Academic literature on the topic 'Life-cycle framework'

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Journal articles on the topic "Life-cycle framework"

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Babu, Prabhu. "Quantitative Framework for Managing Software Life Cycle." Open Software Engineering Journal 5, no. 1 (2011): 1–18. http://dx.doi.org/10.2174/1874107x01105010001.

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Hauschild, Michael Z., Christoph Herrmann, and Sami Kara. "An Integrated Framework for Life Cycle Engineering." Procedia CIRP 61 (2017): 2–9. http://dx.doi.org/10.1016/j.procir.2016.11.257.

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Ma, Junhai, Airong Chen, and Jun He. "General framework for bridge life cycle design." Frontiers of Architecture and Civil Engineering in China 3, no. 1 (2009): 50–56. http://dx.doi.org/10.1007/s11709-009-0004-7.

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Yang, Yi. "A unified framework of life cycle assessment." International Journal of Life Cycle Assessment 24, no. 4 (2019): 620–26. http://dx.doi.org/10.1007/s11367-019-01595-w.

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Hafizan, C., N. Hussein, and Z. Z. Noor. "Life Cycle Assessment Framework Application in Malaysia." IOP Conference Series: Materials Science and Engineering 1051, no. 1 (2021): 012101. http://dx.doi.org/10.1088/1757-899x/1051/1/012101.

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Osman, Hesham. "Risk-Based Life-Cycle Cost Analysis of Privatized Infrastructure." Transportation Research Record: Journal of the Transportation Research Board 1924, no. 1 (2005): 192–96. http://dx.doi.org/10.1177/0361198105192400124.

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One main shortcoming in the use of life-cycle cost analysis (LCCA) for analyzing long-term infrastructure projects is the uncertainty in the value of the LCCA parameters. Probabilistic LCCA incorporates these elements of uncertainty by assigning probabilistic values to cost and performance parameters. Studies that have performed probabilistic LCCA in the infrastructure domain propose a probability-based framework for alternative comparison. Although such frameworks convey a wealth of probabilistic information, they are not well suited to decision making. This study proposes a risk-based framew
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Takata, S., and E. O’Shima. "Framework for Computer Assisted Life-Cycle Maintenance System." IFAC Proceedings Volumes 24, no. 6 (1991): 451–56. http://dx.doi.org/10.1016/s1474-6670(17)51182-9.

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Boehm, Barry, JoAnn Lane, and Supannika Koolmanojwong. "An Orthogonal Framework for Improving Life Cycle Affordability." Procedia Computer Science 16 (2013): 1170–79. http://dx.doi.org/10.1016/j.procs.2013.01.123.

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Lin, Xianke, and Wei Lu. "A Framework for Optimization on Battery Cycle Life." Journal of The Electrochemical Society 165, no. 14 (2018): A3380—A3388. http://dx.doi.org/10.1149/2.0741814jes.

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Young, S. B., and W. H. Vanderburg. "A Materials Life Cycle Framework for Preventive Engineering." IEEE Technology and Society Magazine 11, no. 3 (1992): 26. http://dx.doi.org/10.1109/mtas.1992.158968.

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Dissertations / Theses on the topic "Life-cycle framework"

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Burul, Dora. "Life Cycle Management as framework for successful Life Cycle Assessment implementation in the commercial vehicle industry." Thesis, KTH, Hållbar utveckling, miljövetenskap och teknik, 2018. http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-231105.

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The transport industry is in the middle of a conceptual shift driven by delivering the targets set by the Paris Agreement. Proactive heavy-duty vehicle companies seek to further gather knowledge in a structured way on environmental impacts of its products and services. The method to be implemented is Life Cycle Assessment (LCA). For implementation of LCA certain organisational and operational factors pre-requirements need to be addressed. The study takes key factors of Life Cycle Management (LCM) as a framework for assessing the readiness of Scania CV AB to implement LCA. Said key factors of L
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Schumann, Benjamin. "Aeronautical life-cycle mission modelling framework for conceptual design." Thesis, University of Southampton, 2014. https://eprints.soton.ac.uk/366537/.

