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Cost-Effective Options for the Renovation of an Existing Education Building toward the Nearly Net-Zero Energy Goal-Life-Cycle Cost Analysis 원문보기

Sustainability, v.11 no.8, 2019년, pp.2444 -   

Hu, Ming (School of Architecture, Planning and Preservation, University of Maryland, College Park, MD 20742, USA)

Abstract AI-Helper 아이콘AI-Helper

A comprehensive case study on life-cycle cost analysis (LCCA) was conducted on a two- story education building with a projected 40-year lifespan in College Park, Maryland. The aim of this paper was to (1) create a life cycle assessment model, using an education building to test the model, (2) compar...

참고문헌 (43)

  1. Commercial Buildings Energy Consumption Survey (CBECS) (2019, April 01). U.S. Energy Information Administration, Available online: https://www.eia.gov/consumption/commercial/. 

  2. (2019, March 28). Economist Intelligence Unit, Investing in Energy Efficiency in Europe’s Building: A view from the Construction and Real Estate Sectors; The Economist Intelligence Unit (EIU), Commissioned by the GBPN. Available online: https://www.tias.edu/docs/default-source/documentlibrary_fsinsight/the-eiu-report.pdf. 

  3. (2019, April 01). Robust Outlook for Residential Remodelling Through Mid-Year 2019. Joint Center for Housing Studies. Harvard University. Available online: https://www.jchs.harvard.edu/press-releases/robust-outlook-residential-remodeling-through-mid-year-2019. 

  4. Artola, I., Rademaekers, K., Williams, R., and Yearwood, J. (2016). Boosting Building Renovation: What Potential and Value for Europe, Economic and Scientific Policy, European Parliament, Policy Department A. 

  5. Boermans, T., Papaefthymiou, G., Offermann, M., John, A., and Comaty, F. (2019, March 28). The Role of Energy Efficient Buildings in the EUs Future Power System. Last Modified 5 October 2015. Available online: https://www.ecofys.com/files/files/ecofys-2015-role-of-energy-efficient-buildings-in-power-systems.pdf. 

  6. Risto Cost-optimal energy performance renovation measures of educational buildings in cold climate Appl. Energy 2016 10.1016/j.apenergy.2016.09.044 183 1005 

  7. 10.3390/su10093287 Hu, M. (2018). Optimal Renovation Strategies for Education Buildings-A Novel BIM-BPM-BEM Framework. Sustainability, 10. 

  8. Fuller, S.K., and Stephen, R.P. (1995). Life Cycle Costing Manual. NIST Handbook 135. 

  9. Marszal Life cycle cost analysis of a multi-storey residential net zero energy building in Denmark Energy 2011 10.1016/j.energy.2011.07.010 36 5600 

  10. Mearing, T., Coffee, N., and Morgan, M. (1999). Life Cycle Cost Analysis Handbook. 

  11. 10.2172/1395932 Fu, R., Feldman, D.J., Margolis, R.M., Woodhouse, M.A., and Ardani, K.B. (2017). US Solar Photovoltaic System Cost Benchmark: Q1 2017 (No. NREL/TP-6A20-68925). 

  12. Fuller, S. (2019, March 28). Life-Cycle Cost Analysis (LCCA). Whole Building Design Guide. Available online: https://archexamacademy.com/download/Building%20Design%20Construction%20Systems/Life-Cycle%20Cost%20Analysis.pdf. 

  13. Wong Life cycle cost analysis of rooftop gardens in Singapore Build. Environ. 2003 10.1016/S0360-1323(02)00131-2 38 499 

  14. Pelzeter Building optimisation with life cycle costs-the influence of calculation methods J. Facil. Manag. 2007 10.1108/14725960710751861 5 115 

  15. Rushing, A.S., Kneifel, J.D., and Lippiatt, B.C. (2019, March 28). Energy Price Indices and Discount Factors for Life-Cycle Cost Analysis, Available online: https://nvlpubs.nist.gov/nistpubs/ir/2013/NIST.IR.85-3273-28.pdf. 

  16. Cosner, D. (2019, January 01). Invisible Crisis at University of Maryland. Available online: https://www.facilities.umd.edu/documents/Invisible%20Crisis.pdf. 

  17. University of Maryland (2019, March 28). Facilities Master Plan 2011-2030. Available online: https://www.facilities.umd.edu/documents/fmp/2011-2030%20facilities%20Master%20Plan.pdf. 

  18. University of Maryland (2019, January 01). Progress toward UMD Carbon Neutrality. Available online: https://www.president.umd.edu/progress-toward-umd-carbon-neutrality. 

