ACI 341.4R-2016 Report on the Seismic Design of Bridge Columns Based on Drift.pdf
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1、Report on the Seismic Design of Bridge Columns Based on DriftReported by ACI Committee 341ACI 341.4R-16First PrintingJune 2016ISBN: 978-1-945487-02-6Report on the Seismic Design of Bridge Columns Based on DriftCopyright by the American Concrete Institute, Farmington Hills, MI. All rights reserved. T
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11、CI Manual of Concrete Practice (MCP).American Concrete Institute38800 Country Club DriveFarmington Hills, MI 48331Phone: +1.248.848.3700Fax: +1.248.848.3701www.concrete.orgACI Committee Reports, Guides, and Commentaries are intended for guidance in planning, designing, executing, and inspecting cons
12、truction. This document is intended for the use of individuals who are competent to evaluate the significance and limitations of its content and recommendations and who will accept responsibility for the application of the material it contains. The American Concrete Institute disclaims any and all r
13、esponsibility for the stated principles. The Institute shall not be liable for any loss or damage arising therefrom.Reference to this document shall not be made in contract documents. If items found in this document are desired by the Architect/Engineer to be a part of the contract documents, they s
14、hall be restated in mandatory language for incorporation by the Architect/Engineer.ACI 341.4R-16 was adopted and published June 2016.Copyright 2016, American Concrete InstituteAll rights reserved including rights of reproduction and use in any form or by any means, including the making of copies by
15、any photo process, or by electronic or mechanical device, printed, written, or oral, or recording for sound or visual reproduc-tion or for use in any knowledge or retrieval system or device, unless permission in writing is obtained from the copyright proprietors.1ACI 341.4R-16Report on the Seismic D
16、esign of Bridge Columns Based on DriftReported by ACI Committee 341Sri Sritharan, Chair Mark A. Aschheim, SecretaryVoting membersHossam M. AbdouNagi A. Abo-ShadiRobert B. AndersonBassem AndrawesDino BagnariolAbdeldjelil BelarbiSarah L. Billington*JoAnn P. Browning*Rigoberto BurguenoW. Gene CorleyShu
17、kre J. Despradel*Angel E. HerreraDavid Hieber*Riyadh A. HindiEric Michael HinesAhmed M. M. IbrahimMervyn J. KowalskySena KumarasenaOh-Sung KwonDawn E. Lehman*Kevin R. MackieAdolfo B. MatamorosStavroula J. Pantazopoulou*Bradley N. RobsonMario E. RodriguezM. Saiid SaiidiAyman E. SalamaDavid H. Sanders
18、Pedro F. SilvaBozidar StojadinovicVinicio SuarezMatthew J. Tobolski*Raj ValluvanRonald J. WatsonNadim I. Wehbe*Maged A. YoussefQun Zhong-Brisbois*Member of subcommittee that prepared this report.Co-chair of subcommittee that prepared this report.DeceasedConsulting membersY. Frank Chen Edward P. Wass
19、ermanThe committee would like to thank Ebrahim Amirihormozak, Mike Berry, Mehmet Inel, Nathan Johnson, Tassos Kotsoglou, and Eric Williamson for their contributions to this report.This report provides a basis for evaluating bridge column drift demands and bridge column performance under simulated ea
20、rth-quake loading. It is intended for practicing engineers and academic researchers. Seismic performance objectives established for bridges are reviewed with an emphasis on bridge column perfor-mance states. Examples of column damage in past earthquakes are reviewed. Results from recent research on
21、column performance are adapted to the case of bridge columns having a practical range of transverse reinforcement. These results are summarized in terms of drift limits associated with different performance states as a function of column shear span-depth ratio and axial load ratio, for both rectangu
22、lar and circular section columns. A static push-over method is presented that accounts for embankment flexibility. A two-span bridge is used as an example to illustrate the evalu-ation of column performance, the influence of changing column bent configurations (two 5 ft 1500 mm diameter columns vers
23、us three 4 ft 1200 mm diameter columns), and that larger column drift demands may result when embankment mass and flexibility are modeled.Keywords: abutment; bridge; column; drift limit, embankment flexibility; performance objective, seismic analysis; seismic evaluation; seismic performance.CONTENTS
24、CHAPTER 1INTRODUCTION AND SCOPE, p. 21.1Introduction, p. 21.2Scope, p. 2American Concrete Institute Copyrighted Material www.concrete.org2 REPORT ON THE SEISMIC DESIGN OF BRIDGE COLUMNS BASED ON DRIFT (ACI 341.4R-16)CHAPTER 2NOTATION, p. 3CHAPTER 3DESIGN OBJECTIVES AND APPROACHES, p. 53.1Performance
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