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This thesis introduces a novel framework for life cycle mission modelling during conceptual aeronautical design. The framework supports object-oriented mission definition using Geographical Information System technology. Design concepts are defined generically, enabling simulation of most aeronautical vessels and many non-aeronautical vehicles. Moreover, the framework enables modelling of entire vessel fleets, business competitors and dynamic opera-tional changes throughout a vessel life cycle. Vessels consist of components deteriorating over time. Vessels carry payload that operates within th
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Wahler, Ksenia. "A framework for integrated process and object life cycle modeling /." [S.l.] : [s.n.], 2009. http://opac.nebis.ch/cgi-bin/showAbstract.pl?sys=000282958.

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Majety, Ramesh. "Procedural framework for product life cycle assessment using enterprise approach." Thesis, National Library of Canada = Bibliothèque nationale du Canada, 1996. http://www.collectionscanada.ca/obj/s4/f2/dsk2/ftp04/MQ30916.pdf.

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Maksimovic, Maksim. "Lean knowledge life cycle framework to support lean product development." Thesis, Cranfield University, 2013. http://dspace.lib.cranfield.ac.uk/handle/1826/8263.

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This research thesis presents the development of a novel Lean Knowledge Life Cycle (LeanKLC) framework to support the transformation into a Lean Product Development (LeanPD) knowledge environment. The LeanKLC framework introduces a baseline model to understand the three dimensions of knowledge management in product development as well as its contextualisation with acclaimed LeanPD process models. The LeanKLC framework comprises 23 tasks, each accomplished in one of the seven key stages, these being: knowledge identification, previous knowledge capture, knowledge representation, knowledge shari
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Xie, Hongbo Brenda, and 谢洪波. "Integrated whole life cycle value evaluation framework for infrastructure megaprojects." Thesis, The University of Hong Kong (Pokfulam, Hong Kong), 2012. http://hub.hku.hk/bib/B47753092.

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In the past decades, while many countries planned and undertook more and bigger infrastructure megaprojects, poor performance has marred their delivery, for example through cost overruns, delays, disputes, and shortfalls in expected benefits. It is therefore important to improve performance levels, especially in infrastructure megaprojects that can considerablely influence the economy, society and environment. Project evaluation is an effective tool in project performance management as it provides stakeholders with a management process through which they can learn from the past and perf
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Kucukvar, Murat. "Life Cycle Sustainability Assessment Framework for the U.S. Built Environment." Doctoral diss., University of Central Florida, 2013. http://digital.library.ucf.edu/cdm/ref/collection/ETD/id/5965.

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The overall goals of this dissertation are to investigate the sustainability of the built environment, holistically, by assessing its Triple Bottom Line (TBL): environmental, economic, and social impacts, as well as propose cost-effective, socially acceptable, and environmentally benign policies using several decision support models. This research is anticipated to transform life cycle assessment (LCA) of the built environment by using a TBL framework, integrated with economic input-output analysis, simulation, and multi-criteria optimization tools. The major objectives of the outlined researc
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Alborzfard, Nakisa. "Life Cycle Cost Analysis Framework of Green Features in Buildings." Digital WPI, 2011. https://digitalcommons.wpi.edu/etd-theses/10.

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Sustainability has been heightened to a new level of importance, due to the current global race for commodities and conservation of our environment. Sustainable Buildings are of particular interest since buildings are significant contributors to consumption of resources. Since the inception of the United States Green Building Council (USGBC) in 1993, USGBC has played a key role in providing guidance to the design and construction community in building“green" structures. The Leadership in Energy and Environmental Design (LEED) rating system is an industry accepted standard for the design/constr
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Maury, Thibaut. "Consideration of space debris in the life cycle assessment framework." Thesis, Bordeaux, 2019. http://www.theses.fr/2019BORD0051/document.

