Performance of Building Energy Efficiency by Orientation with Regression: a Case of Semi Desert in Iran

Publish Year: 1395
نوع سند: مقاله ژورنالی
زبان: English
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شناسه ملی سند علمی:

JR_IJAUD-6-2_002

تاریخ نمایه سازی: 21 بهمن 1398

Abstract:

In this research multiple-regression analysis with stepwise selection method was employed for investigating the effectof vertical building envelopes solar radiation (Evr) on cooling energy consumption (E cooling) in residential sector.The high capacity of solar energy in semi-arid climate (Shiraz) can provide a part of buildings required energy. Dependson house orientations in two directions of SE and SW and by using statistical data, E cooling in urban residences wasanalyzed. The autocorrelation in the residuals, checked by Durbin- Watson test, was not existed. By investigatingthe relations between average Evr and E Cooling in each group, it can be proved that climatic orientated houses canachieve lower E Cooling, owing to SE desirable orientation. The percentage of Evr in SW houses is 28.89 % and in SEit is 15.72 %, so choosing the building orientation is important to reduce energy consumption. Finally, the concludingremarks were indicated.

Authors

Zahra Barzegar

Ph.D. Department of Art and Architecture, Science and Research Branch, Islamic Azad University

Shahin Heidari

Associate Professor, Faculty of Architecture, University of Tehran, Tehran, Iran.

Morteza Asade Khalaji

ssociate Professor, Department of Environment and Energy, Science and Research Branch, Islamic Azad University (IAU), Tehran, Iran.

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  • Barzegar, Z., Karimi, N., & Nemati, M. A. (2012). Evaluating ...
  • Borong, L., Gang, T., Peng, W., Ling, S., Yingxin Z., ...
  • Dong, B., Cao C., & Eang Lee, S. (2005). Applying ...
  • EIA Report. (2011). Methodology for Incorporating Source Energy Use. Retrieved ...
  • Fars meteorological organization report. (2011). Population. Retrieved 2014/7/18 from www.amar.org.ir.. ...
  • Gudarzi Farahani, Y., Varmazyari, B., Moshtaridoust, S. (2012). Energy Consumption ...
  • Hirst , E., Goeltz R., & Carney, J. (1982). Residential ...
  • Jaber, S., & Ajib, S. (2011). Optimum, technical and energy ...
  • Jafarpur, K., & Yaghoubi, M. A. (1989). Solar radiation for ...
  • Kasmai, M. (2005). Climate and architecture. (4th ed.).  Tehran: khak ...
  • Kaza, N. (2010). Understanding the spectrum of residential energy consumption: ...
  • Lam, J.C., Tsang, C.L., Yang, L., & Li, D.H.W. (2005). ...
  • Lam, J. C., Wan, K. K. W., Tsang, C. L., ...
  • Lee, W., & Kung, C. (2011). Using climate classification to ...
  • Moradia, H. R., Rajabib, M., & Faragzadeh, M. (2011). Investigation ...
  • Olgyay, V., &  Olgyay, A. (1963). Design with climate: bioclimatic ...
  • Parker, D. S., Barkaszi S. F., & Sonne, J. K. ...
  • Shen, H., Tan, H., & Tzempelikos, A. (2011). The effect ...
  • Swan, L. G. & Ugursal, V.I. (2009). Modeling of end- ...
  • Tabari, H., & Hosseinzadeh Talaee, P. (2011). Analysis of trends ...
  • Taleb, H. M., & Sharples S. (2011). Developing sustainable residential ...
  • Tso Geoffrey, K. F., & Yau Kelvin, K. W. (2007). ...
  • Wan, K. K. W., Li, D. H. W., Liu, D. ...
  • Yaghoubi, M. A., & Sabzevari, A. (1993). Solar radiation for ...
  • Yu. J., Yanga, C., & Tiana, L. (2008). Low-energy envelope ...
  • Zarei, M., & Khademi Zare. H. (2013).  Energy Consumption Modeling ...
  • Zhai, Z., & Previtali, J. M. (2010). Ancient vernacular architecture: ...
  • Zhang, Q. (2004). Residential energy consumption in China and its ...
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