Books on the topic 'Concrete construction – Mathematical models'

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1

Concrete and concrete structures: Numerical modelling and applications. London: Elsevier Applied Science, 1989.

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2

Dynamic behavior of concrete structures. Amsterdam: Elsevier, 1994.

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3

Lazić, Vera B. Mathematical theory of composite and prestressed structures. Beograd: Matematički institut SANU, 2003.

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4

A, Pimanmas, and Okamura Hajime 1938-, eds. Nonlinear mechanics of reinforced concrete. New York: Spon Press, 2003.

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5

Tetsuya, Ishida, and Kishi Toshiharu 1955-, eds. Multi-scale modelling of structural concrete. London: Taylor & Francis, 2008.

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6

Tekkin konkurīto kōzō no sekkei. Tōkyō: Morikita Shuppan, 2001.

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7

IABSE Colloquium (1987 Delft, Netherlands). Computational mechanics of concrete structures: Advances and applications : report. Zürich, Switzerland: IABSE, 1987.

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8

(undifferentiated), Walter Kaufmann. Strength and deformations of structural concrete subjected to in-plane shear and normal forces. Basel: Birkhäuser Verlag, 1998.

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9

Grasty, R. L. The design, construction, and application of concrete models for calibrating borehole gamma-ray spectrometers. Ottawa, Canada: Geological Survey of Canada, 1993.

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10

USSD Committee on Earthquakes. Numerical models for seismic evaluation of concrete dams: Review, evaluation and interpretation of results. Denver, CO: U.S. Society on Dams, 2008.

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11

Pettinga, J. Didier. Dynamic behaviour of reinforced concrete frames designed with direct displacement- based design. Pavia: Rose school, 2005.

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12

Kenel, Albin. Zur Berechnung von Holz/Beton-Verbundkonstruktionen: Entwicklung und Vergleich verschiedener Berechnungsmethoden = Calculation and dimensioning of timber concrete composite structural elements : development and comparison of various methods. Dübendorf: EMPA, Eidgenössische Materialprüfungs- und Forschungsanstalt, Abt. Holz, 2000.

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13

Fédération internationale du béton. Task Group 4.4. Practitioners' guide to finite element modelling of reinforced concrete structures: State-of-art report. Lausanne, Switzerland: International Federation for Structural Concrete, 2008.

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14

Benchmark, Workshop on Numerical Analysis of Dams (5th 1999 Denver Colo ). Proceedings: Fifth Benchmark Workshop on Numerical Analysis of Dams. Denver, Colo: U.S. Committee on Large Dams, 2000.

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15

Martinez, D. Fred. Development of an analytical model to predict volumetric properties. Helena]: Montana Dept. of Transportation, 1997.

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16

Bangash, M. Y. H. Staircases: Structural analysis and design. Rotterdam: A.A. Balkema, 1999.

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17

EURO-C Conference 2003 (2003 Sankt Johann im Pongau, Austria (Politischer Bezirk)). Computational modelling of concrete structures: Proceedings of the EURO-C Conference 2003, St. Johann im Pongau, Austria, 17-20 March 2003. Lisse: A.A. Balkema, 2003.

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18

A concrete approach to mathematical modelling. New York: Wiley, 1995.

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19

A concrete approach to mathematical modelling. Redwood City, Calif: Addison-Wesley, 1989.

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20

Mathematical experiments planning in concrete technology. Hauppauge, N.Y: Nova Science Publishers, 2011.

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21

Kalashnikov, Vladimir Vi͡acheslavovich. Mathematical methods for construction of queueing models. Pacific Grove, Calif: Wadsworth & Brooks/Cole, 1990.

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22

Kalashnikov, V. V., and S. T. Rachev. Mathematical Methods for Construction of Queueing Models. Boston, MA: Springer US, 1990. http://dx.doi.org/10.1007/978-1-4684-1475-2.

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23

Barten, A. P. Methodological aspects of macroeconomic model construction. Louvain-la-Neuve: Academia, 1987.

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24

Bažant, Z. P. Concrete at high temperatures: Material properties and mathematical models. Harlow: Longman, 1996.

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25

A, Noor F., and Boswell L. F, eds. Small scale modelling of concrete structures. London: Elsevier Applied Science, 1992.

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26

Clifton, James R. Sulfate diffusion in concrete. Gaithersburg, MD: U.S. Dept. of Commerce, Technology Administration, National Institute of Standards and Technology, 1994.

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27

P, Bažant Z., L'Hermite Robert 1910-1982, International Union of Testing and Research Laboratories for Materials and Structures., National Science Foundation (U.S.), and RILEM International Symposium on Creep and Shrinkage of Concrete--Mathematical Modeling (4th : 1986 : Northwestern University), eds. Mathematical modeling of creep and shrinkage of concrete. Chichester: Wiley, 1988.