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L’analyse de cycle de vie environnementale (ACV), d’après l’ISO 14040/44, a été identifiée par l’agence spatiale Européenne, ArianeGroup et plusieurs acteurs de l’industrie spatiale européenne comme la méthodologie la mieux adaptée pour réaliser l’évaluation environnementale des missions spatiales. Cependant, le secteur spatial est un domaine d’activité dont la particularité est de s’étendre au-delà des limites de l’environnement terrestre. Ainsi, s’il est possible d’évaluer les impacts sur l’environnement classique via la méthodologie ACV, les impacts générés sur l’environnement orbital ne so
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Molwus, Jurbe Joseph. "Stakeholder management in construction projects : a life cycle based framework." Thesis, Heriot-Watt University, 2014. http://hdl.handle.net/10399/2877.

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Although stakeholder management has long been acknowledged as a means of increasing the propensity for successful delivery of construction projects, the full benefits of stakeholder management have yet to be tapped. Previous research efforts indicate lack of comprehensive stakeholder management process since the existing frameworks in construction either focussed on a particular construction stage or failed to incorporate important considerations such as the impact of procurement routes, internal stakeholder collaboration, responsibility for stakeholder management and project life cycle. This
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Books on the topic "Life-cycle framework"

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St. Leger, A. S. 1948-, ed. Assessing health need using the life cycle framework. Open University Press, 1993.

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Carter, Betty. The changing family life cycle: Framework for family therapy. Allyn & Bacon, 1989.

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The Changing Family Life Cycle: A framework for family therapy. Gardner Press, 1988.

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Galluzzo, C. R. Making the product development frameWORK: Insights from the frontlines. Intel Press, 2011.

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Lyon, Andrew B. Consumption taxes in a life-cycle framework: Are sin taxes regressive? National Bureau of Economic Research, 1991.

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Faruqee, Hamid. Population aging and its macroeconomic implications: A framework for analysis. International Monetary Fund, Research Department, 2002.

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David, Persselin, ed. An economic framework for evaluating military aircraft replacement. Rand, 2002.

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Kathy, Berliner, and Jacob Demaris, eds. Single in a married world: A life cycle framework for working with the unmarried adult. W.W. Norton & Co., 1995.

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Conceptual Framework for Life-cycle Impact Assessment (1992 Sandestin, Fla.). A Conceptual Framework for Life-cycle Impact Assessment: February 1-7, 1992, Sandestin, Florida USA. Society of Environmental Toxicology and Chemistry, 1992.

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Morris, Teubal, and CEPAL Buenos Aires, eds. Innovation and technology policy (ITP) for catching up: A three phase life cycle framework for industrializing economies. United Nations, Oficina de la CEPAL en Buenos Aires, 2007.

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Book chapters on the topic "Life-cycle framework"

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Iparraguirre, José Luis. "Life-Cycle Framework." In Economics and Ageing. Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-319-93248-4_8.

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Behrendt, Siegfried, Christine Jasch, Maria Constança Peneda, and Hans van Weenen. "New Framework." In Life Cycle Design. Springer Berlin Heidelberg, 1997. http://dx.doi.org/10.1007/978-3-642-60783-7_3.

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Farr, John Vail, and Isaac Faber. "Life cycle framework and techniques." In Engineering Economics of Life Cycle Cost Analysis. CRC Press, 2018. http://dx.doi.org/10.1201/9780429466304-6.

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Hofstetter, Patrick. "Perfection of the Framework." In Perspectives in Life Cycle Impact Assessment. Springer US, 1998. http://dx.doi.org/10.1007/978-1-4615-5127-0_8.

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Leonard, Andy. "BimlExpress Metadata Framework." In Data Integration Life Cycle Management with SSIS. Apress, 2017. http://dx.doi.org/10.1007/978-1-4842-3276-7_10.

