ACI 370R-2014 Report for the Design of Concrete Structures for Blast Effects.pdf
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1、Report for the Design of Concrete Structures for Blast EffectsReported by ACI Committee 370ACI 370R-14First Printing: July 2014Errata as of: October 12, 2015ISBN: 978-0-87031-898-6Report for the Design of Concrete Structures for Blast EffectsCopyright by the American Concrete Institute, Farmington H
2、ills, MI. All rights reserved. This material may not be reproduced or copied, in whole or part, in any printed, mechanical, electronic, film, or other distribution and storage media, without the written consent of ACI.The technical committees responsible for ACI committee reports and standards striv
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8、ppropriate to the specific circumstances involved with its use. ACI does not make any representations with regard to health and safety issues and the use of this document. The user must determine the applicability of all regulatory limitations before applying the document and must comply with all ap
9、plicable laws and regulations, including but not limited to, United States Occupational Safety and Health Administration (OSHA) health and safety standards.Participation by governmental representatives in the work of the American Concrete Institute and in the development of Institute standards does
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11、gether in the annually revised ACI Manual of Concrete Practice (MCP).American Concrete Institute38800 Country Club DriveFarmington Hills, MI 48331Phone: +1.248.848.3700Fax: +1.248.848.3701www.concrete.orgThis report addresses the design of structures to resist blast effects due to explosions. It des
12、cribes the state of the practice for the guidance of structural engineers charged with the design of civil facilities that may be subjected to blast loads. This report addresses the steps commonly followed in this practice, including determination of the threat, calculation of structural loads, beha
13、vior of structural systems, design of structural elements, design of security windows, design of security doors, and design of utility openings. These steps can applied to the design of new structures or to the retrofitting of existing structures.Keywords: blast; blast analysis; blast-resistant buil
14、dings; blast-resistant design; ductility; dynamics; explosions; retrofit for blast; shock; overpressure.Eric B. Williamson*, Chair William L. Bounds*, SecretaryACI 370R-14Report for the Design of Concrete Structures for Blast EffectsReported by ACI Committee 370Adeola K. Adediran*Abi Assadi*Darrell
15、D. Barker*Bal K. Cherwoo*Savita GoelDavid KerinsTheodor Krauthammer*Paul F. Mlakar*Madhav G. Nene*Barendra K. Talukdar*Joseph W. Tedesco*James W. Wesevich*Stanley C. WoodsonDavid Z. Yankelevsky*William H. Zehrt, Jr.*Consulting MembersQuentin A. BakerEve E. HinmanSam A. KigerJaap WeerheijmACI Committ
16、ee Reports, Guides, and Commentaries are intended for guidance in planning, designing, executing, and inspecting construction. 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 re
17、sponsibility for the application of the material it contains. The American Concrete Institute disclaims any and all responsibility 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.
18、 If items found in this document are desired by the Architect/Engineer to be a part of the contract documents, they shall be restated in mandatory language for incorporation by the Architect/Engineer.ACI 370R-14 was adopted and published June 2014.Copyright 2014, American Concrete Institute.All righ
19、ts reserved including rights of reproduction and use in any form or by any means, including the making of copies by 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 d
20、evice, unless permission in writing is obtained from the copyright proprietors.*Contributed to the writing of the report.CONTENTSCHAPTER 1INTRODUCTION, p. 11.1Overview of report, p. 21.2Background and history, p. 2CHAPTER 2NOTATION AND DEFINITIONS, p. 32.1Notation, p. 32.2Definitions, p. 4CHAPTER 3D
21、ESIGN PHILOSOPHY, p. 53.1Explosions and fragments, p. 53.2Threat scenario, p. 63.3Protection criteria, p. 63.4Balanced design, p. 73.5Global design, p. 73.6General principles of structural design, p. 73.7Analysis and design, p. 83.8Energy absorption, p. 93.9Ductility, p. 93.10Damage control, p. 93.1
22、1Construction, p. 103.12Cost effectiveness, p. 103.13Decision making, p. 10CHAPTER 4GENERAL PLANNING AND DESIGN METHODOLOGY, p. 104.1Applications, p. 104.2Objectives of blast-resistant design, p. 114.3Hazard assessment and risk analysis, p. 114.4Planning, p. 124.5Structural design process, p. 12CHAP
23、TER 5BLAST LOAD PREDICTION, p. 135.1Blast load basics, p. 135.2Explosion sources, p. 145.3Load prediction methods, p. 175.4High explosives, p. 175.5Bursting pressure vessels, p. 191CHAPTER 1INTRODUCTIONThe design of concrete structures for blast resistance has been of great interest to the military
24、and other federal agencies for several decades. In addition, certain specialized segments within the engineering community have also had to consider blast loads on structures as a result of potential accidents. For example, the petrochemical industry has designed for blast resistance in their facili
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