ACI SP-187-1999 Seismic Response of Concrete Bridges《混凝土桥梁的地震响应》.pdf
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1、 i Seismic Response of Concrete Bridges Editor K. Krishnan o international SP- 187 Obb2999 0544951 235 H DISCUSSION of individual papers in this symposium may be submitted in accordance with general requirements of the AC1 Publication Policy to AC1 head- quarters at the address given below. Closing
2、date for submission of discussion is January, 2000. All discussion approved by the Technical Activities Committee along with closing remarks by the authors will be published in the May/June 2000 issue of either AC1 Structural Journal or AC1 Materials Journal depending on the subject emphasis of the
3、individual paper. The Institute is not responsible for the statements or opinions expressed in its publications. Institute publications are not able to, nor intended to, supplant indi- vidual training, responsibility, or judgment of the user, or the supplier, of the information presented. The papers
4、 in this volume have been reviewed under Institute publication proce- dures by individuals expert in the subject areas of the papers. Copyright O 1999 AMERICAN CONCRETE INSTITUTE P.O. Box 9094 Farmington Hills, Michigan 48333-9094 All rights reserved including rights of reproduction and use in any f
5、orm or by any means, including the making of copies by 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
6、copyright proprietors. Printed in the United States of America Editorial production: Jane D. Carroll Library of Congress catalog card number: 99-63795 PREFACE This special publication contains papers presented during the following four AC1 convention sessions sponsored by Committee 34 1, Earthquake-
7、Resistant Concrete Bridges, during 1995 and 1996: Eflects of Recent Earthquakes on Concrete Bridges-Performance, Retrofit, and Design Response of Concrete Bridges during the Northridge Earthquake Seismic Retrojt and Design of Concrete Bridges State-of-Knowledge in Earthquake Response of Concrete Bri
8、dges Five Years aJer the Lorna Prieta Earthquake A total of 24 papers were presented at the sessions, of which 17 papers were received for this publication. The papers were reviewed in accordance with the policies of the American Concrete Institute. The papers presented cover a wide array of subject
9、s related to seismic behavior of concrete bridge structures. Topics include the impact of recent earthquakes on the seismic design process, results of recent experimental research on behavior of bridge components during earthquakes, case studies of bridge seismic upgrades, and the use of composite m
10、aterials and seismic isolation systems to enhance seismic performance. This special publication has been made possible by contributions from many individuals. M. Saiid Saiidi, the founding chairman of this committee, gave his early leadership and support to this project. The editor is grateful to al
11、l authors who have contributed to the publication as well as the reviewers of the papers for their suggestions and comments. The cooperation of the authors in accepting reviewers suggestions and revising their manuscripts accordingly is greatly appreciated. The editor acknowledges the support of Fre
12、deric R. Harris, Inc., without which this publication would not have been possible. Editor K. Krishnan I Obb2949 0544953 008 m CONTENTS J IMPACT OF LOMA PRIETA EARTHQUAKE ON SEISMIC DESIGN OF CONCRETE BRIDGES-CALIFORNIA PERSPECTIVE by J. E. Roberts 1 NORTHRIDGE EARTHQUAKE INFLUENCE ON BRIDGE DESIGN
13、CODE by R. Zelinski . 17 LESSONS LEARNED FROM BRIDGE PERFORMANCE DURING NORTHRIDGE EARTHQUAKE by F. Seible and M. J. N. Priestley . 29 PERFORMANCE OF REINFORCED CONCRETE BRIDGES IN JANUARY 1995 HYOGOKEN NANBU (KOBE) EARTHQUAKE by A. W. Taylor 57 INVESTIGATION OF PERFORMANCE OF BRIDGE ABUTMENT FILLS
14、IN 1994 NORTHRIDGE EARTHQUAKE by R. V. Siddharthan and M. El-Gama1 . 69 NEW DEVELOPMENTS IN CALTRANS SEISMIC ANALYSIS AND DESIGN PROCEDURES FOR BRIDGES by M. Yashinsky 89 SEISMIC PERFORMANCE OF BRIDGE FOOTINGS DESIGNED TO CURRENT STANDARDS by Y. Xiao, M. J. N. Priestley, and F. Seible 131 DESIGN AND
15、 SEISMIC RESPONSE OF UPGRADED OUTRIGGER KNEE JOINTS by B. StojadinoviC . 159 REPLACEABLE HINGE DETAILING FOR BRIDGE COLUMNS by J. B. Mander and C.-T. Cheng 185 1 SEISMIC RETROFIT OF EXISTING BRIDGE COLUMNS WITH HINGES by A. Griezic, W. D. Cook, and D. Mitchell 205 V SEISMIC RESPONSE OF REINFORCED CO
16、NCRETE DOUBLE-DECK BRIDGE STRUCTURES by S. Mazzoni, F. Zayati, J. P. Moehle, and S. A. Mahin 235 DRIFT CAPACITY OF REINFORCED CONCRETE COLUMNS SUBJECTED TO CYCLIC SHEAR REVERSALS by S. Pujol, J. A. Ramfrez, and M. A. Szen . 255 SEISMIC VULNERABILITY OF REINFORCED CONCRETE COLUMNS WITH STRUCTURAL FLA
17、RES by N. Wehbe and M. S. Saiidi 275 IMPLICATIONS OF SPATIAL VARIATION OF GROUND MOTION ON NORTHRIDGE EARTHQUAKE by G. Mylonakis, V. Simeonov, A. M. Reinhom, and I. G. Buckle 299 COLLAPSE OF SR-14/I-5 SOUTHBOUND AND OVERHEAD BRIDGE IN USE OF ENERGY DISSIPATING SYSTEMS FOR IMPROVING SEISMIC PERFORMAN
18、CE OF GAVIN CANYON UNDERCROSSING by M. Q. Feng 327 TWO-LEVEL DESIGN SPECTRUM FOR HIGHWAY BRIDGES by R. Mathur, H. Lee, and G. Orsolini . 345 EARTHQUAKE RETROFIT OF CALIFORNIA BRIDGE ROUTE 242/680 SEPARATION by R. C. Fish and G. L. Rowe 361 I , I r VI E IlbbZ999 05LiLi955 980 SP 187-1 Impact of Loma
19、Prieta Earthquake on Seismic Design of Concrete Bridges- California Perspective by J. E. Roberts Synopsis : Almost nine years have passed since the disastrous Loma Prieta earthquake of October 17, 1989 and eight years have passed since the Governors Board of Inquiry into the cause of highway structu
20、re failures during that earthquake issued its final report with the warning title “Competing Against Time“. The California Department of Transportation has developed improved Seismic Performance Criteria, Seismic Design Specifications, seismic design procedures, and construction details based on les
21、sons learned from the 1971 San Fernando earthquake and subsequent seismic events. The success of the Bridge Seismic Design and Retrofit program and the success of future seismic design for California bridges is based, to a large degree, on an unprecedented accelerated and “problem-focused“ seismic r
22、esearch program. The Department has spent over $40 million on this research and physical testing of details. This research has provided the bridge design community the assurance that the new specifications and design details perform reliably and meet the performance criteria. Caltrans staff engineer
23、s, consulting firms, independent Peer Review Teams, and university researchers have cooperated in this program of Bridge Seismic Design and Retrofit Strengthening to meet the challenge presented in the June, 1990 Board of Inquiry report. The eight year old Seismic Advisory Board has been an invaluab
24、le asset in reviewing the performance criteria, design specifications, design procedures, and construction details for both new design and retrofit strengthening of older, non-ductile bridges. Keywords: confinement; displacements; ductility; nonlinear analysis; retrofit; seismic design 1 2 Roberts D
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