  19. Kaklauskas Selection of low-e windows in retrofit of public buildings by applying multiple criteria method COPRAS: A Lithuanian case Energy Build. 2006 10.1016/j.enbuild.2005.08.005 38 454 

  20. Juan A hybrid decision support system for sustainable office building renovation and energy performance improvement Energy Build. 2010 10.1016/j.enbuild.2009.09.006 42 290 

  21. Ma Existing building retrofits: Methodology and state-of-the-art Energy Build. 2012 10.1016/j.enbuild.2012.08.018 55 889 

  22. Ferreira Comparing cost-optimal and net-zero energy targets in building retrofit Build. Res. Inf. 2016 10.1080/09613218.2014.975412 44 188 

  23. 10.1016/S0378-7788(00)00114-6 Crawley, D.B., Lawrie, L.K., Winkelmann, F.C., and Pedersen, C.O. (2001). EnergyPlus: New Capabilities in a Whole-Building Energy Simulation Program. Proceedings of Building Simulation, Springer. 

  24. Zolotova Autodesk Revit-key to successful training of highly qualified civil engineers Applied Mechanics and Materials 2015 10.4028/www.scientific.net/AMM.725-726.1617 Volume 725 1617 

  25. Tschätsch, C., Turner, E., Marston, A., Zakhor, A., Lemmond, J., and Baumann, O. (2016). Smart energy analysis calculator-an interactive tool for automating building energy analysis & expediting energy audits. Proceedings of SimBuild, ASHRAE. 

  26. Yin Combined solar heating and air-source heat pump system with energy storage: Thermal performance analysis and optimization Procedia Eng. 2017 10.1016/j.proeng.2017.09.903 205 4090 

  27. Ramos Hybrid photovoltaic-thermal solar systems for combined heating, cooling and power provision in the urban environment Energy Convers. Manag. 2017 10.1016/j.enconman.2017.03.024 150 838 

  28. Lund The role of district heating in future renewable energy systems Energy 2010 10.1016/j.energy.2009.11.023 35 1381 

  29. Kim Life cycle greenhouse gas emissions of thin-film photovoltaic electricity generation: Systematic review and harmonization J. Ind. Ecol. 2012 10.1111/j.1530-9290.2011.00423.x 16 S110 

  30. Grant Life cycle assessment and service life prediction: A case study of building envelope materials J. Ind. Ecol. 2014 10.1111/jiec.12089 18 187 

  31. Saunders 2013. Analyzing the practice of life cycle assessment: Focus on the building sector J. Ind. Ecol. 2013 10.1111/jiec.12028 17 777 

  32. Raugei Life cycle impacts and costs of photovoltaic systems: Current state of the art and future outlooks Energy 2009 10.1016/j.energy.2009.01.001 34 392 

  33. Green Solar Cell Efficiency Tables (Version 50) Prog. Photovolt. Res. Appl. 2017 10.1002/pip.2909 25 668 

  34. EIA’s International Energy Outlook 2018 (2019, March 28). Average Price of Electricity to Ultimate Customers by End-Sue Sector, Available online: https://www.eia.gov/electricity/monthly/epm_table_grapher.php?t=epmt_5_6_a. 

  35. Moselle, B. (2017). National Building Cost Manual, Craftsman Book Company. [41st ed.]. 

  36. U.S. Energy Information (2019, March 28). International Energy Outlook 2018, Available online: https://www.eia.gov/outlooks/ieo/. 

  37. Price 2017. High-concentration planar microtracking photovoltaic system exceeding 30% efficiency Nat. Energy 2017 10.1038/nenergy.2017.113 2 17113 

  38. Craftsman Book Company (2019, April 01). 2017 National Building Cost Manual. Available online: https://www.craftsman-book.com/media/static/previews/2017_NBC_book_preview.pdf. 

  39. 10.3390/en11061478 Ferrara, M., Monetti, V., and Fabrizio, E. (2018). Cost-Optimal Analysis for Nearly Zero Energy Buildings Design and Optimization: A Critical Review. Energies, 11. 

  40. Stocker Cost-optimal renovation and energy performance: Evidence from existing school buildings in the Alps Energy Build. 2015 10.1016/j.enbuild.2015.04.005 100 20 

  41. Stephan A comprehensive assessment of the life cycle energy demand of passive houses Appl. Energy 2013 10.1016/j.apenergy.2013.05.076 112 23 

  42. Dixit Life cycle embodied energy analysis of residential buildings: A review of literature to investigate embodied energy parameters Renew. Sustain. Energy Rev. 2017 10.1016/j.rser.2017.05.051 79 390 

  43. Ryghaug How energy efficiency fails in the building industry Energy Policy 2009 10.1016/j.enpol.2008.11.001 37 984 

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