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Articles

Empirical modeling between degree days and optimum insulation thickness for external wall

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Pages 1314-1334 | Received 16 May 2019, Accepted 24 Jul 2019, Published online: 08 Aug 2019

References

  • Al-Khawaji, M. J. 2004. Determination and selecting the optimum thickness of insulation for buildings in hot countries by accounting for solar radiation. Applied Thermal Engineering 24 (17–18):2601–10. doi:10.1016/j.applthermaleng.2004.03.019.
  • Arslan, O., and R. Kose. 2006. Thermoeconomic optimization of insulation thickness considering condensed vapour in buildings. Energy and Buildings 38 (12):1400–08. doi:10.1016/j.enbuild.2006.02.012.
  • Bolatturk, A. 2006. Determination of optimum insulation thickness for building walls with respect to various fuels and climate zones in Turkey. Applied Thermal Engineering 26 (11):1301–09. doi:10.1016/j.applthermaleng.2005.10.019.
  • Cengel, Y. A., and M. A. Boles. 2002. Thermodynamics: an engineering approach. Sea, 1000, 8862:287–93
  • Dombaycı, Ö. A. 2007. The environmental impact of optimum insulation thickness for external walls of buildings. Building and Environment 42 (11):3855–59.
  • Dombaycı, Ö. A. 2009. Degree-days maps of Turkey for various base temperatures.”. Energy 34 (11):1807–12. doi:10.1016/j.energy.2009.07.030.
  • Fuel Prices. January 31, 2017 Accessed February 10, 2017. www.dosider.org/dosya/belgeler/-yakit-fiyatlari-konut.xlsx
  • Gustafsson, S. I. 2000. Optimization of insulation measures on existing buildings. Energy and Buildings 33 (1):49–55. doi:10.1016/S0378-7788(00)00062-1.
  • Hasan, A. 1999. Optimizing insulation thickness for buildings using life cycle cost. Applied Energy 63 (2):115–24. doi:10.1016/S0306-2619(99)00023-9.
  • Insulation Unit Prices. Accessed February 10, 2017. http://www.izocam.com.tr.
  • Interest and Inflation Rates. Accessed February 10, 2017. http://www.tcmb.gov.tr.
  • Kallioğlu, M. A., Z. A. Batı, H. Karakaya, and A. Durmuş. 2016. Envıronmental and economic analysis of optimum heat insulation thickness in energy saving. European Journal of Technic 6:2.
  • Kaynakli, O., A. H. Bademlioglu, and H. T. Ufat. 2018. Determination of optimum insulation thickness for different insulation applications considering condensation. Tehnicki Vjesnik 25 (Supplement 1):32–42.
  • Kurekci, N. A. 2016. Determination of optimum insulation thickness for building walls by using heating and cooling degree-day values of all Turkey’s provincial centers. Energy and Buildings 118:197–213. doi:10.1016/j.enbuild.2016.03.004.
  • Liu, X., Y. Chen, H. Ge, P. Fazio, and G. Chen. 2015. Determination of optimum insulation thickness of exterior wall with moisture transfer in hot summer and cold winter zone of China. Procedia Engineering 121:1008–15. doi:10.1016/j.proeng.2015.09.072.
  • Mahlia, T. M. I., B. N. Taufiq, and H. H. Masjuki. 2007. Correlation between thermal conductivity and the thickness of selected insulation materials for building wall. Energy and Buildings 39 (2):182–87. doi:10.1016/j.enbuild.2006.06.002.
  • Nyers, J., L. Kajtar, S. Tomić, and A. Nyers. 2015. Investment-savings method for energy-economic optimization of external wall thermal insulation thickness. Energy and Buildings 86:268–74. doi:10.1016/j.enbuild.2014.10.023.
  • Shekarchian, M., M. Moghavvemi, B. Rismanchi, T. M. I. Mahlia, and T. Olofsson. 2012. The cost benefit analysis and potential emission reduction evaluation of applying wall insulation for buildings in Malaysia. Renewable and Sustainable Energy Reviews 16 (7):4708–18. doi:10.1016/j.rser.2012.04.045.
  • Söylemez, M. S., and M. Unsal. 1999. Optimum insulation thickness for refrigeration applications. Energy Conversion and Management 40 (1):13–21. doi:10.1016/S0196-8904(98)00125-3.
  • Standard, T. 1999. 825 (TS 825). Thermal insulation in buildings, Official Gazette (23725), Ankara 14.
  • Wong, I. L., P. C. Eames, and R. S. Perera. 2007. A review of transparent insulation systems and the evaluation of payback period for building applications. Solar Energy 81 (9):1058–71. doi:10.1016/j.solener.2007.04.004.
  • Yildiz, A., G. Gurlek, M. Erkek, and N. Ozbalta. 2008. Economical and environmental analyses of thermal insulation thickness in buildings. Journal of Thermal Science and Technology 28 (2):25–34.
  • Yılmaz, E., and İ. Çiçek. 2018. Detailed Köppen-Geiger climate regions of Turkey. Journal of Human Sciences 15 (1):225–42. doi:10.14687/jhs.v15i1.5040.
  • Yuan, J., C. Farnham, K. Emura, and M. A. Alam. 2016. Proposal for optimum combination of reflectivity and insulation thickness of building exterior walls for annual thermal load in Japan. Building and Environment 103:228–37.

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