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Shrivastava, Shilpi, and Seema Unnikrishnan. "Life Cycle Sustainability Assessment: Methodology and Framework." In Life Cycle Sustainability Assessment (LCSA). Springer Singapore, 2021. http://dx.doi.org/10.1007/978-981-16-4562-4_3.

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Frankl, Paolo, and Frieder Rubik. "Framework and theoretical background." In Life Cycle Assessment in Industry and Business. Springer Berlin Heidelberg, 2000. http://dx.doi.org/10.1007/978-3-662-04127-7_2.

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Leonard, Andy. "SSIS Framework Community Edition." In Data Integration Life Cycle Management with SSIS. Apress, 2017. http://dx.doi.org/10.1007/978-1-4842-3276-7_8.

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Mele, Mattia, Giampaolo Campana, and Giulia D’Avino. "A Life-Cycle Assessment Framework for Stereolithography." In Sustainable Design and Manufacturing 2019. Springer Singapore, 2019. http://dx.doi.org/10.1007/978-981-13-9271-9_9.

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Scandelius, Christina, and Geraldine Cohen. "A Life Cycle Stakeholder Management Framework for Enhanced Collaboration Between Stakeholders with Competing Interests." In Towards Life Cycle Sustainability Management. Springer Netherlands, 2011. http://dx.doi.org/10.1007/978-94-007-1899-9_2.

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Conference papers on the topic "Life-cycle framework"

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De Nocker, Leo, Luc Int Panis, and Rudi Torfs. "ExternE: A European Accounting Framework for Life Cycle Impact Assessment and External Costs of Transport." In Total Life Cycle Conference and Exposition. SAE International, 2000. http://dx.doi.org/10.4271/2000-01-1480.

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Bertino, Elisa. "IoT Security A Comprehensive Life Cycle Framework." In 2019 IEEE 5th International Conference on Collaboration and Internet Computing (CIC). IEEE, 2019. http://dx.doi.org/10.1109/cic48465.2019.00033.

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Martin, David, Carlos Lamsfus, and Aurkene Alzua. "Automatic context data life cycle management framework." In 2010 5th International Conference on Pervasive Computing and Applications (ICPCA). IEEE, 2010. http://dx.doi.org/10.1109/icpca.2010.5704122.

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Takata, Ogawa, Umeda, and Inamura. "Framework for systematic evaluation of life cycle strategy by means of life cycle simulation." In 2003. 3rd International Symposium on Environmentally Conscious Design and Inverse Manufacturing - EcoDesign'03. IEEE, 2003. http://dx.doi.org/10.1109/ecodim.2003.1322661.

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Takata, S., T. Ogawa, Y. Umeda, and T. Inamura. "Framework for systematic evaluation of life cycle strategy by means of life cycle simulation." In 2003 IEEE 58th Vehicular Technology Conference. VTC 2003-Fall (IEEE Cat. No.03CH37484). IEEE, 2003. http://dx.doi.org/10.1109/vetecf.2003.240402.

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MENDOZA, JORGE, JOCHEN KÖHLER, ELIZABETH BISMUT, and DANIEL STRAUB. "Integrated Life-cycle Decision Framework for Structural Systems." In Structural Health Monitoring 2019. DEStech Publications, Inc., 2019. http://dx.doi.org/10.12783/shm2019/32272.

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Waghmode, Laxman Y., and Anil D. Sahasrabudhe. "Product Life Cycle Cost Modelling A Suggested Framework." In 2008 First International Conference on Emerging Trends in Engineering and Technology. IEEE, 2008. http://dx.doi.org/10.1109/icetet.2008.27.

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Gao, Lingling, Yanhui Li, and Jiangbi Hu. "Life-cycle cost framework analysis for a bridge." In International Conference on Civil, Transportation and Environmental Engineering (CTEE 12). WIT Press, 2013. http://dx.doi.org/10.2495/ctee120131.

