Experimental and theoretical studies of various solar control window glasses for the reduction of cooling and heating loads in buildings across different climatic regions

  • Kumar, Kiran G.
  • Saboor, Shaik
  • Kumar, Vanish
  • Kim, Ki-Hyun
  • Babu, Ashok T. P.
Citations

WEB OF SCIENCE

54
Citations

SCOPUS

60

초록

The glass material and position/orientation of windows are very important to control the heat gain in buildings. In this article, we studied the effect of different window glazing materials (such as bronze, green, grey, bronze-reflective, green-reflective, grey-reflective, gold-reflective, opal blue-reflective, and sapphire blue-reflective glass) in controlling the heat gain by the buildings. The spectral data of diverse window glasses have thus been measured in solar spectrum range of 300-2500nm. Moreover, the MATLAB codes have been developed to compute solar optical properties (including transmittance, reflectance, and absorbance), solar heat gain coefficient (SHGC), and heat transfer through the glazing material. Thermal analysis was carried out using a total of nine window glasses in eight coordinal directions (E, W, N, S, SE, SW, NE, and NW) against three climatic conditions (hot and dry, warm and humid and composite) in India. In terms of net annual cooling and heating cost savings per window, the grey reflective glass was found to be the most energy saving glass among all glasses tested in this study. The grey reflective glass exhibited the highest cost saving in net annual cooling and heating in all eight orientations across three climatic regions. The grey reflective glass saved the net cost of heating and cooling by $ 61.24 per annum in the south orientation of Jodhpur climatic conditions.

키워드

Reflective glassesTinted glassesEnergy saving glazingThermal analysisSolar passive architecture and solar heat gain coefficientGAIN
제목
Experimental and theoretical studies of various solar control window glasses for the reduction of cooling and heating loads in buildings across different climatic regions
저자
Kumar, Kiran G.Saboor, ShaikKumar, VanishKim, Ki-HyunBabu, Ashok T. P.
DOI
10.1016/j.enbuild.2018.05.054
발행일
2018-08
유형
Article
저널명
Energy and Buildings
173
페이지
326 ~ 336