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1

The management of construction: A project life cycle approach. Boston, MA: Butterworth-Heinemann, 2003.

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2

Bartoli, Gianni, Francesco Ricciardelli, Anna Saetta, and Vincenzo Sepe, eds. Performance of Wind Exposed Structures. Florence: Firenze University Press, 2006. http://dx.doi.org/10.36253/978-88-6453-156-4.

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PERBACCO (a free Italian acronym for Life-cycle Performance, Innovation and Design Criteria for Structures and Infrastructures Facing Æolian and Other Natural Hazards) is a research project partly funded by the Italian Ministry for University (MIUR) in the PRIN (Progetti di Ricerca di Interesse Nazionale) framework, for the years 2004-05.Within the project, a first attempt has been made to integrate different disciplines aiming at an overall optimization of the performance of a wide range of wind exposed structures and infrastructures, with consequent benefi cial impact on the society.The overall objectives were (a) to provide unifi ed concepts for "expected performance" and "risks induced by æolian and other natural hazards", to be applied to structures and infrastructures over their whole life-cycle, such to be acceptable to stakeholders in the construction process (i.e. from the owner to the end-user), (b) to provide models and methodologies for dynamic monitoring of the performance of structures and infrastructures, to be integrated in appropriately designed procedures, and (c) to collect, refi ne, fi le and disseminate the knowledge available on a European basis, concerning the performance of wind-exposed structures and facilities, in a way such to be of use to Construction Industry. This volume summarises the main results obtained during the Project, with each Section addressing a different class of problems, to which many research Units have contributed. A list of papers containing the main results of the research activities carried out within the Project is also provided in each Section.
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3

Hoffman, Mark. Application development: Managing the project life cycle. Carlsbad, CA: Midrange Computing, 1997.

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4

Program management: A life cycle approach. Boca Raton, FL: CRC Press, 2013.

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5

Shelton, Joelle L. Designer and constructor practices to ensure life cycle performance. Springfield, Va: Available from National Technical Information Service, 1998.

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6

Hawk, Hugh. Bridge life-cycle cost analysis. Washington, D.C: Transportation Research Board, National Research Council, 2003.

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7

Peterson, Dale E. Life-cycle cost analysis of pavements. Washington, D.C: Transportation Research Board, National Research Council, 1985.

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8

Peterson, Dale E. Life-cycle cost analysis of pavements. Springfield, VA: National Technical Information Service, U.S. Department of Commerce, 1985.

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9

Fowler, Kim R. Electronic instrument design: Architecting for the life cycle. New York: Oxford University Press, 1996.

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10

Engineers, Society of Automotive, ed. 1998 Total Life Cycle Conference proceedings. Warrendale, PA: Society of Automotive Engineers, 1998.

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11

Griffin, Brian J. Risk analysis basis for pipeline life cycle safety. Calgary: National Energy Board, 1994.

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12

United States. Dept. of the Interior. Office of the Secretary. A Project manager's guide to application systems life cycle management. [Washington, D.C.]: The Department, 1985.

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13

Thomas, Robin. Life cycle assessment for chemical agent resistant coating: Project summary. Cincinnati, OH: U.S. Environmental Protection Agency, National Risk Management Research Laboratory, 1996.

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14

Haug, Michael, Eric W. Olsen, Gilles Vallet, and Olivier Bécart, eds. Software Management Approaches: Project Management, Estimation, and Life Cycle Support. Berlin, Heidelberg: Springer Berlin Heidelberg, 2001. http://dx.doi.org/10.1007/978-3-642-56616-5.

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15

Marcella, Albert J. Process development life cycle: An audit survival guide. [Altamonte Springs, Fla.]: Institute of Internal Auditors, 2001.

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16

L, Kirkham Richard, ed. Whole life-cycle costing: Risk and risk responses. Oxford: Blackwell, 2004.

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17

Engineers, Society of Automotive, ed. Proceedings of the 1997 Total Life Cycle Conference. Warrendale, PA: Society of Automotive Engineers, 1997.

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18

William, Fawcett, ed. Whole life sustainability. London: RIBA Publishing, 2013.

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19

Fuller, Sieglinde K. Project-oriented life-cycle costing workshop for energy conservation in buildings. Gaithersburg, MD: U.S. Dept. of Commerce, Technology Administration, National Institute of Standards and Technology, 2001.

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20

Fuller, Sieglinde K. Project-oriented life-cycle costing workshop for energy conservation in buildings. Gaithersburg, MD: U.S. Dept. of Commerce, Technology Administration, National Institute of Standards and Technology, 2001.

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21

Fuller, Sieglinde K. Project-oriented life-cycle costing workshop for energy conservation in buildings. Gaithersburg, MD: U.S. Dept. of Commerce, Technology Administration, National Institute of Standards and Technology, 2001.