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Butt, A. A., D. Reger, J. T. Harvey, and N. Garg. "Airfield Pavement Life Cycle Assessment Framework and Guidelines." In International Conference on Highway Pavements and Airfield Technology 2017. American Society of Civil Engineers, 2017. http://dx.doi.org/10.1061/9780784480953.021.

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Unde, Yogesh, and Subramaniam Rajan. "Framework to Explore the Design Space for Design of Tall Buildings." In International Conference on Performance-based and Life-cycle Structural Engineering. School of Civil Engineering, The University of Queensland, 2015. http://dx.doi.org/10.14264/uql.2016.554.

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Reports on the topic "Life-cycle framework"

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Lord, Anna S., Peter Holmes Kobos, and David James Borns. A Life Cycle Cost Analysis Framework for Geologic Storage of Hydrogen. Office of Scientific and Technical Information (OSTI), 2009. http://dx.doi.org/10.2172/1324936.

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Lord, Anna S., Peter Holmes Kobos, and David James Borns. A Life Cycle Cost Analysis Framework for Geologic Storage of Hydrogen. Office of Scientific and Technical Information (OSTI), 2009. http://dx.doi.org/10.2172/1325533.

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Lyon, Andrew, and Robert Schwab. Consumption Taxes in a Life-Cycle Framework: Are Sin Taxes Regressive? National Bureau of Economic Research, 1991. http://dx.doi.org/10.3386/w3932.

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Kobos, Peter Holmes, Anna Snider Lord, and David James Borns. A life cycle cost analysis framework for geologic storage of hydrogen : a scenario analysis. Office of Scientific and Technical Information (OSTI), 2010. http://dx.doi.org/10.2172/1008135.

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Schroeder, Jenna, Christopher Harto, and Corrie Clark. Geothermal Water Use: Life Cycle Water Consumption, Water Resource Assessment, and Water Policy Framework. Office of Scientific and Technical Information (OSTI), 2014. http://dx.doi.org/10.2172/1171191.

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Kobos, Peter Holmes, Anna Snider Lord, David James Borns, and Geoffrey T. Klise. A life cycle cost analysis framework for geologic storage of hydrogen : a user's tool. Office of Scientific and Technical Information (OSTI), 2011. http://dx.doi.org/10.2172/1029761.

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Schroeder, J. N., C. B. Harto, R. M. Horner, and C. E. Clark. Geothermal Water Use: Life Cycle Water Consumption, Water Resource Assessment, and Water Policy Framework. Office of Scientific and Technical Information (OSTI), 2014. http://dx.doi.org/10.2172/1155056.

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Lawrence, Jeremy, Jason Hollern, Brad Geddes, et al. Fossil Power Plant Cyber Security Life-Cycle Risk Reduction, A Practical Framework for Implementation. Office of Scientific and Technical Information (OSTI), 2020. http://dx.doi.org/10.2172/1764035.

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Al-Qadi, Imad, Hasan Ozer, Mouna Krami Senhaji, et al. A Life-Cycle Methodology for Energy Use by In-Place Pavement Recycling Techniques. Illinois Center for Transportation, 2020. http://dx.doi.org/10.36501/0197-9191/20-018.

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Worldwide interest in using recycled materials in flexible pavements as an alternative to virgin materials has increased significantly over the past few decades. Therefore, recycling has been utilized in pavement maintenance and rehabilitation activities. Three types of in-place recycling technologies have been introduced since the late 70s: hot in-place recycling, cold in-place recycling, and full-depth reclamation. The main objectives of this project are to develop a framework and a life-cycle assessment (LCA) methodology to evaluate maintenance and rehabilitation treatments, specifically in
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Jordan, Gretchen, Jonathan Mote, Rosalie Ruegg, Thomas Choi, and Angela Becker-Dippmann. A Framework for Evaluating R&D Impacts and Supply Chain Dynamics Early in a Product Life Cycle. Looking inside the black box of innovation. Office of Scientific and Technical Information (OSTI), 2014. http://dx.doi.org/10.2172/1336535.

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