Books on the topic 'Reinforced concrete construction Standards Australia'

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1

Loo, Yew-Chaye. Reinforced and prestressed concrete: Analysis and design with emphasis on application of AS3600-2009. Port Melbourne, Vic: Cambridge University Press, 2010.

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2

Darvall, P. Le P. Reinforced and prestressed concrete. South Melbourne: Macmillan Australia, 1989.

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3

American Society for Testing and Materials. ASTM standards in ACI 318. Farmington Hills, MI: American Concrete Institute, 2002.

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4

American Society for Testing and Materials. ASTM standards in ACI 301 and 318. Farmington Hills, MI: American Concrete Institute, 1996.

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5

American Society for Testing and Materials. ASTM standards in ACI 301 and 318. Farmington Hills, MI: American Concrete Institute, 2000.

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6

Allen, A. H. Reinforced concrete design to BS8110: Simply explained. London: E. & F.N. Spon, 1988.

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7

Institute, American Concrete, ed. Building code requirements for structural concrete (ACI 318-11) and commentary. Farmington Hills, MI: American Concrete Institute, 2011.

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8

Manual for detailing reinforced concrete structures to EC2. London: Spon Press, 2012.

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9

Benussi, Fausto. The Nigerian code of practice for the structural use of concrete in buildings and the new European codes for the calculation of structures in the building and civil engineering sectors. Ife: [University of Ife], 1988.

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10

Institute, American Concrete. Building code requirements for reinforced concrete (ACI 318-89) and commentary--ACI 318R-89. Detroit, Mich. (Box 19150 Redford Station, Detroit 48219): American Concrete Institute, 1989.

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11

Mohamed, Lachemi, ed. Reinforced concrete structures: Design according to CSA A23.3-04. Québec: Presses de l'Université du Québec, 2010.

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12

Empelmann, Martin. Zum nichtlinearen Trag- und Verformungsverhalten von Stabtragwerken aus Konstruktionsbeton unter besonderer Berücksichtigung von Betriebsbeanspruchungen. Aachen: Lehrstuhl und Institut für Massivbau der RWTH Aachen, 1995.

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13

C, Steedman James, ed. Examples of the design of reinforced concrete buildings to BS8110. 4th ed. London: E. & F.N. Spon, 1992.

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14

Design of concrete structures for retaining aqueous liquids: Design tables to BS 8007. London: Thomas Telford, 1996.

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15

Chaallal, Omar. Structures en béton armé: Calcul selon la norme ACNOR A23.3-04. Québec, Québec: Presses de l'Université du Québec, 2008.

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16

Université du Québec. École de technologie supérieure, ed. Structures en béton armé: Calcul selon la norme ACNOR A23.3-04. 2nd ed. Québec, Québec: Presses de l'Université du Québec, 2012.

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17

Chaallal, Omar. Structures en béton armé: Calcul selon la norme ACNOR A23.3-04. 2nd ed. Québec (Québec): Presses de l'Université du Québec, 2014.

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18

Design data for rectangular beams and slabs to BS 8110:Part 1. [London]: Palladian, 1987.

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19

Institute, American Concrete, and International Organization for Standardization, eds. Building code requirements for structural concrete (ACI 318-08) and commentary. Farmington Hills, MI: American Concrete Institute, 2009.

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20

1970-, Seracino Rudolf, ed. FRP Composites in Civil Engineering, CICE 2004: Proceedings of the Second International Conference on FRP Composites in Civil Engineering, CICE 2004, 8-10 December 2004, Adelaide, Australia. Leiden: A.A. Balkema Publishers, 2005.

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21

Wallace, John W. The 1985 Chile earthquake: An evaluation of structural requirements for bearing wall buildings. [Berkeley]: Earthquake Engineering Research Center, University of California at Berkeley, 1989.

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22

Queensland, Australia) International Conference on Composite Construction in Steel and Concrete (7th 2013 North. Composite construction in steel and concrete VII: Proceedings of the 2013 International Conference on Composite Construction in Steel and Concrete, July 28-31, 2013, North Queensland, Australia. Reston, Virginia: American Society of Civil Engineers, 2016.

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23

Kenchiku kōji hyōjun shiyōgaki, dō kaisetsu: JASS 5N genshiryoku hatsudensho shisetsu ni okeru tekkin konkurīto kōji = Japanese architectural standard specification : JASS 5N reinforced concrete work at nuclear power plants. 3rd ed. Tōkyō: Nihon Kenchiku Gakkai, 2001.

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24

Institute, American Concrete, ed. Requirements for residential concrete construction and commentary (ACI 332-04): An ACI standard. Farmington Hills, Mich: American Concrete Institute, 2005.

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25

Anthony, Fanella David, Liang Xuemei, Portland Cement Association, International Code Council, American Society of Civil Engineers., and American Concrete Institute, eds. Seismic and wind design of concrete buildings: 2003 IBC/ASCE 7-02/ ACI 318-02. [S.l.]: Portland Cement Association, International Code Council, 2005.

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26

K, Ghosh S. Seismic and wind design of concrete buildings: 2009 IBC, ASCE/SEI 7-05, ACI 318-08. Country Club Hills, IL: International Code Council, 2011.

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27

Qiang, Shen, International Code Council, and Portland Cement Association, eds. Seismic and wind design of concrete buildings: (2006 IBC, ASCE/SEI 7-05, ACI 318-05). 3rd ed. [Skokie, Ill.?]: Portland Cement Association, 2008.

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28

Bayer, Edwin. Betonbauwerke in Abwasseranlagen: Planung, Bau, Instandhaltung. 4th ed. Düsseldorf: Verlag Bau und Technik, 2004.

