Ditemukan 13873 dokumen yang sesuai dengan query
DeKay, Mark
"This fully updated Third Edition covers principles of designing buildings that use the sun for heating, wind for cooling, and daylight for natural lighting. Using hundreds of illustrations and companion CD-ROM, this book offers practical strategies that give the designer the tools they need to make energy efficient buildings."
Hoboken, N.J. : Wiley , 2013
721.046 DEK s
Buku Teks Universitas Indonesia Library
Brown, G. Z.
New York: John Wiley & Sons, 2001
720.472 BRO s
Buku Teks Universitas Indonesia Library
Gevorkian, Peter
New York: McGraw-Hill, 2008
720.472 GEV s
Buku Teks Universitas Indonesia Library
Dayat P.
Depok: Fakultas Teknik Universitas Indonesia, 1999
S48980
UI - Skripsi Membership Universitas Indonesia Library
Yannas, Simos
London: Architectural Association, 1993
720.472 YAN s
Buku Teks Universitas Indonesia Library
Anderson, Bruce N.
New York: McGraw-Hill, 1977
697.78 AND s (1)
Buku Teks Universitas Indonesia Library
Waston, Donald
New York: McGraw-Hill, 1983
697.9 Was c
Buku Teks Universitas Indonesia Library
Yudi Utomo Putra
"Atap rumah menjadi salah satu tempat terbaik untuk meletakan panel surya, tetapi energi matahari yang didapatkan akan sangat bergantung pada sudut azimuth panel Azs dan sudut kemiringan panel terhadap matahari. Sehingga perlunya perhitungan secara matematis untuk mendapatkan energi maksimal pada sudut azimut dan sudut kemiringan yang diinginkan. Metode explanatory digunakan untuk mengetahui hubungan antara sudut matahari pada koordinat 6,2o lintang selatan dengan energi matahari yang diterima panel. Penelitian dilakukan dengan menghitung energi yang diterima pada masing ndash; masing desain atap rumah. Hasil dari perhitungan menampilkan bahwa, pada luas atap 38,31 m2, desain atap rumah berbentuk pelana dengan Azh = 90o,270o dan = 20o mendapatkan rata-rata energi matahari sebesar 4.411 W.jam/m2/hari. Sehingga desain atap rumah pelana akan mendapatkan energi listrik 20.548 W.jam/hari.
Roof becomes one of the best places to install solar panels, but the solar energy obtained will depend on the angle of the azimuth panel Azs and the tilt angle of the panel against the sun. Mathematical calculation is needed to obtain the maksimum energy with spesific azimuth angle and tilt angle. The explanatory method is used to determine the relationship between the sun angle at latitude angle of 6.2o with solar energy received by the panel. Research is done by calculating the energy received at each roof design. The results of the calculations show that, on the roof area of 38,31 m2, the design of a saddle roof with Azh 90o, 270o and 20o obtains an average solar energy of 4.411 Wh m2 day. So, the saddle roof design will get electrical energy of 20.548 Wh day. "
Depok: Fakultas Teknik Universitas Indonesia, 2018
T51541
UI - Tesis Membership Universitas Indonesia Library
New York: McGraw-Hill , 1979
721 ENE
Buku Teks Universitas Indonesia Library
Brooker, Graeme
London: RIBA Enterprises, 2004
729 BRO r
Buku Teks SO Universitas Indonesia Library