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22

Fowler, Kim. Electronic instrument design: Architecting for the life cycle. New York: Oxford University Press, 1996.

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23

Marcussen, Martin. Central bankers, the ideational life-cycle and the social construction of EMU. San Domenico: European University Institute, 1998.

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24

1972-, Radford Darren, ed. Going beyond the waterfall: Managing scope effectively across the project life cycle. Plantation, FL: J. Ross Pub., 2014.

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25

Enabling technologies for unified life-cycle engineering of structural components. Washington, D.C: National Academy Press, 1991.

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26

Tolle, Duane A. A life-cycle impact assessment demonstration for the GBU-24: Project summary. Cincinnati, OH: U.S. Environmental Protection Agency, National Risk Management Research Laboratory, 1999.

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27

Tolle, Duane A. A life-cycle impact assessment demonstration for the GBU-24: Project summary. Cincinnati, OH: U.S. Environmental Protection Agency, National Risk Management Research Laboratory, 1999.

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28

Tolle, Duane A. A life-cycle impact assessment demonstration for the GBU-24: Project summary. Cincinnati, OH: U.S. Environmental Protection Agency, National Risk Management Research Laboratory, 1999.

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29

Tolle, Duane A. A life-cycle impact assessment demonstration for the GBU-24: Project summary. Cincinnati, OH: U.S. Environmental Protection Agency, National Risk Management Research Laboratory, 1999.

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30

Tolle, Duane A. A life-cycle impact assessment demonstration for the GBU-24: Project summary. Cincinnati, OH: U.S. Environmental Protection Agency, National Risk Management Research Laboratory, 1999.

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31

Tolle, Duane A. A life-cycle impact assessment demonstration for the GBU-24: Project summary. Cincinnati, OH: U.S. Environmental Protection Agency, National Risk Management Research Laboratory, 1999.

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32

1956-, Gonzales Daniel, United States Air Force, and Project Air Force (U.S.), eds. Life cycle cost assessments for military transatmospheric vehicles. Santa Monica, CA: RAND, 1997.

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33

Onisko, Stephen A. Non-space heating electrical consumption in manufactured homes: Residential construction demonstration project Cycle II, final report. [Portland, Or: Bonneville Power Administration, 1993.

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34

Kraemer, Sandra R. The life-cycle analysis of materials competition for pipe in the construction industry. Washington, DC: Dept. of the Interior, Bureau of Mines, 1991.

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35

Kraemer, Sandra R. The life-cycle analysis of materials competition for pipe in the construction industry. Washington, D.C: Bureau of Mines, 1991.

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36

Hudson, W. Ronald. Infrastructure management: Integrating design, construction, maintenance, rehabilitation, and renovation. New York: McGraw-Hill, 1997.

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37

Walls, James. Life-cycle cost analysis in pavement design: In search of better investment decisions. [Washington, DC]: U.S. Dept. of Transportation, Federal Highway Administration, 1998.

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38

Kaklauskas, A. Multiple criteria decision support of building life cycle: Research report presented for habilitation, technological sciences, civil engineering (02T). Vilnius: "Technika", 1999.

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39

Engineers, Society of Automotive, ed. Proceedings of the 2000 Total Life Cycle Conference: [land, sea & air mobility]. Warrendale, Pa: Society of Automotive Engineers, 2000.

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40

Administration, Bonneville Power. An analysis of predicted vs. monitored space heat energy use in 120 homes: Residential construction demonstration project cycle II. Portland, OR: Bonneville Power Administration, 1991.

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41

Project Life Cycle Economics: Cost Estimation, Management and Effectiveness in Construction Projects. Taylor & Francis Group, 2015.

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42

Life-cycle cost analysis in pavement design: Demonstration project no. 115. [Washington, D.C.?]: U.S. Dept. of Transportation, Federal Highway Administration, 1998.

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43

Integrating Eco-Efficiency in Rail Vehicle Design: Final Report of the Ravel Project. Leuven Univ Pr, 2001.

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44

Pica, Massimo. Project Life Cycle Economics. Routledge, 2016. http://dx.doi.org/10.4324/9781315602387.

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45

Life Cycle Costing for Construction. London: Taylor & Francis Group Plc, 2004.

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46

Flanagan, Roger. Life Cycle Costing for Construction. Hyperion Books, 1989.

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47

W, Bull John, ed. Life cycle costing for construction. London: Blackie Academic & Professional, 1993.

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48

Bull, J. W. Life Cycle Costing for Construction. Routledge, 2003. http://dx.doi.org/10.4324/9780203487723.

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49

Sustainable Construction Technologies: Life-Cycle Assessment. Elsevier Science & Technology, 2019.

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50

Life Cycle Assessment. Routledge, 2014.

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