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28

Elezaby, Yehia K. Modelling and design of unbraced reinforced concrete frames. Edmonton, Alta: Dept. of Civil Engineering, University of Alberta, 1992.

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29

Kolotilov, I︠U︡ V. Simulation of construction operations in analytical systems. New York: Izvestiya Publishers of the Administration of the President of Russian Federation, 2013.

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30

Bright, Judy Kathryn, ed. Mathematics for carpentry and the construction trades. 2nd ed. Upper Saddle River, N.J: Prentice Hall, 2002.

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31

Fukushima, Toshio. Theoretical investigation on durability of reinforced concrete with external thermal insulations based upon diffusion of water and oxygen. Tsukuba-shi, Japan: Building Research Institute, Ministry of construction, 1989.

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32

Tejchman, Jacek. Simulations of strain localization in plain and reinforced concrete with enhanced continuum models. Gdańsk: Wydawn. Politechniki Gdańskiej, 2010.

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33

Winnicki, Andrzej. Viscoplastic and internal discontinuity models in analysis of structural concrete. Kraków: Wydawn. PK, 2007.

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34

1955-, Chaube Rajesh, and Kishi Toshiharu 1955-, eds. Modelling of concrete performance: Hydration, microstructure formation, and mass transport. London: E & FN Spon, 1999.

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35

Kerr, Arnold D. The assessment of concrete pavement blowups: A user manual. McLean, Va: U.S. Dept. of Transportation, Federal Highway Administration, 1993.

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36

Knorovsky, G. A. Evaluation of materials of construction for the reinforced concrete reactor containment model. Washington, DC: Division of Engineering, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1988.

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37

Mohseni, Alaeddin. LTPP seasonal asphalt concrete (AC) pavement temperature models. McLean, VA: U.S. Dept. of Transportation, Federal Highway Administration, Research and Development, Turner-Fairbank Highway Research Center, 1998.

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38

Mohseni, Alaeddin. LTPP seasonal asphalt concrete (AC) pavement temperature models. McLean, VA: U.S. Dept. of Transportation, Federal Highway Administration, Research and Development, Turner-Fairbank Highway Research Center, 1998.

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39

Crack growth in concrete using boundary elements. Southampton, UK: Computational Mechanics Publications, 1997.

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40

L, Gruneberg Stephen, ed. The economics of the modern construction sector. Basingstoke: Macmillan, 2000.

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41

Theodoridis, Ariane. Currency basket construction and currency basket policy: Theoretical and empirical aspects of currency basket construction and currency basket policy in Austria and the Nordic countries. Genéve: Institut universitaire de hautes études internationales, 1997.

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42

Ivakhnenko, Alekseĭ Grigorʹevich. Modeli i metody upravlenii͡a︡ ėnergeticheskim stroitelʹstvom. Kiev: "Budivelʹnyk", 1985.

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43

Khibukhin, V. P. Matematicheskie metody planirovanii͡a︡ i upravlenii͡a︡ stroitelʹstvom. 2nd ed. Leningrad: Stroĭizdat, Leningradskoe otd-nie, 1990.

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44

Bolomey Workshop on Numerical Models in Fracture Mechanics of Concrete (1st 1992 Zürich, Switzerland). Numerical models in fracture mechanics of concrete: Proceedings of the 1st Bolomy Workshop on Numerical Models in Fracture Mechanics of Concrete, Zürich, Switzerland, 16-17 July 1992. Rotterdam: A.A. Balkema, 1993.

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45

Hofstetter, Günter, and Günther Meschke. Numerical modeling of concrete cracking. Wien: Springer, 2011.

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46

Linde, Peter. Numerical modelling and capacity design of earthquake-resistant reinforced concrete walls. Basel: Birkhäuser, 1993.

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47

Linguistic geometry: From search to construction. Boston: Kluwer Academic, 2000.

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48

Xie, Jueren. Numerical investigation of eccentrically loaded tied high strength concrete columns. Edmonton, Alta., Canada: Dept. of Civil Engineering, University of Alberta, 1994.

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49

L, Clarke J., Garas F. K, Armer G. S. T, and Institution of Structural Engineers (Great Britain). Informal Study Group for "Model Analysis as a Design Tool"., eds. Design of concrete structures: The use of model analysis. London: Elsevier Applied Science Publishers, 1985.

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50

Tejchman, Jacek. Steel-fibrous concrete: Experiments and a numerical discrete model. Gdańsk: Wydwan. Politechniki Gdańskiej, 2000.

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