Solar Geometry Factor in the Traditional Banjar “Bubungan Tinggi” House
Abstract
The Banjar tribe in South Kalimantan has a traditional Bubungan Tinggi house, which is intended for nobles. This house is made of wood, in the form of a stilt with one roof angled upwards. This paper examines the solar geometry factor on the high ridge house, which is found on the pointed roof having a small geometric factor, so that the solar energy absorbed on the taper roof is small. This proves the local wisdom of the community in getting thermal comfort in their homes.
Downloads
References
M. I. Saud, “Tanggapan Terhadap Iklim Sebagai Perwujudan Nilai Vernakular Pada Rumah Bubungan Tinggi,” Jurnal Lanting, vol. 1, no. 2, 2012.
J. A. Duffie and Beckman, Solar Engineering of Thermal Processes. John Wiley & Sons, 2013.
W. S. Moustafa, I. R. Hegazy and M. M. Eldabousy, “Roof geometry as a factor of thermal behavior: simulation on based study of using vaults and domes in the Middle East zone,” International Journal of Low-Carbon Technologies, vol. 13, no. 3, 2018.
M. P. G. Sirimanna, R.A. Attalage, “A model for analyzing the thermal performance of roof configurations with flat inclined surfaces,” Energy and Buildings, vol.11, no. 6, 2016.
Rizali, “Densitas Energi Pada Panel Surya Dengan Variasi Jumlah Dan Sudut Reflektor,” Jurnal Al Ulum, vol. 3, no. 2, 2018.
A. Ballabel, A. Mahfouz and F. A. Salem, “Design and Performance of Solar Tracking Photo-Voltaic System,” International Journal of Control, Automation and Systems, vol. 1, no. 2, pp. 49-55, 2013.
C. L. Shen, C. T. Tsai, “Double-Linear Approximation Algorithm to Achieve Maximum Power Point Trac King for Photovoltaic Array-s,” Energies, vol. 5, 2012.
K. H. Liu, “Dynamic Characteris-tics And Graphic Monitoring Design of Photovoltaic Energi Conversion System,” WSEAS Trans. Syst. J-Eltrik, vol. 1, no. 1, Juli 2010.
M. A. Blanco, et al, “Computing the Solar Vector,” Solar Energi, vol. 70, 431–441. 2001.
F. R. Rubio, M. G. Ortega, F. Gordillo, “Application of New Control Strategy for Sun Tracking,” Energy Conv. Manage, vol. 48, pp. 2174–2184, 2007.
C. Y. Lee, P. C. Chou, C. M. Chiang, C. F. Lin, “Sun Tracking Systems: A review,” Sensors, vol. 9, pp. 3875–3890, 2009.
S. Shanmugam, W. Christraj, “The Tracking of the Sun for Solar Paraboloidal Dish Concentrator,” ASME Transactions, vol. 127, pp. 156-160, February 2005.
I. Reda, A, Andreas, “Solar Position Algorithm for Solar Radiation Applications,” Solar Energi, vol. 76, pp. 577–589, 2004.
R. Grena, “An Algorithm for the Computation of the Solar Position,” Solar Energi, vol. 82, pp. 462 – 470, 2008.
K. K. Chong. F. L. Siaw, C. W. Wong, G. S. Wong, “Design and Construction of Non-Imaging Planar Concentrator for Concentrator Photovoltaic System,” Renewable Energi, vol. 34, pp. 1364–1370, 2009.















