REVIEW PENERAPAN SHADING DEVICE PADA DOUBLE SKIN FAÇADE UNTUK KENYAMANAN TERMAL DAN EFFISIENSI ENERGI BANGUNAN
Abstract
The application of Double Skin Façade on the building envelope as an effort to save energy and increase thermal comfort, has been carried out for several decades. The application of DSF design parameters needs to be considered to achieve maximum energy savings and thermal comfort. A shading device as one of the parameters in the DSF not only functions as a shade but can also reduce heat entering the room. This study focuses on the effectiveness of applying a shading device in the DSF cavity for thermal comfort and energy efficiency of buildings. The literature review method was used to review previous studies that had been carried out, by examining the shading parameters to see their effect on comfort and energy savings. The results show that the positioning of the shading device can reduce energy use and increase thermal comfort significantly.
Keywords
Full Text:
PDFReferences
.Ahmed MMS, Abel-Rahman AK, Ali AHH, Suzuki M. Double Skin Façade: The State
of Art on Building Energy Efficiency. J Clean Energy Technol. 2015;4(1):84–9.
.Karyono TH. Building Design and Indoor Temperature Performance in the Humid
Tropical Climate of Indonesia. 2015;1.
.Barbosa S, Ip K. Perspectives of double skin façades for naturally ventilated
buildings: A review. Renew Sustain Energy Rev. Desember 2014;40:1019–29.
.Gratia E, De Herde A. The most efficient position of shading devices in a double-
skin facade. Energy Build. Maret 2007;39(3):364–73.
.Kirimtat A, Koyunbaba BK, Chatzikonstantinou I, Sariyildiz S. Review of simulation modeling for shading devices in buildings. Renew Sustain Energy Rev. Januari 2016;53:23–49.
.Haase M, Marques da Silva F, Amato A. Simulation of ventilated facades in hot and
humid climates. Energy Build. April 2009;41(4):361–73.
.Lee J, Chang JD. Influence on Vertical Shading Device Orientation and Thickness on the Natural Ventilation and Acoustical Performance of a Double Skin Facade. Procedia Eng. 2015;118:304–9.
.Gratia E, De Herde A. The most efficient position of shading devices in a double-skin facade. Energy Build. Maret 2007;39(3):364–73.
.Jiru TE, Tao YX, Haghighat F. Airflow and heat transfer in double skin facades. Energy Build. Oktober 2011;43(10):2760–6.
.Ji Y, Cook MJ, Hanby V, Infield DG, Loveday DL, Mei L. CFD modelling of naturally ventilated double-skin facades with Venetian blinds. J Build Perform Simul. September 2008;1(3):185–96.
.Safer N, Woloszyn M, Roux JJ. Three-dimensional simulation with a CFD tool of the airflow phenomena in single floor double-skin facade equipped with a venetian blind. Sol Energy. Agustus
;79(2):193–203.
.Barbosa S, Ip K, Southall R. Thermal comfort in naturally ventilated buildings with double skin façade under tropical climate conditions: The influence of key design parameters. Energy Build. Desember
;109:397–406.
DOI: https://doi.org/10.37905/jjoa.v5i1.19709
Refbacks
- There are currently no refbacks.
Copyright (c) 2023 Maria Lady Hendrik

This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.
Â
ISSN CETAK: 2654-5896
This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.
Â
Â