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29

K, Ghosh S. Impact of the seismic design provisions of the International building code. Northbrook, IL: Structures and Codes Institute, 2001.

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30

American Society of Mechanical Engineers. Commentary Task Group. Commentary on Article CC-3000 design: ASME boiler and pressure vessel code section III, division 2 code for concrete containments. New York: ASME, 2015.

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31

Fuel cells: Problems and solutions. 2nd ed. Hoboken, N.J: Wiley, 2012.

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32

Alekseenko, Vasiliy, and Oksana Zhilenko. Design, construction and operation of buildings in seismic areas. ru: INFRA-M Academic Publishing LLC., 2020. http://dx.doi.org/10.12737/1000210.

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The main purpose of the textbook is to acquaint students and engineers with the principles of design and construction of buildings and structures in seismic areas. The tutorial sets out the basic principles of design and construction of frame, large-panel buildings, buildings with load-bearing walls made of small-piece stones and large blocks, buildings made of local materials, frameless buildings made of monolithic reinforced concrete. The design requirements for buildings in earthquake-prone areas are described, and the main requirements for the production of works and implementation of anti-seismic measures during construction are outlined. Architectural, construction, design and technological aspects of construction in seismic areas are revealed. Meets the requirements of Federal state educational standards of higher education of the latest generation. It is intended for students studying in the areas of training 08.03.01 and 08.04.01 "Construction" in the following disciplines: "Design, construction and operation of buildings in seismic areas", "Theory and design of buildings and structures in seismic areas".
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33

Ranzi, Gianluca, ed. Time-dependent behaviour and design of composite steel-concrete structures. Zurich, Switzerland: International Association for Bridge and Structural Engineering (IABSE), 2021. http://dx.doi.org/10.2749/sed018.

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<p>Steel-concrete composite structures are widely used throughout the world for buildings and bridges. A distinguishing feature of this form of construction is the combination of concrete and steel components to achieve enhanced structural performance. <p>The time-dependent response of concrete and its infl uence on the service behaviour and design of composite structures are the main focus of this SED. For the fi rst time, a publication combines a state-of-the-art review of the research with the available design specifi cations of Europe, Australia and New Zealand, and USA. This publication intends to enhance the awareness of the service response of composite structures and of the latest research and standards’ developments. It is aimed at designers and researchers alike. <p>The review of research available in open literature is provided and arranged according to structural typologies, i. e. slabs, beams, and columns. It serves as background information for current service design rules and provides insight into the most recent research advancements. The review of available design guidelines presents the similarities and differences of the recommended service design procedures infl uenced by concrete time effects. Selected case studies of building and bridge projects show possible design approaches and the rationale required when dealing with the time-dependent response and design of composite structures. The authors of this publication are design engineers and academics involved in the service design and research on the time-dependent response of composite structures.
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34

Loo, Yew-Chaye, and Sanaul Huq Chowdhury. Reinforced and Prestressed Concrete. Cambridge University Press, 2018.

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35

Reinforced and Prestressed Concrete: Analysis and Design with Emphasis on Application of AS3600-2009. Cambridge University Press, 2013.

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36

Reinforced Concrete Structural Reliability. Taylor & Francis Group, 2012.

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37

E, Rowe R., ed. Handbook to British standard BS 8110:1985: Structural use of concrete. London, England: Palladian Publications, 1987.

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38

Association, Canadian Portland Cement, ed. Concrete design handbook. 2nd ed. Ottawa: Canadian Portland Cement Association, 1995.

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39

Association, Canadian Portland Cement, ed. Concrete design handbook. Ottawa: Canadian Portland Cement Association, 1985.

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40

Association, Canadian Standards, and Cement Association of Canada, eds. Concrete design handbook. 3rd ed. Ottawa: Cement Association of Canada, 2006.

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41

Atsuhiko, Machida, ed. Recommendation for design and construction of concrete structures using continuous fiber reinforcing materials. Tokyo: Research Committee on Continuous Fiber Reinforcing Materials, Japan Society of Civil Engineers, 1997.

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42

Institute, American Concrete, ed. Essential requirements for reinforced concrete buildings: (for buildings of limited size and height, based on ACI 318-02). 2nd ed. Farmington Hills, Mich: American Concrete Institute, 2002.

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43

Notes on ACI 318-95, building code requirements for structural concrete: With design applications. 6th ed. Skokie, Ill: Portland Cement Association, 1996.

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44

(Editor), S. K. Ghosh, and Basile G. Rabbat (Editor), eds. Notes on Aci318 95 Building Code Requirements for Structural Concrete With Design Applications (EB-070). 6th ed. Portland Cement Association, 1999.

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45

Notes on Aci 318-05, Building Code Requirements for Structural Concrete: With Design Applications. Portland Cement Association, 2005.

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46

béton, Comité euro-international du, ed. CEB-FIP model code 1990: Design code. London: T. Telford, 1993.

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47

Notes on Aci318-89 Building Code Requirements for Reinforced Concrete With Design Applications. 5th ed. Portland Cement Assn, 1995.

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48

K, Ghosh S., Rabbat Basile G, and Portland Cement Association, eds. Notes on ACI 318-89, building code requirements for reinforced concrete: With design applications. 5th ed. Skokie, Ill: Portland Cement Association, 1990.

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49

Concrete Design to EN 1992, Second Edition. 2nd ed. Butterworth-Heinemann, 2006.

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50

Reynolds, C. E., and J. C. Steedman. Examples of the Design of Reinforced Concrete Buildings to. Taylor & Francis, 1992.

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