ACI ITG-9R-2016 Report on Design of Concrete Wind Turbine Towers.pdf
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1、Report on Design of Concrete Wind Turbine TowersReported by ACI Innovation Task Group 9ACI ITG-9R-16First PrintingOctober 2016ISBN: 978-1-945487-35-4Report on Design of Concrete Wind Turbine TowersCopyright by the American Concrete Institute, Farmington Hills, MI. All rights reserved. This material
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11、Concrete Practice (MCP).American Concrete Institute38800 Country Club DriveFarmington Hills, MI 48331Phone: +1.248.848.3700Fax: +1.248.848.3701www.concrete.orgThis report examines the benefits of the design of concrete towers for land-based wind turbines with heights in excess of 325 ft (100 m), in
12、comparison to those of round steel tubular towers. These benefits include reduced cost, increased stiffness, and superior service life performance. Construction alternatives, design criteria, design methodologies, and guidance for preliminary design of concrete towers are presented.The report recogn
13、izes that final tower design requires close coordination with the turbine supplier. The report is intended for those involved in developing preliminary tower designs. Concrete towers designed for maximum wind forces can be satisfactory for preliminary design, but the final design requires checking f
14、or all loads, especially fatigue and dynamic effects from wind and turbine operations. Design of connections and their proportions require an understanding of fatigue requirements during preliminary design for the connection design to remain valid during final checks.Keywords: concrete tower; full-h
15、eight tower; hybrid tower; precast elements; prestressing; slipformed; spread footings; turbine; wind; wind farm.CONTENTSCHAPTER 1INTRODUCTION, p. 21.1Introduction, p. 21.2Scope, p. 3CHAPTER 2NOTATION AND DEFINITIONS, p. 32.1Notation, p. 32.2Definitions, p. 3CHAPTER 3WIND FARM DEVELOPMENT AND TOWER
16、SUPPLY CHAIN, p. 33.1Introduction, p. 33.2Certification and design, p. 5CHAPTER 4CONCRETE TOWER TYPES, p. 64.1Hybrid concrete towers, p. 64.2Full-height concrete towers, p. 64.3Construction types, p. 64.4Construction considerations, p. 84.5Tolerances, p. 94.6Tower size and cost, p. 9CHAPTER 5TOWER D
17、ESIGN, p. 115.1Tower frequency design, p. 115.2Service level design, p. 125.3Prestressing, p. 135.4Modeling, p. 135.5Fatigue, p. 155.6Preliminary design guidance, p. 15CHAPTER 6DESIGN LOADS AND LOAD COMBINATIONS, p. 156.1Loads and load combinations, p. 166.2Load factors, p. 17CHAPTER 7DESIGN LOADS,
18、p. 177.1Basic weights and loads, p. 177.2Wind profile, p. 187.3Earthquake loads, p. 18Charles S. Hanskat, ChairACI ITG-9R-16Report on Design of Concrete Wind Turbine TowersReported by ACI Innovation Task Group 9Roger J. BeckerRick DamianiCharles W. Dolan*Neil M. HawkinsKevin L. KirkleyGary J. KleinN
19、ina KristevaDan A. Kuchma*James D. LockwoodKirk B. Morgan*Markus Wernli*Principal authors.ACI Committee 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 t
20、o 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 responsibility for the stated principles. The Institute shall not be liable for any
21、 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 shall be restated in mandatory language for incorporation by the Architect/Engineer
22、.ACI ITG-9R-16 was adopted and published October 2016.Copyright 2016, American Concrete Institute.All rights 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
23、 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.17.4Normal operating fatigue loads, p. 187.5Temperature loads, p. 187.6Abnormal operating conditions, p. 18CHAPTER 8
24、CONCRETE RESISTANCE, p. 198.1Strength design, p. 198.2Serviceability design, p. 198.3Joints and connections, p. 19CHAPTER 9FOUNDATION DESIGN, p. 199.1Rock anchor foundations, p. 199.2Pier-type deep foundations, p. 209.3Spread footings, p. 209.4Termination of reinforcement and prestress, p. 229.5Towe
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