinforced Concrete Beams Strengthened with Mechanically Fastened Fiber-reinforced Polymers (MF-FRP).65 Authors: Gordon Salisbury and Vicki Brown SP-3046 Use of Self-consolidating Concrete and High Volume Fly Ash Concrete in Missouri Bridge A7957 85 Authors: Eli S. Hernandez and John J. Mye
16、rs SP-3047 Managing ASR and DEF in Concrete Bridge Columns . 101 Author: Mark E. Williams SP-3048 Assessment of Early Corrosion in Prestressed Concrete Based on Open-Circuit Potential and Polarization Resistance .113 Authors: William Vlez and Fabio Matta SP-3049 The Role of Shrinkage Strains Causing
17、 Early-Age Cracking in Cast-in-Place Concrete Bridge Decks .123 Authors: Tayyebeh Mohammadi, Baolin Wan and Christopher M. Foley SP-30410 Finite Element Modeling of RC Beams Strengthened with Prestressed NSM CFRP Strips Subjected to Severe Environmental Conditions 141 Authors: Hamid Y. Omran and Raa
18、fat El-HachaSP-3041 1 Response Surface Metamodel-based Performance Reliability for Reinforced Concrete Beams Strengthened with FRP sheets Junwon Seo, Yail J. Kim, and Shadi Zandyavari Synopsis: This paper presents the performance reliability of reinforced concrete beams strengthened with fiber reinf
19、orced polymer (FRP) sheets, including structural fragility. Emphasis is placed on the development of effective strains that can represent FRP-debonding failure. The reliability predicted by a conventional standard log-normal cumulative probability density function and by the proposed response surfac
20、e metamodel (RSM) combined with Monte-Carlo simulation (MCS) is employed to assess the contribution of physical attributes to debonding failure. The models are constructed based on a large set of experimental database consisting of 230 test beams collected from published literature. Another aspect o
21、f the study encompasses the effect of various RSM parameters on the variation of effective strains, such as FRP thickness (t f ), steel reinforcement ratio ( ), concrete strength (f c ), beam height (h), beam width (w), span length (L), and shear span (a). The mutual interaction between these parame
22、ters indicates that those related to beam geometry (i.e., L, w, h, and a parameters) and the t fparameter are significant factors influencing the effective strain of FRP-strengthened beams. Keywords: debonding, effective strain, fiber reinforced polymer (FRP), fragility, performance reliability, res
23、ponse surface metamodel (RSM) Seo et al. 2 ACI member Junwon Seo is an Assistant Professor in the Department of Civil and Environmental Engineering at South Dakota State University, Brookings, SD. He is an associate member of ACI Committees 341 (Earthquake- Resistant Concrete Bridges), 343 (Concrete
24、 Bridge Design: Joint ACI-ASCE), and 345 (Concrete Bridge Construction, Maintenance, and Repair). His research interests encompass the structural behavior of irregular bridges and other structures, multi-hazard vulnerability and sustainability assessment, repair, retrofit and rehabilitation, structu
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