Scientific Research and Essays

  • Abbreviation: Sci. Res. Essays
  • Language: English
  • ISSN: 1992-2248
  • DOI: 10.5897/SRE
  • Start Year: 2006
  • Published Articles: 2768

Full Length Research Paper

Optimizing the life cycle of an office building at semiarid region

Pooya Pakmehr
  • Pooya Pakmehr
  • Department of Engineering and Technology, Istanbul Technical University, Istanbul, 34437, Turkey.
  • Google Scholar
Mustafa Erkan Karaguler
  • Mustafa Erkan Karaguler
  • Department of Architecture, Istanbul Technical University, Istanbul, 34437, Turkey.
  • Google Scholar


  •  Received: 19 April 2017
  •  Accepted: 29 June 2017
  •  Published: 30 June 2017

References

Adalberth K (1997). Energy Use during the Life Cycle of Buildings: A Method. Build. Environ. 32(4):317-320.
Crossref

 

Ascione F, Bianco N, Francesca De Masi R, de'Rossi F, Peter VG (2014). Energy Refurbishment of Existing Buildings Through The Use of Phase Change Materials. Energy Savings and Indoor Comfort in the Cooling Season. Appl. Ener. 113:990-1007.
Crossref

 
 

Azari R (2014). Integrated energy and environmental life cycle assessment of office building envelopes. Ener. Build. 82:156-162.
Crossref

 
 

Azzouz A, Borchersb M, Moreirab J, Mavrogiannia A (2017). Life cycle assessment of energy conservation measures during early stage office building design: A case study in London, UK. Ener. Build. 139:547-568.
Crossref

 
 

Bribian IZ, Capilla AV, Uson AA (2011). Life Cycle Assessment of Building Materials: Comparative Analysis of Energy and Environmental Impacts and Evaluation of the Eco-Efficiency Improvement Potential. The University of Zaragoza, Zaragoza, Spain.

 
 

Cabeza LF, Barreneche C, Miro L, Morera J, Bartoli E, Fernandez IA (2013). Low Carbon And Low Embodied Energy Materials In Buildings: A review. Renewable Sustain. Ener. Rev. 23:536-542.
Crossref

 
 

Geng S, Wang Y, Zuo J, Zhou Z, Du H, Mao G (2017). Building life cycle assessment research: A review by bibliometric analysis. Renewable and Sustain. Ener. Rev. 76:176-184.
Crossref

 
 

Ghose A, McLarena S, Dowdellb D, Phipps R (2017). Environmental assessment of deep energy refurbishment for energy efficiency-case study of an office building in New Zealand. Build. Environ. 117:274-287.
Crossref

 
 

Hammond G, Jones C (2008). Inventory of Carbon and Energy (ICE). Department of Mechanical Engineering, University of Bath, UK.

 
 

Jayamaha L (2007). Energy Efficient Building Systems: Green Strategies for Operation and Maintenance. McGraw-Hill, New York.

 
 

Luo Z, Yang L, Liu J (2016) Embodied carbon emissions of office building: A case study of China's 78 office buildings. Build. Environ. 95:365-371.
Crossref

 
 

Ma J, Dua G, Zhanga Z, Wang P, Xiea B (2017). Life cycle analysis of energy consumption and CO2 emissions from a typical large office building in Tianjin, China. Build. Environ. 117:36-48.
Crossref

 
 

Menzies GF (2011). Life Cycle Energy and Environmental Analysis of Partition Wall Systems in the UK. International Conference on Green Buildings and Sustainable Cities.Procedia Engineering. pp. 864-873.

 
 

Ooteghem P, Xu L (2012). The life-cycle assessment of a single-storey retail building in Canada. Build. Environ. 49:212-226.
Crossref

 
 

Pfundstein M, Gellert R, Spitzner M, Rudolphi A (2008). Insulating Materials, Principles Materials Applications. Aumuller Druck, Regensburg. pp. 9-99.
Crossref

 
 

Ramesh T, Prakash R, Shukla KK (2012). Life Cycle Energy Analysis of a Residential Building with Different Envelopes and Climates in Indian Context. Appl. Energy 89:193-202.
Crossref

 
 

Reddy BV, Jagadish KS (2003). Embodied energy of common and alternative building materials and technologies. pp. 129-137.

 
 

Sartori I, Hestnes AG (2007). Energy Use in the Life Cycle of Conventional and Low Energy Buildings: A Review Article. Energy Build. 39:249-257.
Crossref

 
 

Suzuki M, Oka T (1998). Estimation of Life Cycle Energy Consumption and CO2 Emission of Office Buildings in Japan. Ener. Build. 28:33-41.
Crossref

 
 

Thiel Cl, Campion N, Lanndis AE, Jones AK, Schaefer LA (2013). A Materials Life Cycle Assessment of a Net-Zero Energy Building. Energies 6:1125-1141.
Crossref

 
 

Turkish Standard Regulation on the Energy Performance of Buildings (2008). No: 27075 and 26847.